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An Oryza-specific hydroxycinnamoyl tyramine gene cluster contributes to enhanced disease resistance 被引量:9
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作者 Shuangqian Shen Meng Peng +18 位作者 Hong Fang Zixuan Wang Shen Zhou Xinyu Jing Meng Zhang Chenkun Yang Hao Guo Yufei Li Long Lei Yuheng Shi Yangyang Sun Xianqing Liu Congping Xu Takayuki Tohge Meng Yuan Alisdair R.Fernie Yuese Ning Guo-Liang Wang Jie Luo 《Science Bulletin》 SCIE EI CSCD 2021年第23期2369-2380,共12页
Genomic clustering of non-homologous genes for the biosynthesis of plant defensive compounds is an emerging theme, but insights into their formation and physiological function remain limited. Here we report the identi... Genomic clustering of non-homologous genes for the biosynthesis of plant defensive compounds is an emerging theme, but insights into their formation and physiological function remain limited. Here we report the identification of a newly discovered hydroxycinnamoyl tyramine(HT) gene cluster in rice.This cluster contains a pyridoxamine 50-phosphate oxidase(Os PDX3) producing the cofactor pyridoxal50-phosphate(PLP), a PLP-dependent tyrosine decarboxylase(Os Ty DC1), and two duplicated hydroxycinnamoyl transferases(Os THT1 and Os THT2). These members were combined to represent an enzymological innovation gene cluster. Natural variation analysis showed that the abundance of the toxic tyramine intermediate of the gene cluster among different rice accessions is mainly determined by the coordinated transcription of Os Ty DC1 and Os THT1. Further pathogen incubation assays demonstrated that the end products of the HT gene cluster displayed enhanced resistance to the bacterial pathogen Xanthomonas oryzae pv. Oryzae(Xoo) and fungal pathogen Magnaporthe oryzae(M. oryzae), and the enhanced resistance is associated with the boost of phytoalexins and the activation of defense response. The unique presence of the HT gene cluster in Oryza AA genome, together with the enrichment of transposon elements within this gene cluster region, provides an evolutionary background to accelerate cluster member combinations. Our study not only discovered a gene cluster involved in the phenylpropanoid metabolism but also addressed the key aspects of gene cluster formation. In addition, our results provide a new metabolic pool for plant defense against pathogens. 展开更多
关键词 Rice Gene cluster Hydroxycinnamic acid amide PHYTOALEXIN Xanthomonas oryzae pv.oryzae Magnaporthe oryzae Transposon element
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代谢组分析青稞芳香族酚胺响应白粉病胁迫
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作者 黄昱箫 黄思曙 +4 位作者 占传松 刘贤青 曾兴权 罗杰 《麦类作物学报》 CAS CSCD 北大核心 2024年第8期1019-1028,共10页
大麦专化型白粉菌(Blumeria graminis f.sp.hordei,Bgh)引起的白粉病对青稞的产量和质量造成了严重影响。本研究采用广泛靶向代谢组学技术,对青稞品种G72(白粉病敏感型)和K69(白粉病高抗型)进行了分析,旨在探究青稞抵御白粉病的相关代... 大麦专化型白粉菌(Blumeria graminis f.sp.hordei,Bgh)引起的白粉病对青稞的产量和质量造成了严重影响。本研究采用广泛靶向代谢组学技术,对青稞品种G72(白粉病敏感型)和K69(白粉病高抗型)进行了分析,旨在探究青稞抵御白粉病的相关代谢物途径。结果表明:共鉴定出406种代谢物,包括氨基酸衍生物、黄酮类化合物、酚胺、苯丙烷、脂类、有机酸、核苷酸等次生代谢物;主成分分析(PCA)显示,高抗品种和易感品种在白粉菌侵染后的代谢物积累模式存在差异;KEGG富集分析表明,与G72相比,K69在苯丙烷和类黄酮等生物合成途径上代谢物显著富集;在白粉菌接种24 h后,高抗性青稞品种K69和大麦品种WDM00496在类黄酮途径中的代谢物含量均显著提高,而K69的酚胺类化合物,尤其是芳香族酚胺的积累显著增加。外源喷施芳香族酚胺的实验发现,芳香族酚胺的积累可以增强青稞抵御白粉菌侵染的能力。综上所述,芳香族酚胺是青稞抗白粉病的关键代谢物,其在白粉菌的诱导下积累,从而增强了青稞的抗白粉病能力。 展开更多
关键词 青稞 白粉病 代谢组学 芳香族酚胺
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