National Key Laboratory of Wheat and Maize Crop Science/CIMMYT-China Wheat and Maize Joint Research Center/Agronomy College, Henan Agricultural University, Zhengzhou, 450000, China.
Department of Plant Pathology, North Dakota State University, Fargo, North Dakota, USA.
J Integr Plant Biol. 2023 Jul;65(7):1814-1825. doi: 10.1111/jipb.13478. Epub 2023 May 8.
Fusarium crown rot (FCR) and sharp eyespot (SE) are serious soil-borne diseases in wheat and its relatives that have been reported to cause wheat yield losses in many areas. In this study, the expression of a cell wall invertase gene, TaCWI-B1, was identified to be associated with FCR resistance through a combination of bulk segregant RNA sequencing and genome resequencing in a recombinant inbred line population. Two bi-parental populations were developed to further verify TaCWI-B1 association with FCR resistance. Overexpression lines and ethyl methanesulfonate (EMS) mutants revealed TaCWI-B1 positively regulating FCR resistance. Determination of cell wall thickness and components showed that the TaCWI-B1-overexpression lines exhibited considerably increased thickness and pectin and cellulose contents. Furthermore, we found that TaCWI-B1 directly interacted with an alpha-galactosidase (TaGAL). EMS mutants showed that TaGAL negatively modulated FCR resistance. The expression of TaGAL is negatively correlated with TaCWI-B1 levels, thus may reduce mannan degradation in the cell wall, consequently leading to thickening of the cell wall. Additionally, TaCWI-B1-overexpression lines and TaGAL mutants showed higher resistance to SE; however, TaCWI-B1 mutants were more susceptible to SE than controls. This study provides insights into a FCR and SE resistance gene to combat soil-borne diseases in common wheat.
镰刀菌顶腐病(FCR)和尖锐眼斑病(SE)是小麦及其近缘植物的严重土传病害,已报道在许多地区导致小麦减产。在这项研究中,通过重组自交系群体的 bulk segregant RNA 测序和基因组重测序,鉴定到一个细胞壁转化酶基因 TaCWI-B1 与 FCR 抗性相关。构建了两个双亲群体以进一步验证 TaCWI-B1 与 FCR 抗性的关联。过表达系和乙基甲磺酸(EMS)突变体表明 TaCWI-B1 正向调控 FCR 抗性。细胞壁厚度和成分的测定表明,TaCWI-B1 过表达系表现出显著增加的厚度和果胶及纤维素含量。此外,我们发现 TaCWI-B1 直接与 α-半乳糖苷酶(TaGAL)相互作用。EMS 突变体表明 TaGAL 负调控 FCR 抗性。TaGAL 的表达与 TaCWI-B1 水平呈负相关,因此可能会降低细胞壁中甘露聚糖的降解,从而导致细胞壁增厚。此外,TaCWI-B1 过表达系和 TaGAL 突变体对 SE 的抗性更高;然而,TaCWI-B1 突变体比对照更易感染 SE。本研究为普通小麦土传病害的防治提供了一个 FCR 和 SE 抗性基因的见解。