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机械感知拮抗乙烯信号传导以促进水稻根的向地性。

Mechanosensing antagonizes ethylene signaling to promote root gravitropism in rice.

作者信息

Wang Han-Qing, Zhao Xing-Yu, Tang Zhong, Huang Xin-Yuan, Wang Peng, Zhang Wenhua, Zhang Yunhui, Luan Sheng, Zhao Fang-Jie

机构信息

State Key Laboratory of Crop Genetics & Germplasm Enhancement and Utilization, College of Resources and Environmental Sciences, Nanjing Agricultural University, Nanjing, 210095, China.

State Key Laboratory of Crop Genetics and Germplasm Enhancement and Utilization, College of Life Sciences, Nanjing Agricultural University, Nanjing, 210095, China.

出版信息

Nat Commun. 2025 Apr 19;16(1):3712. doi: 10.1038/s41467-025-59047-z.

Abstract

Root gravitropism relies on gravity perception by the root cap and requires tightly regulated phytohormone signaling. Here, we isolate a rice mutant that displays root coiling in hydroponics but normal gravitropic growth in soil. We identify COILING ROOT IN WATER 1 (CRW1) encoding an ETHYLENE-INSENSITIVE3 (EIN3)-BINDING F-BOX PROTEIN (OsEBF1) as the causative gene for the mutant phenotype. We show that the OsCRW1-EIN3 LIKE 1 and 2 (OsEIL1/2)-ETHYLENE RESPONSE FACTOR 82 (OsERF82) module controls the production of reactive oxygen species in the root tip, subsequently impacting root cap stability, polar localization of PIN-FORMED 2 (OsPIN2), symmetric distribution of auxin, and ultimately gravitropic growth of roots. The OsEIL1/2-OsERF82 ethylene signaling module is effectively impeded by applying gentle mechanical resistance to root tips, including growing in water-saturated paddy soil. We further show that mechanosensing-induced calcium signaling is required and sufficient for antagonizing the ethylene signaling pathway. This study has revealed previously unanticipated interplay among ethylene, auxin, and mechanosensing in the control of plant gravitropism.

摘要

根的向重力性依赖于根冠对重力的感知,并且需要严格调控的植物激素信号传导。在这里,我们分离出一个水稻突变体,该突变体在水培条件下表现出根卷曲,但在土壤中重力生长正常。我们鉴定出编码乙烯不敏感3(EIN3)结合F-盒蛋白(OsEBF1)的水培中根卷曲1(CRW1)基因为该突变表型的致病基因。我们表明,OsCRW1-EIN3样1和2(OsEIL1/2)-乙烯响应因子82(OsERF82)模块控制根尖中活性氧的产生,随后影响根冠稳定性、PIN形2(OsPIN2)的极性定位、生长素的对称分布,最终影响根的重力生长。通过对根尖施加轻微的机械阻力,包括在水饱和的稻田土壤中生长,OsEIL1/2-OsERF82乙烯信号模块会受到有效阻碍。我们进一步表明,机械感应诱导的钙信号对于拮抗乙烯信号通路是必需的且足够的。这项研究揭示了乙烯、生长素和机械感应在控制植物向重力性方面以前未被预料到的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a77/12008199/6272dafdae62/41467_2025_59047_Fig1_HTML.jpg

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