节间长度的遗传解剖为玉米理想植株结构的改良提供了依据

IF 5.7 1区 生物学 Q1 PLANT SCIENCES
Haiyang Duan, Jianxin Li, Zhengjie Xue, Lu Yang, Yan Sun, Xiaolong Ju, Jihong Zhang, Guoqiang Xu, Xuehang Xiong, Li Sun, Shuhao Xu, Huiling Xie, Dong Ding, Xuebin Zhang, Xuehai Zhang, Jihua Tang
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引用次数: 0

摘要

最佳的植物结构,以矮小为特征,有助于减轻倒伏,实现高密度种植,并促进机械化收获。节间长度(IL)作为玉米株高的重要组成部分,在这些过程中起着重要作用。然而,节间伸长的遗传机制仍然知之甚少。在这项研究中,我们进行了一项全基因组关联研究,以剖析玉米中IL的遗传结构。在多个环境中收集了耳朵上下五个节间的长度(称为il相关性状),揭示了实质性的变化。共有108个数量性状位点(QTL)与11个il相关性状相关,其中17个QTL被不同性状共检测到。值得注意的是,三个QTL在玉米育种进展中被选择。发现与IL相关的303个基因通过植物激素信号转导、受体活性和碳代谢途径发挥作用,影响节间伸长。编码乙醇脱氢酶的基因ZmIL1在我国现代玉米育种中具有较高的表达水平。此外,ZmIL2和ZmIL3是IL的其他重要调控因子。重要的是,ZmIL1在黄淮海地区的玉米品种中具有潜在的应用前景。该研究首次全面报道了玉米中几乎所有il的遗传结构,为了解节间伸长机制和遗传资源提供了深刻的见解。这些发现对旨在优化植物结构以提高农艺性能的矮秆育种计划具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Genetic dissection of internode length confers improvement for ideal plant architecture in maize

The optimal plant architecture, characterized by short stature, helps mitigate lodging, enables high-density planting, and facilitates mechanized harvesting. Internode length (IL), a crucial component of plant height in maize, plays a significant role in these processes. However, the genetic mechanisms underlying internode elongation remain poorly understood. In this study, we conducted a genome-wide association study to dissect the genetic architecture of IL in maize. The lengths of five internodes above and below the ear (referred as IL-related traits) were collected across multiple environments, revealing substantial variation. A total of 108 quantitative trait loci (QTL) were associated with 11 IL-related traits, with 17 QTL co-detected by different traits. Notably, three QTL have been selected in maize breeding progress. Three hundred and three genes associated with IL were found to operate through plant hormone signal transduction, receptor activity, and carbon metabolism pathways, influencing internode elongation. ZmIL1, which encodes alcohol dehydrogenase, exhibited a high expression level in internodes during the vegetative stage and has been selected in Chinese modern maize breeding. Additionally, ZmIL2 and ZmIL3 emerged as other crucial regulators of IL. Importantly, ZmIL1 has potential applications in maize varieties in the Huang-Huai-Hai region. This study represents the first comprehensive report on the genetic architecture of nearly all ILs in maize, providing profound insights into internode elongation mechanisms and genetic resources. These findings hold significant implications for dwarf breeding programs aimed at optimizing plant architecture for enhancing agronomic performance.

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来源期刊
The Plant Journal
The Plant Journal 生物-植物科学
CiteScore
13.10
自引率
4.20%
发文量
415
审稿时长
2.3 months
期刊介绍: Publishing the best original research papers in all key areas of modern plant biology from the world"s leading laboratories, The Plant Journal provides a dynamic forum for this ever growing international research community. Plant science research is now at the forefront of research in the biological sciences, with breakthroughs in our understanding of fundamental processes in plants matching those in other organisms. The impact of molecular genetics and the availability of model and crop species can be seen in all aspects of plant biology. For publication in The Plant Journal the research must provide a highly significant new contribution to our understanding of plants and be of general interest to the plant science community.
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