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水稻中OsRopGEF3蛋白与OsRac3相互作用以调控根毛伸长和活性氧形成() 。

Interaction of OsRopGEF3 Protein With OsRac3 to Regulate Root Hair Elongation and Reactive Oxygen Species Formation in Rice ().

作者信息

Kim Eui-Jung, Hong Woo-Jong, Tun Win, An Gynheung, Kim Sun-Tae, Kim Yu-Jin, Jung Ki-Hong

机构信息

Graduate School of Biotechnology and Crop Biotech Institute, Kyung Hee University, Yongin, South Korea.

Department of Plant Bioscience, Pusan National University, Miryang, South Korea.

出版信息

Front Plant Sci. 2021 May 25;12:661352. doi: 10.3389/fpls.2021.661352. eCollection 2021.

Abstract

Root hairs are tip-growing cells that emerge from the root epidermis and play a role in water and nutrient uptake. One of the key signaling steps for polar cell elongation is the formation of Rho-GTP by accelerating the intrinsic exchange activity of the Rho-of-plant (ROP) or the Rac GTPase protein; this step is activated through the interaction with the plant Rho guanine nucleotide exchange factor (RopGEFs). The molecular players involved in root hair growth in rice are largely unknown. Here, we performed the functional analysis of , which is highly expressed in the root hair tissues among the family genes in rice. To reveal the role of OsRopGEF3, we analyzed the phenotype of loss-of-function mutants of , which were generated using the CRISPR-Cas9 system. The mutants had reduced root hair length and increased root hair width. In addition, we confirmed that reactive oxygen species (ROS) were highly reduced in the root hairs of the mutant. The pairwise yeast two-hybrid experiments between OsRopGEF3 and OsROP/Rac proteins in rice revealed that the OsRopGEF3 protein interacts with OsRac3. This interaction and colocalization at the same subcellular organelles were again verified in tobacco leaf cells and rice root protoplasts via bimolecular functional complementation (BiFC) assay. Furthermore, among the three respiratory burst oxidase homolog (OsRBOH) genes that are highly expressed in rice root hair cells, we found that OsRBOH5 can interact with OsRac3. Our results demonstrate an interaction network model wherein OsRopGEF3 converts the GDP of OsRac3 into GTP, and OsRac3-GTP then interacts with the N-terminal of OsRBOH5 to produce ROS, thereby suggesting OsRopGEF3 as a key regulating factor in rice root hair growth.

摘要

根毛是从根表皮长出的顶端生长细胞,在水分和养分吸收中发挥作用。极性细胞伸长的关键信号步骤之一是通过加速植物Rho(ROP)或Rac GTP酶蛋白的内在交换活性来形成Rho-GTP;这一步骤通过与植物Rho鸟嘌呤核苷酸交换因子(RopGEFs)相互作用而被激活。水稻中参与根毛生长的分子机制在很大程度上尚不清楚。在这里,我们对水稻 家族基因中在根毛组织中高表达的 进行了功能分析。为了揭示OsRopGEF3的作用,我们分析了利用CRISPR-Cas9系统构建的 功能缺失突变体的表型。突变体的根毛长度缩短,宽度增加。此外,我们证实 突变体根毛中的活性氧(ROS)显著减少。水稻中OsRopGEF3与OsROP/Rac蛋白之间的成对酵母双杂交实验表明,OsRopGEF3蛋白与OsRac3相互作用。通过双分子功能互补(BiFC)分析,在烟草叶细胞和水稻根原生质体中再次验证了这种相互作用以及在相同亚细胞器中的共定位。此外,在水稻根毛细胞中高表达的三个呼吸爆发氧化酶同源物(OsRBOH)基因中,我们发现OsRBOH5可以与OsRac3相互作用。我们的结果展示了一个相互作用网络模型,其中OsRopGEF3将OsRac3的GDP转化为GTP,然后OsRac3-GTP与OsRBOH5的N端相互作用以产生活性氧,从而表明OsRopGEF3是水稻根毛生长中的关键调节因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/635f/8185220/d4d3baabb32e/fpls-12-661352-g001.jpg

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