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Role of the tomato fruit ripening regulator MADS-RIN in resistance to Botrytis cinerea infection

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【作者】 郑慧金蓉刘子萌孙翠石艳娜Donald Grierson朱长青李珊Ian Ferguson陈昆松

【Author】 Hui Zheng;Rong Jin;Zimeng Liu;Cui Sun;Yanna Shi;Donald Grierson;Changqing Zhu;Shan Li;Ian Ferguson;Kunsong Chen;College of Agriculture and Biotechnology, Zhejiang University;Zhejiang Provincial Key Laboratory of Integrative Biology of Horticultural Plants, Department of Horticulture and Agricultural Experiment Station, Zhejiang University;Zhejiang Provincial Key Laboratory of Horticultural Plant Integrative Biology, Zhejiang University;Plant and Crop Sciences Division, School of Biosciences, University of Nottingham;Zhejiang University (Visiting Scientist);

【通讯作者】 李珊;

【机构】 College of Agriculture and Biotechnology, Zhejiang UniversityZhejiang Provincial Key Laboratory of Integrative Biology of Horticultural Plants, Department of Horticulture and Agricultural Experiment Station, Zhejiang UniversityZhejiang Provincial Key Laboratory of Horticultural Plant Integrative Biology, Zhejiang UniversityPlant and Crop Sciences Division, School of Biosciences, University of NottinghamZhejiang University (Visiting Scientist)

【摘要】 Tomato MADS-RIN(RIN) transcription factor has been shown to be a master activator regulating fruit ripening. Recent studies have revealed that in addition to activating many other cell wall genes, it also represses expression of XTH5, XTH8, and MAN4a, which are positively related to excess flesh softening and cell wall degradation, which might indicate it has a potential role in pathogen resistance of ripening fruit. In this study, both wild-type(WT) and RIN-knockout(RINKO) mutant tomato fruit were infected with Botrytis cinerea to investigate the function of RIN in defense against pathogen infection during ripening. The results showed that RIN-KO fruit were much more sensitive to B. cinerea infection with larger lesion sizes. Transcriptome data and qRTPCR assay indicate genes of phenylalanine ammonialyase(PAL) and chitinase(CHI) in RIN-KO fruit were reduced and their corresponding enzyme activities were decreased. Transcripts of genes encoding pathogenesis-related proteins(PRs), including PR1a, PRSTH2, and APETALA2/Ethylene Response Factor(AP2/ERF) including ERF.A1, Pti5, Pti6, ERF.A4, were reduced in RIN-KO fruit compared to WT fruit. Moreover, in the absence of RIN the expression of genes encoding cell wallmodifying enzymes XTH5, XTH8, MAN4a has been reported to be elevated, which is potentially correlated with cell wall properties. When present, RIN represses transcription of XTH5 by activating ERF.F4, a class II(repressor class) ERF gene family member, and ERF.F5. These results support the conclusion that RIN enhances ripening-related resistance to gray mold infection by upregulating pathogen-resistance genes and defense enzyme activities as well as reducing accumulation of transcripts encoding some cell wall enzymes.

【Abstract】 Tomato MADS-RIN(RIN) transcription factor has been shown to be a master activator regulating fruit ripening. Recent studies have revealed that in addition to activating many other cell wall genes, it also represses expression of XTH5, XTH8, and MAN4a, which are positively related to excess flesh softening and cell wall degradation, which might indicate it has a potential role in pathogen resistance of ripening fruit. In this study, both wild-type(WT) and RIN-knockout(RINKO) mutant tomato fruit were infected with Botrytis cinerea to investigate the function of RIN in defense against pathogen infection during ripening. The results showed that RIN-KO fruit were much more sensitive to B. cinerea infection with larger lesion sizes. Transcriptome data and qRTPCR assay indicate genes of phenylalanine ammonialyase(PAL) and chitinase(CHI) in RIN-KO fruit were reduced and their corresponding enzyme activities were decreased. Transcripts of genes encoding pathogenesis-related proteins(PRs), including PR1a, PRSTH2, and APETALA2/Ethylene Response Factor(AP2/ERF) including ERF.A1, Pti5, Pti6, ERF.A4, were reduced in RIN-KO fruit compared to WT fruit. Moreover, in the absence of RIN the expression of genes encoding cell wallmodifying enzymes XTH5, XTH8, MAN4a has been reported to be elevated, which is potentially correlated with cell wall properties. When present, RIN represses transcription of XTH5 by activating ERF.F4, a class II(repressor class) ERF gene family member, and ERF.F5. These results support the conclusion that RIN enhances ripening-related resistance to gray mold infection by upregulating pathogen-resistance genes and defense enzyme activities as well as reducing accumulation of transcripts encoding some cell wall enzymes.

【基金】 funded by the National Natural Science Foundation of China (No.32001750);the 111 Project (B17039);the Zhejiang Natural Science Fund (LQ21C150005);the Youth Research and Innovation Project of Zhejiang University (2020QNA6025);the Fundamental Research Funds for the Central Universities (2021FZZX003–01–04),China
  • 【文献出处】 Food Quality and Safety ,食品品质与安全研究(英文) , 编辑部邮箱 ,2021年04期
  • 【分类号】TS255.3
  • 【下载频次】1
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