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Cited 9 time in webofscience Cited 11 time in scopus
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TaSRO1 plays a dual role in suppressing TaSIP1 to fine tune mitochondrial retrograde signalling and enhance salinity stress tolerance SCIE SCOPUS

Title
TaSRO1 plays a dual role in suppressing TaSIP1 to fine tune mitochondrial retrograde signalling and enhance salinity stress tolerance
Authors
Wang, MeiWang, MengZhao, MinWang, MengchengLiu, ShupengTian, YanchenMoon, ByeonghoLiang, ChaochaoLi, ChunlongShi, WeimingBai, Ming‐YiLiu, ShuweiZhang, WeiHwang, InhwanXia, Guangmin
Date Issued
2022-10
Publisher
Blackwell Publishing Inc.
Abstract
Initially discovered in yeast, mitochondrial retrograde signalling has long been recognised as an essential in the perception of stress by eukaryotes. However, how to maintain the optimal amplitude and duration of its activation under natural stress conditions remains elusive in plants. Here, we show that TaSRO1, a major contributor to the agronomic performance of bread wheat plants exposed to salinity stress, interacted with a transmembrane domain-containing NAC transcription factor TaSIP1, which could translocate from the endoplasmic reticulum (ER) into the nucleus and activate some mitochondrial dysfunction stimulon (MDS) genes. Overexpression of TaSIP1 and TaSIP1-∆C (a form lacking the transmembrane domain) in wheat both compromised the plants' tolerance of salinity stress, highlighting the importance of precise regulation of this signal cascade during salinity stress. The interaction of TaSRO1/TaSIP1, in the cytoplasm, arrested more TaSIP1 on the membrane of ER, and in the nucleus, attenuated the trans-activation activity of TaSIP1, therefore reducing the TaSIP1-mediated activation of MDS genes. Moreover, the overexpression of TaSRO1 rescued the inferior phenotype induced by TaSIP1 overexpression. Our study provides an orchestrating mechanism executed by the TaSRO1–TaSIP1 module that balances the growth and stress response via fine tuning the level of mitochondria retrograde signalling.
URI
https://oasis.postech.ac.kr/handle/2014.oak/116239
DOI
10.1111/nph.18340
ISSN
0028-646X
Article Type
Article
Citation
New Phytologist, vol. 236, no. 2, page. 495 - 511, 2022-10
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황인환HWANG, INHWAN
Dept of Life Sciences
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