State Key Laboratory of Crop Biology, Shandong Key Laboratory of Crop Biology, College of Agronomy, Shandong Agricultural University, Tai'an, 271018, Shandong, China.
Mol Biol Rep. 2020 Nov;47(11):8949-8961. doi: 10.1007/s11033-020-05948-9. Epub 2020 Nov 2.
Aspartic proteases (APs) are one of the four main protease super families. In plants, they are involved in many biological processes, such as biotic and abiotic stress resistance, protein processing and degradation, senescence, and programmed cell death. By performing a database (TGACv1) search and domain prediction, we identified 263 wheat AP (TaAP) proteins and observed 38 TaAP genes exhibiting alternative splicing. Moreover, by constructing a phylogenetic tree, we found that the TaAP proteins can be divided into three families and have a certain close evolutionary relationship to Arabidopsis thaliana and rice AP proteins. Transcriptome analysis showed that 29 genes in the TaAP family were up-regulated after being induced by powdery mildew. The expression of TaAP224 showed the most significant difference in transcriptome and qRT-PCR analyses. Subsequently, the promoters of these 29 genes were analysed, and we found that they contained multiple disease resistance and hormone elements, such as WRKY71OS, a common disease resistance element that is also involved in the GA signalling pathway and inhibits starch hydrolysis. The comprehensive annotation and expression profiling performed in this study increased our understanding of the TaAP family genes in wheat growth and development, and the results can be used as a basis for further study of candidate TaAP genes involved in powdery mildew resistance mechanisms.
天冬氨酸蛋白酶(APs)是四大主要蛋白酶超家族之一。在植物中,它们参与许多生物过程,如生物和非生物胁迫抗性、蛋白质加工和降解、衰老和程序性细胞死亡。通过进行数据库(TGACv1)搜索和结构域预测,我们鉴定了 263 个小麦 AP(TaAP)蛋白,并观察到 38 个 TaAP 基因表现出选择性剪接。此外,通过构建系统发育树,我们发现 TaAP 蛋白可以分为三个家族,与拟南芥和水稻 AP 蛋白具有一定的密切进化关系。转录组分析表明,29 个 TaAP 家族基因在受到白粉病诱导后上调表达。在转录组和 qRT-PCR 分析中,TaAP224 的表达差异最为显著。随后,我们分析了这些 29 个基因的启动子,发现它们包含多个抗病和激素元件,如 WRKY71OS,这是一个常见的抗病元件,也参与了 GA 信号通路并抑制淀粉水解。本研究进行的综合注释和表达谱分析增加了我们对小麦生长发育中天冬氨酸蛋白酶家族基因的理解,结果可作为进一步研究参与白粉病抗性机制的候选 TaAP 基因的基础。