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ATANN3参与幼苗中细胞外ATP调节的生长素分布。

ATANN3 Is Involved in Extracellular ATP-Regulated Auxin Distribution in Seedlings.

作者信息

Xu Jiawei, Han Lijuan, Xia Shuyan, Zhu Ruojia, Kang Erfang, Shang Zhonglin

机构信息

Ministry of Education Key Laboratory of Molecular and Cellular Biology, College of Life Sciences, Hebei Normal University, Shijiazhuang 050024, China.

出版信息

Plants (Basel). 2023 Jan 10;12(2):330. doi: 10.3390/plants12020330.

Abstract

Extracellular ATP (eATP) plays multiple roles in plant growth and development, and stress responses. It has been revealed that eATP suppresses growth and alters the growth orientation of the root and hypocotyl of by affecting auxin transport and localization in these organs. However, the mechanism of the eATP-stimulated auxin distribution remains elusive. Annexins are involved in multiple aspects of plant cellular metabolism, while their role in response to apoplastic signals remains unclear. Here, by using the loss-of-function mutations, we investigated the role of AtANN3 in the eATP-regulated root and hypocotyl growth. Firstly, the inhibitory effects of eATP on root and hypocotyl elongation were weakened or impaired in the null mutants ( and ). Meanwhile, the distribution of DR5-GUS and DR5-GFP indicated that the eATP-induced asymmetric distribution of auxin in the root tips or hypocotyl cells occurred in wild-type control plants, while in mutant seedlings, it was not observed. Further, the eATP-induced asymmetric distribution of PIN2-GFP in root-tip cells or that of PIN3-GFP in hypocotyl cells was reduced in seedlings. Finally, the eATP-induced asymmetric distribution of cytoplasmic vesicles in root-tip cells was impaired in seedlings. Based on these results, we suggest that AtANN3 may be involved in eATP-regulated seedling growth by regulating the distribution of auxin and auxin transporters in vegetative organs.

摘要

细胞外ATP(eATP)在植物生长发育和应激反应中发挥多种作用。研究表明,eATP通过影响生长素在这些器官中的运输和定位来抑制生长并改变根和下胚轴的生长方向。然而,eATP刺激生长素分布的机制仍不清楚。膜联蛋白参与植物细胞代谢的多个方面,但其在响应质外体信号中的作用仍不明确。在这里,我们通过使用功能缺失突变体,研究了AtANN3在eATP调节的根和下胚轴生长中的作用。首先,在AtANN3基因敲除突变体(Atann3-1和Atann3-2)中,eATP对根和下胚轴伸长的抑制作用减弱或受损。同时,DR5-GUS和DR5-GFP的分布表明,eATP诱导的生长素在根尖或下胚轴细胞中的不对称分布在野生型对照植物中出现,而在AtANN3突变体幼苗中未观察到。此外,在AtANN3幼苗中,eATP诱导的根尖细胞中PIN2-GFP或下胚轴细胞中PIN3-GFP的不对称分布减少。最后,在AtANN3幼苗中,eATP诱导的根尖细胞质囊泡不对称分布受损。基于这些结果,我们认为AtANN3可能通过调节营养器官中生长素和生长素转运蛋白的分布参与eATP调节的幼苗生长。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d352/9867528/3590e1dd1f51/plants-12-00330-g001.jpg

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