苯氧乙酸能增强大豆快速生长阶段的结瘤共生。

IF 9.4 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES Proceedings of the National Academy of Sciences of the United States of America Pub Date : 2024-09-10 Epub Date: 2024-09-06 DOI:10.1073/pnas.2322217121
Weijun Li, Xinfang Zhu, Mengyue Zhang, Xifeng Yan, Junchen Leng, Yuhong Zhou, Like Liu, Dajian Zhang, Xianzheng Yuan, Dawei Xue, Huiyu Tian, Zhaojun Ding
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引用次数: 0

摘要

根渗出物是影响豆科植物根瘤形成的已知信号物质,但非黄酮类分子的分子机制在很大程度上仍未得到探索。大豆在生长初期的根瘤数量在不同的发育阶段有很大差异。通过对根渗出物进行代谢组学分析并结合结瘤实验,我们确定了某些根渗出物在快速生长阶段促进结瘤的关键作用。研究发现,苯氧乙酸(POA)能激活 GmGA2ox10 的表达,从而促进根瘤菌感染和感染线的形成。此外,POA 还能对 miR172c-NNC1 模块进行调控,促进结核原基发育,从而增加结核数量。这些发现共同突显了 POA 在大豆加速生长阶段提高结瘤率的重要作用。
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Phenoxyacetic acid enhances nodulation symbiosis during the rapid growth stage of soybean.

Root exudates are known signaling agents that influence legume root nodulation, but the molecular mechanisms for nonflavonoid molecules remain largely unexplored. The number of soybean root nodules during the initial growth phase shows substantial discrepancies at distinct developmental junctures. Using a combination of metabolomics analyses on root exudates and nodulation experiments, we identify a pivotal role for certain root exudates during the rapid growth phase in promoting nodulation. Phenoxyacetic acid (POA) was found to activate the expression of GmGA2ox10 and thereby facilitate rhizobial infection and the formation of infection threads. Furthermore, POA exerts regulatory control on the miR172c-NNC1 module to foster nodule primordia development and consequently increase nodule numbers. These findings collectively highlight the important role of POA in enhancing nodulation during the accelerated growth phase of soybeans.

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来源期刊
CiteScore
19.00
自引率
0.90%
发文量
3575
审稿时长
2.5 months
期刊介绍: The Proceedings of the National Academy of Sciences (PNAS), a peer-reviewed journal of the National Academy of Sciences (NAS), serves as an authoritative source for high-impact, original research across the biological, physical, and social sciences. With a global scope, the journal welcomes submissions from researchers worldwide, making it an inclusive platform for advancing scientific knowledge.
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