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Cotton GhSSI2 isoforms from the stearoyl acyl carrier protein fatty acid desaturase family regulate Verticillium wilt resistance

Lipids are major and essential constituents of plant cells and provide energy for various metabolic processes. However, the function of the lipid signal in defence against Verticillium dahliae, a hemibiotrophic pathogen, remains unknown. Here, we characterized 19 conserved stearoyl‐ACP desaturase fa...

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Autores principales: Mo, Shaojing, Zhang, Yan, Wang, Xingfen, Yang, Jun, Sun, Zhengwen, Zhang, Dongmei, Chen, Bin, Wang, Guoning, Ke, Huifeng, Liu, Zhengwen, Meng, Chengsheng, Li, Zhikun, Wu, Liqiang, Zhang, Guiyin, Duan, Huijun, Ma, Zhiying
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8358998/
https://www.ncbi.nlm.nih.gov/pubmed/34169624
http://dx.doi.org/10.1111/mpp.13093
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author Mo, Shaojing
Zhang, Yan
Wang, Xingfen
Yang, Jun
Sun, Zhengwen
Zhang, Dongmei
Chen, Bin
Wang, Guoning
Ke, Huifeng
Liu, Zhengwen
Meng, Chengsheng
Li, Zhikun
Wu, Liqiang
Zhang, Guiyin
Duan, Huijun
Ma, Zhiying
author_facet Mo, Shaojing
Zhang, Yan
Wang, Xingfen
Yang, Jun
Sun, Zhengwen
Zhang, Dongmei
Chen, Bin
Wang, Guoning
Ke, Huifeng
Liu, Zhengwen
Meng, Chengsheng
Li, Zhikun
Wu, Liqiang
Zhang, Guiyin
Duan, Huijun
Ma, Zhiying
author_sort Mo, Shaojing
collection PubMed
description Lipids are major and essential constituents of plant cells and provide energy for various metabolic processes. However, the function of the lipid signal in defence against Verticillium dahliae, a hemibiotrophic pathogen, remains unknown. Here, we characterized 19 conserved stearoyl‐ACP desaturase family proteins from upland cotton (Gossypium hirsutum). We further confirmed that GhSSI2 isoforms, including GhSSI2‐A, GhSSI2‐B, and GhSSI2‐C located on chromosomes A10, D10, and A12, respectively, played a dominant role to the cotton 18:1 (oleic acid) pool. Suppressing the expression of GhSSI2s reduced the 18:1 level, which autoactivated the hypersensitive response (HR) and enhanced cotton Verticillium wilt and Fusarium wilt resistance. We found that low 18:1 levels induced phenylalanine ammonia‐lyase‐mediated salicylic acid (SA) accumulation and activated a SA‐independent defence response in GhSSI2s‐silenced cotton, whereas suppressing expression of GhSSI2s affected PDF1.2‐dependent jasmonic acid (JA) perception but not the biosynthesis and signalling cascade of JA. Further investigation showed that structurally divergent resistance‐related genes and nitric oxide (NO) signal were activated in GhSSI2s‐silenced cotton. Taken together, these results indicate that SA‐independent defence response, multiple resistance‐related proteins, and elevated NO level play an important role in GhSSI2s‐regulated Verticillium wilt resistance. These findings broaden our knowledge regarding the lipid signal in disease resistance and provide novel insights into the molecular mechanism of cotton fungal disease resistance.
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spelling pubmed-83589982021-08-17 Cotton GhSSI2 isoforms from the stearoyl acyl carrier protein fatty acid desaturase family regulate Verticillium wilt resistance Mo, Shaojing Zhang, Yan Wang, Xingfen Yang, Jun Sun, Zhengwen Zhang, Dongmei Chen, Bin Wang, Guoning Ke, Huifeng Liu, Zhengwen Meng, Chengsheng Li, Zhikun Wu, Liqiang Zhang, Guiyin Duan, Huijun Ma, Zhiying Mol Plant Pathol Original Articles Lipids are major and essential constituents of plant cells and provide energy for various metabolic processes. However, the function of the lipid signal in defence against Verticillium dahliae, a hemibiotrophic pathogen, remains unknown. Here, we characterized 19 conserved stearoyl‐ACP desaturase family proteins from upland cotton (Gossypium hirsutum). We further confirmed that GhSSI2 isoforms, including GhSSI2‐A, GhSSI2‐B, and GhSSI2‐C located on chromosomes A10, D10, and A12, respectively, played a dominant role to the cotton 18:1 (oleic acid) pool. Suppressing the expression of GhSSI2s reduced the 18:1 level, which autoactivated the hypersensitive response (HR) and enhanced cotton Verticillium wilt and Fusarium wilt resistance. We found that low 18:1 levels induced phenylalanine ammonia‐lyase‐mediated salicylic acid (SA) accumulation and activated a SA‐independent defence response in GhSSI2s‐silenced cotton, whereas suppressing expression of GhSSI2s affected PDF1.2‐dependent jasmonic acid (JA) perception but not the biosynthesis and signalling cascade of JA. Further investigation showed that structurally divergent resistance‐related genes and nitric oxide (NO) signal were activated in GhSSI2s‐silenced cotton. Taken together, these results indicate that SA‐independent defence response, multiple resistance‐related proteins, and elevated NO level play an important role in GhSSI2s‐regulated Verticillium wilt resistance. These findings broaden our knowledge regarding the lipid signal in disease resistance and provide novel insights into the molecular mechanism of cotton fungal disease resistance. John Wiley and Sons Inc. 2021-06-24 /pmc/articles/PMC8358998/ /pubmed/34169624 http://dx.doi.org/10.1111/mpp.13093 Text en © 2021 The Authors. Molecular Plant Pathology published by British Society for Plant Pathology and John Wiley & Sons Ltd https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Original Articles
Mo, Shaojing
Zhang, Yan
Wang, Xingfen
Yang, Jun
Sun, Zhengwen
Zhang, Dongmei
Chen, Bin
Wang, Guoning
Ke, Huifeng
Liu, Zhengwen
Meng, Chengsheng
Li, Zhikun
Wu, Liqiang
Zhang, Guiyin
Duan, Huijun
Ma, Zhiying
Cotton GhSSI2 isoforms from the stearoyl acyl carrier protein fatty acid desaturase family regulate Verticillium wilt resistance
title Cotton GhSSI2 isoforms from the stearoyl acyl carrier protein fatty acid desaturase family regulate Verticillium wilt resistance
title_full Cotton GhSSI2 isoforms from the stearoyl acyl carrier protein fatty acid desaturase family regulate Verticillium wilt resistance
title_fullStr Cotton GhSSI2 isoforms from the stearoyl acyl carrier protein fatty acid desaturase family regulate Verticillium wilt resistance
title_full_unstemmed Cotton GhSSI2 isoforms from the stearoyl acyl carrier protein fatty acid desaturase family regulate Verticillium wilt resistance
title_short Cotton GhSSI2 isoforms from the stearoyl acyl carrier protein fatty acid desaturase family regulate Verticillium wilt resistance
title_sort cotton ghssi2 isoforms from the stearoyl acyl carrier protein fatty acid desaturase family regulate verticillium wilt resistance
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8358998/
https://www.ncbi.nlm.nih.gov/pubmed/34169624
http://dx.doi.org/10.1111/mpp.13093
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