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鉴定和表征对 Ug99 流行群具有抗性的小麦秆锈病抗性基因 Sr21 在高温下的作用。

Identification and characterization of wheat stem rust resistance gene Sr21 effective against the Ug99 race group at high temperature.

机构信息

Department of Plant Sciences, University of California, Davis, Davis, CA, United States of America.

USDA-ARS Cereal Disease Laboratory and Department of Plant Pathology, University of Minnesota, St. Paul, MN, United States of America.

出版信息

PLoS Genet. 2018 Apr 3;14(4):e1007287. doi: 10.1371/journal.pgen.1007287. eCollection 2018 Apr.

Abstract

Wheat stem rust, caused by Puccinia graminis f. sp. tritici (Pgt), is a devastating foliar disease. The Ug99 race group has combined virulence to most stem rust (Sr) resistance genes deployed in wheat and is a threat to global wheat production. Here we identified a coiled-coil, nucleotide-binding leucine-rich repeat protein (NLR) completely linked to the Ug99 resistance gene Sr21 from Triticum monococcum. Loss-of-function mutations and transgenic complementation confirmed that this gene is Sr21. Sr21 transcripts were significantly higher at high temperatures, and this was associated with significant upregulation of pathogenesis related (PR) genes and increased levels of resistance at those temperatures. Introgression of Sr21 into hexaploid wheat resulted in lower levels of resistance than in diploid wheat, but transgenic hexaploid wheat lines with high levels of Sr21 expression showed high levels of resistance. Sr21 can be a valuable component of transgenic cassettes or gene pyramids combining multiple resistance genes against Ug99.

摘要

小麦秆锈病由禾柄锈菌小麦专化型(Pgt)引起,是一种毁灭性的叶部病害。Ug99 菌系群同时含有对小麦中大多数秆锈(Sr)抗性基因的毒性,对全球小麦生产构成威胁。本研究从节节麦中鉴定出一个与 Ug99 抗性基因 Sr21 紧密连锁的卷曲螺旋-核苷酸结合-富含亮氨酸重复蛋白(NLR)。功能丧失突变和转基因互补实验证实该基因即为 Sr21。高温下 Sr21 的转录本水平显著升高,同时伴随着病程相关(PR)基因的显著上调和对这些温度的抗性增强。将 Sr21 导入六倍体小麦中导致的抗性水平低于二倍体小麦,但具有高水平 Sr21 表达的转基因六倍体小麦系表现出高水平的抗性。Sr21 可以作为含有多个针对 Ug99 抗性基因的转基因盒或基因塔的有价值组成部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c22/5882135/773a1a039c96/pgen.1007287.g001.jpg

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