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Additional file 1 of Comparative genomic analysis reveals the difference of NLR immune receptors between anthracnose-resistant and susceptible sorghum cultivars

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DataCite Commons2025-04-03 更新2025-09-08 收录
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https://springernature.figshare.com/articles/dataset/Additional_file_1_of_Comparative_genomic_analysis_reveals_the_difference_of_NLR_immune_receptors_between_anthracnose-resistant_and_susceptible_sorghum_cultivars/28720513
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Additional file 1. Table S1 Assessment of anthracnose resistance in the Sorghum Association Panel inoculated in the greenhouse. Table S2 Physicochemical characteristics of the NLR proteins in BTx623 and GJH1. Table S3 Rice homologous genes corresponding to the 302 sorghum NLR genes. Table S4 Orthologous genes identified between BTx623 and GJH1. Table S5 Expression profiles of NLR genes in BTx623 and GJH1 during C. sublineola infection. Table S6 Temporal co-expression analysis of sorghum gene expression during C. sublineola infection, red color indicates the NLR genes. Table S7 The primer sequences of 12 key NLR genes used for RT-qPCR analysis.

补充文件1。表S1 温室接种条件下高粱关联面板(Sorghum Association Panel)的炭疽病抗性评估。表S2 BTx623与GJH1中NLR蛋白的理化特性。表S3 与302个高粱NLR基因对应的水稻同源基因。表S4 BTx623与GJH1之间鉴定的直系同源基因。表S5 亚线黑粉菌(C. sublineola)侵染期间BTx623与GJH1中NLR基因的表达谱。表S6 亚线黑粉菌侵染期间高粱基因表达的时间共表达分析(红色标注NLR基因)。表S7 用于RT-qPCR分析的12个关键NLR基因的引物序列。
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figshare
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2025-04-03
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