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Variations in the Structure and Evolution of Rice WRKY Genes in Indica and Japonica Genotypes and their Co-expression Network in Mediating Disease Resistance

机译:Rice稻和粳稻基因型水稻WRKY基因结构和进化的变异及其在抗病性中的共表达网络

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摘要

WRKY transcription factor (TF) family regulates many functions in plant growth and development and also during biotic and abiotic stress. In this study, 101 WRKY TF gene models in indica and japonica rice were used to conduct evolutionary analysis, gene structure analysis, and motif composition. Co-expression analysis was carried out first by selecting the differentially expressing genes that showed a significant change in response to the pathogens from Rice Oligonucleotide Array Database (ROAD). About 82 genes showed responses to infection by Magnaporthe oryzae or Xanthomonas oryzae pv. oryzae. Co-expression gene network was constructed using direct neighborhood and context associated inbuilt mode in RiceNetv2 tool. Only 41 genes showed interaction with 2299 non-WRKY genes. Variations exist in the structure and evolution of WRKY genes among indica and japonica genotypes which have important implications in their differential roles including disease resistance. WRKY genes mediate a complex networking and co-express along with other WRKY and non-WRKY genes to mediate resistance against fungal and bacterial pathogens in rice.
机译:WRKY转录因子(TF)家族在植物生长发育以及生物和非生物胁迫期间调节许多功能。本研究利用101稻和粳稻的101种WRKY TF基因模型进行了进化分析,基因结构分析和基序组成。通过从水稻寡核苷酸阵列数据库(ROAD)中选择对病原体的反应显示出显着变化的差异表达基因,首先进行共表达分析。大约82个基因显示出对稻瘟病菌或米黄单胞菌pv感染的反应。水稻在RiceNetv2工具中使用直接邻域和上下文关联的内置模式构建共表达基因网络。仅41个基因显示出与2299个非WRKY基因的相互作用。 RK型和粳型基因型之间WRKY基因的结构和进化存在差异,这对其包括疾病抗性在内的不同作用具有重要意义。 WRKY基因介导复杂的网络并与其他WRKY和非WRKY基因共同表达,以介导水稻对真菌和细菌病原体的抗性。

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