A Panomics-Driven Framework for the Improvement of Major Food Legume Crops: Advances, Challenges, and Future Prospects

IF 8.7 1区 农林科学 Q1 Agricultural and Biological Sciences
Hongliang Hu, Xingxing Yuan, Dinesh Kumar Saini, Tao Yang, Xinyi Wu, Ranran Wu, Zehao Liu, Farkhandah Jan, Reyazul Rouf Mir, Liu Liu, Jiashun Miao, Na Liu, Pei Xu
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引用次数: 0

Abstract

Food legume crops, including common bean, faba bean, mungbean, cowpea, chickpea, and pea, have long served as vital sources of energy, protein, and minerals worldwide, both as grains and vegetables. Advancements in high-throughput phenotyping, next-generation sequencing, transcriptomics, proteomics, and metabolomics have significantly expanded genomic resources for food legumes, ushering research into the panomics era. Despite their nutritional and agronomic importance, food legumes still face constraints in yield potential and genetic improvement due to limited genomic resources, complex inheritance patterns, and insufficient exploration of key traits such as quality and stress resistance. This highlights the need for continued efforts to comprehensively dissect the phenome, genome, and regulome of these crops. This review summarizes recent advances in technological innovations and multi-omics applications in food legumes research and improvement. Given the critical role of germplasm resources and the challenges in applying phenomics to food legumes—such as complex trait architecture and limited standardized methodologies—we first address these foundational areas. We then discuss recent gene discoveries associated with yield stability, seed composition, and stress tolerance and their potential as breeding targets. Considering the growing role of genetic engineering, we provide an update on gene-editing applications in legumes, particularly CRISPR-based approaches for trait enhancement. We advocate for integrating chemical and biochemical signatures of cells ('molecular phenomics') with genetic mapping to accelerate gene discovery. We anticipate that combining panomics approaches with advanced breeding technologies will accelerate genetic gains in food legumes, enhancing their productivity, resilience, and contribution to sustainable global food security.
主要食用豆类作物改良的泛经济学驱动框架:进展、挑战和未来展望
食用豆类作物,包括普通豆、蚕豆、绿豆、豇豆、鹰嘴豆和豌豆,长期以来一直是世界范围内能量、蛋白质和矿物质的重要来源,无论是谷物还是蔬菜。高通量表型、下一代测序、转录组学、蛋白质组学和代谢组学的进步极大地扩展了食用豆类的基因组资源,将研究带入了泛组学时代。尽管食用豆类具有重要的营养和农艺学意义,但由于基因组资源有限、遗传模式复杂以及对品质和抗逆性等关键性状的探索不足,在产量潜力和遗传改良方面仍面临制约。这突出表明需要继续努力全面剖析这些作物的表型、基因组和规则组。本文综述了近年来多组学在豆科食品研究和改良中的应用进展。鉴于种质资源的重要作用和将表型组学应用于食用豆科植物的挑战,如复杂的性状结构和有限的标准化方法,我们首先解决这些基础领域。然后,我们讨论了最近发现的与产量稳定性、种子组成和抗逆性相关的基因,以及它们作为育种目标的潜力。考虑到基因工程的作用越来越大,我们提供了基因编辑在豆类中的应用,特别是基于crispr的性状增强方法的最新进展。我们提倡将细胞的化学和生化特征(“分子表型组学”)与基因定位相结合,以加速基因的发现。我们预计,将全组学方法与先进育种技术相结合,将加速食用豆类的遗传增益,提高其生产力和抵御力,并为可持续的全球粮食安全做出贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Horticulture Research
Horticulture Research Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
11.20
自引率
6.90%
发文量
367
审稿时长
20 weeks
期刊介绍: Horticulture Research, an open access journal affiliated with Nanjing Agricultural University, has achieved the prestigious ranking of number one in the Horticulture category of the Journal Citation Reports ™ from Clarivate, 2022. As a leading publication in the field, the journal is dedicated to disseminating original research articles, comprehensive reviews, insightful perspectives, thought-provoking comments, and valuable correspondence articles and letters to the editor. Its scope encompasses all vital aspects of horticultural plants and disciplines, such as biotechnology, breeding, cellular and molecular biology, evolution, genetics, inter-species interactions, physiology, and the origination and domestication of crops.
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