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Tron Industry Weekly Report: March Non-Farm Payrolls Exceed Expectations, Interest Rate Cut Bets Decline Again, Detailed Explanation of Three Major Protocols: Compliant Yield-Generating Stablecoins + RWA Infrastructure + AI Operating Systems

Summary: This week's key projects focus on three main lines: "compliance yield stablecoins + RWA infrastructure + AI robot operating systems."
TronTRON
2026-04-07 14:57:46
This week's key projects focus on three main lines: "compliance yield stablecoins + RWA infrastructure + AI robot operating systems."

I. Outlook

1. Summary of Macroeconomic Trends and Future Predictions

In the past week, the macroeconomic focus has been on the chain of events where the Middle East conflict has driven up oil prices → rising inflation expectations → repricing of interest rate expectations. The market has begun to shift from "soft landing + interest rate cut expectations" to "stagflation risks + prolonged high interest rates." Risk assets are generally under pressure and experiencing increased volatility, with funds quickly switching between safe havens and risks, indicating that the current macro environment remains highly uncertain, and liquidity has not improved marginally.

In the coming week, the core focus will still be on geopolitical developments and inflation/policy signals. If oil prices continue to rise or conflicts escalate, the market will continue to trade on stagflation logic, with risk assets remaining weak; if there is a de-escalation or dovish policy signals, it may trigger a short-term rebound. The overall judgment is for an event-driven range-bound market, with the trend direction still unclear.

2. Market Changes and Warnings in the Crypto Industry

In the past week, the crypto market has been in a weak oscillation and low operation mode, with BTC fluctuating mainly in the $64,500 - $68,000 range. It has repeatedly tested the $67k-$68k area without effectively stabilizing, while support around $65k has been tested multiple times, indicating weak buying support. The overall trend shows characteristics of "rebound without volume, smooth decline," compounded by the lack of significant improvement in ETF funds and stablecoin liquidity, keeping the market in a bearish structural oscillation phase.

In the coming week, key attention should be paid to several core price levels: strong resistance above at $67,500 - $69,000, with only a volume breakout potentially opening up rebound space to $70k+; short-term support below at $64,500, and if effectively broken, the next support will look down to the $62,000 - $63,000 range, with extreme cases possibly testing the $60k round number. Given the current macro uncertainty, there is a higher probability of maintaining oscillation in the $64k-$69k range or a downward false breakout, with a need to be particularly cautious of accelerated downside risks after breaking support.

3. Industry and Sector Hotspots

This week, key projects are concentrated on three main lines: "compliant yield-generating stablecoins + RWA infrastructure + AI robotic operating systems": Zoth integrates off-chain RWA with on-chain DeFi yields through a layered architecture and "vault-of-vaults" mechanism, creating a compliant stablecoin bank with a payment closed loop; Cap introduces a dual-layer design of cUSD + stcUSD, incorporating over-collateralization, re-staking, and liquidation mechanisms to achieve a stablecoin model of "yield + principal downside protection"; meanwhile, OpenMind (OM1) is entering the fusion of AI and physical robotics, building a full-stack system from perception to execution through multi-LLM collaboration and modular architecture. Overall, the market is shifting from a "pure DeFi narrative" to a new stage driven more by institutionalization, security, and real-world applications (RWA, stablecoins, AI + hardware), but generally faces common challenges of complex structures, high dependence on external systems, and difficulties in engineering implementation.

II. Market Hotspot Sectors and Potential Projects of the Week

1. Overview of Potential Projects

1.1. Brief Analysis of Total Financing of $21.5 Million, Led by TAIZU, with Follow-on Investments from Borderless and Ripple, etc. — Creating a Compliant, Sustainable RWA On-chain Yield Engine Zoth

Introduction

Zoth is building a privacy-centric stablecoin neobank for the global south market and the emerging Agentic economy (intelligent agent-driven economy).

The platform has created an integrated financial infrastructure that combines yield management, payments, card services, liquidity, compliance, and security into a single institutional-grade platform, forming a complete financial service system.

The core of the Zoth ecosystem is USDZe, a "Liquid Yield Asset," which achieves sustainable yields through diversified RWA and DeFi strategies, built on a transparent, compliant, and auditable framework. USDZe is designed for both human and machine-native participants and can serve as programmable capital, seamlessly interacting with autonomous agents, global enterprises, and next-generation financial applications.

Zoth combines the convenience of a neobank, the transparency of blockchain, and institutional-grade fund management capabilities to build the next generation of financial infrastructure, providing:

  • Instant liquidity: Directly use USDZe balance via Zoth Card.

  • Global instant settlement: Near-zero cost, borderless fund transfers, suitable for high-frequency and cross-border scenarios.

Core Mechanism Overview

Hierarchical Architecture

Zoth adopts a layered architecture, constructing an integrated financial technology stack consisting of four layers, seamlessly connecting institutional-grade fund management capabilities with decentralized blockchain technology, achieving the integration of traditional finance and on-chain finance.

Tron Industry Weekly Report: March Non-Farm Payrolls Exceed Expectations, Interest Rate Cut Bets Decline Again, Detailed Explanation of Three Major Protocols: Compliant Yield-Generating Stablecoins + RWA Infrastructure + AI Operating Systems

First Layer: FAAST (Foundation Layer)

At the bottom layer, FAAST serves as the infrastructure layer, providing a fund structure regulated by CIMA (Cayman Islands Monetary Authority) and BVI (British Virgin Islands), ensuring all operations are conducted within a complete legal and compliance framework, managed by licensed fund managers and custodians.

Its core functions include:

  • Global standard compliance structure: Supports simultaneous investments in RWA (real-world assets) and DeFi assets.

  • Institutional-grade transparency: Managed by independent directors, legal experts, licensed fund managers, and auditing firms, ensuring clear audits, asset verification, and proof mechanisms.

  • Risk isolation and bankruptcy remote mechanisms: Provides full protection for LPs (limited partners) and token holders, preventing protocol-level bankruptcy risks from affecting assets.

  • Structured risk management: Establishes independent funds for different asset classes through asset and liability isolation mechanisms, achieving risk separation and management.

Second Layer: zToken Vaults (Technical Layer)

Tron Industry Weekly Report: March Non-Farm Payrolls Exceed Expectations, Interest Rate Cut Bets Decline Again, Detailed Explanation of Three Major Protocols: Compliant Yield-Generating Stablecoins + RWA Infrastructure + AI Operating Systems

  1. Smart Contract Infrastructure
  • All zTOKEN Vaults are ERC-20 standard contracts, using a unified interface template to ensure ecosystem interoperability while supporting strategy-level customization.

  • An upgradeable proxy model is adopted, allowing the protocol to upgrade and fix without migrating user assets.

  • Upgrade permissions are held solely by the Zoth Foundation, ensuring that fund managers cannot modify core logic, safeguarding investor security.

  1. Vault Creation and Access Mechanism

zTOKEN creation adopts a permissioned process, requiring completion of KYB (Know Your Business) and compliance review:

  • Mature fund managers: Deploy customized Vaults after passing KYB review.

  • Emerging fund managers: Zoth provides one-stop construction services (company registration, legal documents, compliance framework, data systems), lowering access thresholds while maintaining institutional-grade standards.

  1. Custody and Key Management
  • Mandatory use of MPC multi-party computation wallets for asset custody.

  • Distributed management of private keys to avoid single-point risks.

  • Aligning with traditional asset management industry security standards.

  1. Fund Management and Audit Mechanism
  • Each Vault is supervised by an independent fund administrator.

  • Audits holdings, verifies NAV, and proves performance.

  • Prices are updated bi-weekly through oracles.

  • Introduces traditional fund industry auditing and accountability mechanisms into the on-chain environment.

  1. Operational Autonomy

Under the protocol's security framework, fund managers have complete investment autonomy:

  • Can deploy funds to any supported DeFi protocols and on-chain networks.

  • Can trade digital or tokenized assets within the strategy scope.

  • Pursue excess returns (Alpha) within risk and compliance boundaries.

  1. Integration Relationship with USDZe
  • USDZe is a "Vault-of-Vaults."

  • After users deposit USDZe, the protocol actually holds shares of the underlying zTOKENs.

  • The value of USDZe directly reflects the comprehensive performance of the underlying Vault.

  • Fund allocation is determined by:

  • Smart contract execution limits and rules

  • Zoth team rebalancing operations based on governance approval weights

Third Layer: USDZe (Yield Layer)

Tron Industry Weekly Report: March Non-Farm Payrolls Exceed Expectations, Interest Rate Cut Bets Decline Again, Detailed Explanation of Three Major Protocols: Compliant Yield-Generating Stablecoins + RWA Infrastructure + AI Operating Systems

USDZe is a Liquid Yield Asset, with its yield sourced from diversified real asset returns, including off-chain income sources and on-chain DeFi protocol integrations. Unlike traditional and fiat-pegged stablecoins with fixed values, USDZe achieves value growth over time through productive capital allocation while maintaining price stability and capital efficiency.

USDZe adopts an oracle-based pricing mechanism, with its value directly determined by on-chain oracle data, rather than priced through AMM liquidity pools, thus achieving zero slippage trading and avoiding efficiency losses from large transactions in liquidity pool models.

Its oracle infrastructure operates based on a decentralized attestation network. Off-chain fund attestators reach consensus on the price of USDZe, updating it twice a week to ensure that on-chain prices can timely reflect the value of underlying assets. Each Vault supporting USDZe has designated attestators and additionally configured independent attestators to enhance verification reliability.

To ensure the accuracy of price reporting, attestators must bear financial responsibility for losses caused by erroneous price reports. Meanwhile, ZOTH token holders have governance rights to challenge abnormal or erroneous price attestations, forming a multi-party checks and balances mechanism to safeguard the protocol and user interests.

Fourth Layer: Stablecoin Neobank (Application Layer)

The top layer, the Stablecoin Neobank, serves as the user interaction interface, combining account abstraction smart wallets, the Zoth payment network, and the Zocto card to provide seamless savings, transfer, and consumption experiences for individual and institutional users, allowing their yield-generating assets to be directly used for daily financial activities.

This layer is built on two core pillars, redefining the cost and efficiency of global finance:

  1. Zoth Payment Network (PayX7)
    As the foreign exchange (FX) liquidity layer, this network achieves cross-border settlement and on/off-ramp through stablecoin rails. Its key upgrade is using USDZe as the core settlement asset. Since USDZe itself has yield attributes, its 5%-10%+ risk-optimized returns can partially offset fund transfer costs, enabling enterprises (such as remittance companies, insurance institutions) and individual users to achieve near-zero cost global payments.

  2. Zocto Card
    Provides both physical and virtual card services, forming a "spend-to-earn" closed loop. Users can directly use USDZe for daily consumption, while their funds continue to generate returns until the moment of payment, thus maintaining efficient capital operation.

Tron Comments

Zoth's core advantage lies in its construction of a compliant, layered, and institutional-grade stablecoin financial architecture. Through the FAAST fund structure, zTOKEN Vault asset management layer, and the USDZe "vault-of-vaults" mechanism, it integrates off-chain real-world assets (RWA) with on-chain DeFi returns, achieving sustainable returns of 5%--10%+. At the same time, it employs MPC custody, independent fund administrator audits, decentralized price attestation mechanisms, and zero-slippage oracle pricing models to balance security, transparency, and capital efficiency, while connecting the "returns---payments---settlements" closed loop through the Stablecoin Neobank (payment network + card).

Potential disadvantages include a higher structural complexity and a certain reliance on off-chain compliance systems, auditing institutions, and price attestors. Although the oracle and manual attestation mechanisms enhance transparency, the update frequency is relatively limited (bi-weekly), which may pose a risk of price synchronization lag during extreme market fluctuations. Furthermore, its institutional framework may not be as aggressive in decentralization compared to purely DeFi protocols. Overall, Zoth leans more towards a "compliant financial infrastructure upgrade solution" rather than a fully disintermediated experimental protocol.

1.2. Interpretation of Total Financing of $24.9 Million, Led by Franklin Templeton and Triton Capital, with Follow-on Investment from GSR, etc. ------ Building a Protocol for a Verifiable Downside Protection Dual-Layer Stablecoin System: Cap Labs

Introduction

Cap is a stablecoin protocol that provides trustworthy financial protection through two products: the dollar-pegged cUSD and the interest-bearing stcUSD.

  • cUSD is a digital dollar issued on Ethereum, usable across any network. Its reserves are backed by blue-chip stablecoins, including USDC, USDT, pyUSD, BUIDL, and BENJI, all of which are issued by regulated entities and provide transparent audit proofs. cUSD can be redeemed for any reserve asset at a 1:1 ratio.

  • stcUSD is a savings product obtained by staking cUSD, allowing all cUSD holders to participate. Its returns are generated by a layer of autonomous operators, who can freely participate or exit based on the return thresholds set by the protocol. The return risks are covered by the protocol, and users have complete downside protection that can be verified through code.

Architecture Analysis

Tron Industry Weekly Report: March Non-Farm Payrolls Exceed Expectations, Interest Rate Cut Bets Decline Again, Detailed Explanation of Three Major Protocols: Compliant Yield-Generating Stablecoins + RWA Infrastructure + AI Operating Systems

Cap is a tripartite market platform based on economic incentive mechanisms and can operate autonomously. It outsources return generation by introducing diversified institutional operators, including banks, high-frequency trading firms (HFT), and market makers.

With the trust market mechanism built on "Shared Security Networks," Cap can continuously generate competitive long-term returns in various market environments.

  1. cUSD Mechanism

cUSD is a stablecoin backed by dollar assets and can be redeemed based on reserve assets. Users can interact with cUSD in three ways:

  • Mint: Deposit reserve assets and mint cUSD at oracle prices.

  • Burn: Redeem reserve assets based on the price of the asset with the highest deviation.

  • Redeem: Maintain peg stability through a multi-collateral asset redemption mechanism.

Core Mechanism

  1. Peg Stability Module (PSM)

The cUSD contract itself acts as a PSM, allowing users to directly mint, burn, and redeem against a diversified whitelist of collateral assets (such as USDC, pyUSD, BENJI, BUIDL).

The core objectives of the PSM are:

  • Keep the market price of cUSD stable around $1;

  • Manage the risks and distribution of underlying collateral assets.

This design ensures that cUSD always has liquidity and can be exchanged for any underlying asset at a transparent, market-based price.

  1. Redeem Mechanism: Addressing Depeg Risks

When users redeem cUSD, the system proportionally allocates the underlying asset portfolio based on current asset weights and market prices.

This mechanism avoids the "last man standing problem," preventing later redeemers from being left with depegged assets.

If a certain underlying asset becomes depegged, the losses will be "socialized" by the system, and the asset weight deviation mechanism will suppress excessive burning behavior, thus maintaining system stability.

  1. Fractional Reserves Mechanism

When deposited assets are not actively lent out, idle funds will generate returns, including:

  • Revenue from underlying money market funds (MMFs);

  • Or earn returns through integrated crypto lending markets like Aave.

All assets in the Fractional Reserve Vault continue to accrue interest until used for withdrawals, redemptions, or lending.

  1. stcUSD Mechanism

stcUSD is Cap's interest-bearing stablecoin, creating returns for users through a decentralized lending framework while providing verifiable downside protection.

Basic Operation Logic

  1. Minting and Staking
    Users (like Alice) deposit stable assets to mint cUSD and stake it as stcUSD to participate in return distribution.

  2. Idle Asset Returns
    Idle funds in reserves can automatically earn returns through underlying asset yields or integrated lending protocols (like Aave, Morpho).

  3. Operator Lending Mechanism

  • Operators need to find investment opportunities that exceed the protocol's "hurdle rate" (for example, 8%).

  • Lending must be over-collateralized, with collateral provided by "Restakers."

  • Borrowing is fully executed on-chain, without manual approval.

The lending interest rate consists of two parts:

  • Fixed rate for Restakers (risk premium)

  • Dynamic Hurdle Rate (depends on market interest rates and capital utilization)

Normal Path (Happy Path)

If the operator successfully profits and repays the loan:

  • Assume the yield is 15%

  • 8% (hurdle yield) is distributed to stcUSD holders

  • 2% goes to Restakers

  • The remaining 5% is the operator's profit

All parties involved receive returns, and the system operates stably.

Abnormal Path (Unhappy Path)

If the following occurs:

  • The value of collateral assets falls below the safety line

  • The operator defaults

The system will trigger an automatic liquidation mechanism:

  • Liquidate the collateral assets of Restakers through a Dutch auction

  • Collateral assets are sold at a discount to exchange for stablecoins

  • Recovered funds are reinjected into reserves

Tron Industry Weekly Report: March Non-Farm Payrolls Exceed Expectations, Interest Rate Cut Bets Decline Again, Detailed Explanation of Three Major Protocols: Compliant Yield-Generating Stablecoins + RWA Infrastructure + AI Operating Systems

Result: stcUSD holders always maintain 1:1 complete protection, with return risks borne by Restakers, not stablecoin holders.

Lending Interest Rate Mechanism

Lending interest rate = Fixed rate for Restakers + Dynamic Hurdle Rate

Where Hurdle Rate:

  • Is based on external market interest rates

  • Increases in a tiered manner as capital utilization rises

This mechanism ensures:

  • Sufficient liquidity is always retained

  • Lending costs are competitive

  • The system automatically raises risk premiums during high utilization

Tron Comments

Cap Labs' core advantage lies in its construction of a yield-bearing stablecoin system with code-level downside protection: cUSD maintains 1:1 redeemability and anti-depeg capability through multiple blue-chip stablecoin reserves and the PSM mechanism; stcUSD achieves yield generation and principal risk isolation through "over-collateralization + restaking (Shared Security) + automatic liquidation + dynamic hurdle rates," ensuring stablecoin holders always receive full protection. At the same time, it maintains competitive returns in different market environments by outsourcing yield generation to an institutional-grade operator network (banks, HFTs, market makers).

Its potential disadvantages include a relatively complex structure, reliance on external operator capabilities, restaking liquidity, and liquidation efficiency; fractional reserves and multi-asset collateral may face correlation risks and liquidity challenges under extreme market pressure. Overall, Cap leans more towards a "safety-first yield-bearing stablecoin protocol," emphasizing the combination of verifiable protection and market-based yield mechanisms.

2. Key Projects of the Week

2.1. Detailed Explanation of Total Financing of $22 Million, Led by Pentera and Pi Network, with Participation from Coinbase & Amber---Connecting Cloud Intelligence with Physical Robots: OpenMind

Introduction

OM1 allows AI entities to be configured and deployed simultaneously in the digital world and the real physical world. You can create an AI character that runs in the cloud while also deploying it to physical robot hardware, such as quadrupeds, TurtleBot 4, or humanoids.

Through OM1, you can interact with OpenAI's GPT-4o (or Gemini, Claude, DeepSeek, Ollama local inference models) and achieve physical interaction through entities controlled by one or more large language models, such as shaking hands.

Intelligent agents/robots built on OM1 can integrate various data sources (web pages, X/Twitter, cameras, LIDAR, etc.) and perform tasks such as tweeting, exploring homes, and tutoring children in math homework.

Since OM1 is an open-source system, users have complete control and can customize and optimize it according to home or work scenarios.

Core Analysis of OM1 System Architecture

OM1 adopts a layered modular architecture, enabling AI to perceive the environment, understand semantics, make decisions, and ultimately control physical robots to perform actions.

Tron Industry Weekly Report: March Non-Farm Payrolls Exceed Expectations, Interest Rate Cut Bets Decline Again, Detailed Explanation of Three Major Protocols: Compliant Yield-Generating Stablecoins + RWA Infrastructure + AI Operating Systems

  1. Raw Sensor Layer

Responsible for collecting data on the robot's environment and its own status:

  • Vision: Cameras capture images

  • Sound: Microphones capture audio

  • Battery/System Status

  • Location/GPS

  • LIDAR: Laser radar is used for 3D mapping and navigation

  1. AI Semantic Compression Layer (AI Captioning & Compression Layer)

Transforming raw data into natural language descriptions:

  • VLM (Visual Language Model): Converts visual content into language descriptions

  • ASR (Automatic Speech Recognition): Converts speech to text

  • Platform State: Textual representation of the system's internal state

  • Spatial/NAV: Processing spatial and navigation information

  • 3D Environment Interpretation: Analyzing data from LIDAR and other sources

The core function of this layer is:
To convert sensor data into "natural language that can be understood by large models."

  1. Natural Language Data Bus (NLDB)

A central language data flow management system:

  • Aggregates all semantic information

  • Standardizes formats

  • Available for subsequent module calls

For example:

  • "You see a person, and he is pointing to a chair"

  • "You hear: Bits, running towards the chair"

  • Current position coordinates

  • Battery level 73%

  1. State Fuser

Integrates dispersed short information into a complete contextual description.

Functions:

  • Merges visual, audio, and spatial information

  • Provides environmental awareness summaries

  • Outputs compact context for decision-making models

Equivalent to building an "abstract of the current world state" for AI.

  1. Multi AI Planning Layer

Collaboratively completed by multiple LLMs:

Fast Action LLM (local or cloud)

  • Low latency response

  • About 300ms

  • Handles immediate actions

Core Cognitive LLM (cloud)

  • Complex reasoning

  • Long-term planning

  • Response time of about 2 seconds

Mentor/Coach LLM (cloud)

  • Third-party critique

  • Generates assessments every 30 seconds

  • Provides feedback to the core LLM

Specially designed:

  • Robot behavior rules can come from configuration files

  • Or stored on the blockchain (e.g., Ethereum)

  • Achieves an immutable "robot constitution" and transparent auditing

  1. Feedback Loop

The system dynamically adjusts parameters based on performance and environment, such as:

  • Adjusting camera frame rates

  • Optimizing resource usage

  1. Hardware Abstraction Layer (HAL)

Transforms AI decisions into specific hardware instructions.

For example:
"Pick up the red apple with the left hand" → Converts to servo and robotic arm action sequences

Supported modules include:

  • Move

  • Sound

  • Speech

  • Wallet (on-chain identity or economic interaction)

Typically interfaces with ROS2, CycloneDDS, or Zenoh middleware.

Overall Data Flow

Sensor → Semantic Conversion → Language Bus → State Fusion → Multi LLM Decision → Hardware Abstraction → Robot Execution

Analysis of OM1 Fully Autonomous Architecture

OM1 supports running Full Autonomy Mode on Nvidia AGX and Nvidia Thor platforms, achieving advanced perception, mapping, navigation, and interaction capabilities, minimizing human intervention.

Platform Support Status

  • AGX Platform: Supports full autonomy features, but functionality is relatively limited.

  • Thor Platform: Provides complete and comprehensive full autonomy support, recommended as the deployment platform.

On the Nvidia Thor platform, OM1 integrates more advanced machine learning capabilities, including:

  • Face Recognition

  • Face Anonymization

Thor is fully optimized for ML-driven workloads, making it the preferred hardware platform in scenarios requiring advanced autonomy and perception capabilities.

Tron Industry Weekly Report: March Non-Farm Payrolls Exceed Expectations, Interest Rate Cut Bets Decline Again, Detailed Explanation of Three Major Protocols: Compliant Yield-Generating Stablecoins + RWA Infrastructure + AI Operating Systems

Architecture Features

OM1's fully autonomous system is built on a modular, containerized service architecture:

  • Each component runs in independent containers

  • Communicates through standardized interfaces

  • Supports flexible expansion and hot-swapping

  • Highly maintainable and upgradeable

This architecture ensures:

  • The system can scale horizontally

  • Each module can be independently optimized

  • Strong adaptability to deployment environments

Tron Commentary

The core advantage of OpenMind (OM1) lies in its creation of an open-source full-stack architecture that bridges the digital intelligence and physical robot worlds. It achieves a complete closed loop from perception to execution through "sensor semanticization + multi-LLM collaborative decision-making + state fusion + hardware abstraction layer (HAL)", and supports running in full autonomy mode on high-performance platforms like Nvidia Thor, with capabilities for face recognition, multimodal fusion, and containerized module deployment. At the same time, its open-source nature and design that anchors robot behavior rules on the blockchain provide innovative ideas for transparency and auditability.

However, its system architecture is complex, heavily reliant on high-computing hardware, and the collaboration of multiple models brings challenges of latency and resource consumption; achieving stable and efficient long-term autonomous operation in real-world environments still requires strong engineering optimization capabilities. Overall, OpenMind resembles a foundational operating system framework aimed at the future direction of "AI × Robotics × Decentralized Control," being at the technological frontier but with a high engineering implementation threshold.

Industry Data Analysis

1. Overall Market Performance

1.1. Spot BTC vs ETH Price Trends

BTC

Tron Industry Weekly Report: March Non-Farm Payrolls Exceed Expectations, Interest Rate Cut Bets Decline Again, Detailed Explanation of Three Major Protocols: Compliant Yield-Generating Stablecoins + RWA Infrastructure + AI Operating Systems

ETH

Tron Industry Weekly Report: March Non-Farm Payrolls Exceed Expectations, Interest Rate Cut Bets Decline Again, Detailed Explanation of Three Major Protocols: Compliant Yield-Generating Stablecoins + RWA Infrastructure + AI Operating Systems

2. Summary of Hot Sectors

From March 30 to April 5, the crypto market's hotspots were clearly concentrated in two directions: RWA and yield-bearing stablecoins, as well as AI combined with on-chain/physical infrastructure. On one hand, projects represented by Zoth and Cap are promoting the upgrade of "yield-bearing stablecoins" by introducing real-world assets, layered fund management, and risk isolation mechanisms, enhancing the yield capacity and risk resistance of stablecoins, reflecting the preference for "low volatility + sustainable yield" assets in the current macro uncertainty environment;

On the other hand, the AI track has extended from purely on-chain agency narratives to a fusion form of "AI + Robotics + Blockchain" (such as OpenMind), emphasizing the closed-loop capability from perception to execution, with narratives leaning more towards infrastructure and long-term technological paths.

Overall, the changes in hotspots during this time window reflect that the market is shifting from high-risk narratives to a focus on more real yields, compliance, and feasibility: funds are no longer chasing pure concepts but are focusing on projects with cash flow support (RWA), risk control mechanisms (stablecoin upgrades), and practical application scenarios (AI + hardware). However, these tracks generally face issues of structural complexity and long implementation cycles, manifesting more as thematic rotations rather than a trending mainline in the short term.

Macroeconomic Data Review and Key Data Release Nodes for Next Week

Macroeconomic Data Review (March 30 - April 5):
On March 31 (Tuesday), China announced that the official PMI for March (50.4) returned to the expansion zone;

From April 1 to April 3 (Wednesday to Friday), Europe and the U.S. successively released manufacturing and services PMI, with the U.S. ISM services PMI falling into the contraction zone on April 3;

On April 4 (Friday), the U.S. announced March non-farm employment (approximately 178,000) and unemployment rate (4.3%).

Combined with the Middle East conflict pushing up oil prices during the entire cycle, this formed a combination of "weak PMI + stable employment + rising inflation expectations."

Key Data Release Nodes for Next Week (April 6 - April 12):
April 8 (Wednesday): FOMC meeting minutes (core observation of policy path and inflation attitude)
April 10 (Friday): U.S. CPI inflation data (most critical event, determining interest rate expectations)
April 11 (Saturday morning/Friday night): University of Michigan Consumer Confidence Index (important for inflation expectations)
Additionally, attention should be paid to PPI (usually the day after CPI, around April 11), overall, the April 10 CPI is the absolute core pricing anchor for this week.

Regulatory Policies

🇺🇸 United States

  • Pension funds allowed to invest in crypto (March 30): The U.S. Department of Labor proposed a new rule allowing 401(k) retirement accounts to invest in crypto assets and private equity, signaling a clear relaxation of policies and an expansion of institutional funding entry.

  • At the same time, regulatory focus continues on stablecoin frameworks and institutional participation, with the overall trend shifting from "enforcement-driven" to "legislation + market access opening," strengthening the integration path between banks and crypto.


🇬🇧 United Kingdom

  • Restricting crypto political funding (around early April): The UK announced plans to ban cryptocurrencies for political donations to prevent cross-border funding interference in politics, which is a reinforcement of anti-money laundering and national security regulations.

🇦🇪 United Arab Emirates / 🇭🇰 Hong Kong (Comprehensive)

  • This week's trend continues to accelerate licensing and institutional access, including the advancement of regulatory frameworks for exchanges, custody, and payment systems, with the core goal of competing for the global crypto financial center status.

🇰🇷 South Korea

  • No new implemented policies, but regulatory discussions continue to push for stricter exchange reserves and audit systems (such as cold storage ratios, insurance, audits), which belong to the policy preparation stage before implementation in mid-2026.
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