作物育种革命:下一代人工智能和大数据驱动的智能设计

IF 10.1 1区 工程技术 Q1 ENGINEERING, MULTIDISCIPLINARY
Ying Zhang , Guanmin Huang , Yanxin Zhao , Xianju Lu , Yanru Wang , Chuanyu Wang , Xinyu Guo , Chunjiang Zhao
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引用次数: 0

摘要

种业安全对保障国家粮食安全至关重要。目前,欧美发达国家和国际种业巨头已经进入育种4.0时代。这个时代融合了生物技术、人工智能(AI)和大数据信息技术。相比之下,中国仍处于2.0和3.0阶段的过渡时期,主要依靠传统选择和分子育种。在国际形势日益复杂的背景下,准确识别中国种子产业创新的核心问题,抢占国际种子技术前沿,具有重要的战略意义。这些努力对于确保粮食安全和振兴种业至关重要。系统分析了作物育种数据从人工选择到智能设计育种的特点。从几个关键角度探讨了人工智能和大数据在现代作物育种中的应用和发展趋势。包括高通量表型采集与分析、多组学大数据数据库及管理系统建设、基于人工智能的多组学集成分析、基于生物大数据和人工智能技术的智能育种软件工具开发等。在深入分析中国种业技术发展现状和挑战的基础上,提出中国新一代人工智能和大数据驱动的智能设计育种的战略目标和重点任务。这些建议旨在加速构建以大规模基因挖掘、高效基因操作、工程品种设计和系统化生物育种为特征的智能驱动作物育种工程系统。本研究为中国种业技术的发展提供了理论依据和实践指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Revolutionizing Crop Breeding: Next-Generation Artificial Intelligence and Big Data-Driven Intelligent Design
The security of the seed industry is crucial for ensuring national food security. Currently, developed countries in Europe and America, along with international seed industry giants, have entered the Breeding 4.0 era. This era integrates biotechnology, artificial intelligence (AI), and big data information technology. In contrast, China is still in a transition period between stages 2.0 and 3.0, which primarily relies on conventional selection and molecular breeding. In the context of increasingly complex international situations, accurately identifying core issues in China’s seed industry innovation and seizing the frontier of international seed technology are strategically important. These efforts are essential for ensuring food security and revitalizing the seed industry. This paper systematically analyzes the characteristics of crop breeding data from artificial selection to intelligent design breeding. It explores the applications and development trends of AI and big data in modern crop breeding from several key perspectives. These include high-throughput phenotype acquisition and analysis, multiomics big data database and management system construction, AI-based multiomics integrated analysis, and the development of intelligent breeding software tools based on biological big data and AI technology. Based on an in-depth analysis of the current status and challenges of China’s seed industry technology development, we propose strategic goals and key tasks for China’s new generation of AI and big data-driven intelligent design breeding. These suggestions aim to accelerate the development of an intelligent-driven crop breeding engineering system that features large-scale gene mining, efficient gene manipulation, engineered variety design, and systematized biobreeding. This study provides a theoretical basis and practical guidance for the development of China’s seed industry technology.
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来源期刊
Engineering
Engineering Environmental Science-Environmental Engineering
自引率
1.60%
发文量
335
审稿时长
35 days
期刊介绍: Engineering, an international open-access journal initiated by the Chinese Academy of Engineering (CAE) in 2015, serves as a distinguished platform for disseminating cutting-edge advancements in engineering R&D, sharing major research outputs, and highlighting key achievements worldwide. The journal's objectives encompass reporting progress in engineering science, fostering discussions on hot topics, addressing areas of interest, challenges, and prospects in engineering development, while considering human and environmental well-being and ethics in engineering. It aims to inspire breakthroughs and innovations with profound economic and social significance, propelling them to advanced international standards and transforming them into a new productive force. Ultimately, this endeavor seeks to bring about positive changes globally, benefit humanity, and shape a new future.
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