Department of Botany and Plant Pathology, Purdue University, 915 W. State St., West Lafayette, IN, 47907, USA.
Department of Agronomy, Purdue University, 915 W. State St., West Lafayette, IN, 47907, USA.
Plant J. 2023 Jan;113(2):308-326. doi: 10.1111/tpj.16048. Epub 2022 Dec 18.
Sorghum is an important food and feed crop globally; its production is hampered by anthracnose disease caused by the fungal pathogen Colletotrichum sublineola (Cs). Here, we report identification and characterization of ANTHRACNOSE RESISTANCE GENE 2 (ARG2) encoding a nucleotide-binding leucine-rich repeat (NLR) protein that confers race-specific resistance to Cs strains. ARG2 is one of a cluster of several NLR genes initially identified in the sorghum differential line SC328C that is resistant to some Cs strains. This cluster shows structural and copy number variations in different sorghum genotypes. Different sorghum lines carrying independent ARG2 alleles provided the genetic validation for the identity of the ARG2 gene. ARG2 expression is induced by Cs, and chitin induces ARG2 expression in resistant but not in susceptible lines. ARG2-mediated resistance is accompanied by higher expression of defense and secondary metabolite genes at early stages of infection, and anthocyanin and zeatin metabolisms are upregulated in resistant plants. Interestingly, ARG2 localizes to the plasma membrane when transiently expressed in Nicotiana benthamiana. Importantly, ARG2 plants produced higher shoot dry matter than near-isogenic lines carrying the susceptible allele suggesting an absence of an ARG2 associated growth trade-off. Furthermore, ARG2-mediated resistance is stable at a wide range of temperatures. Our observations open avenues for resistance breeding and for dissecting mechanisms of resistance.
高粱是全球重要的粮食和饲料作物;其生产受到炭疽病的阻碍,炭疽病是由真菌病原体炭疽菌(Cs)引起的。在这里,我们报告了鉴定和表征编码核苷酸结合亮氨酸重复(NLR)蛋白的炭疽病抗性基因 2(ARG2),该蛋白赋予对 Cs 菌株的专化抗性。ARG2 是最初在高粱差异系 SC328C 中鉴定出的一组 NLR 基因之一,该系对一些 Cs 菌株具有抗性。该簇在不同高粱基因型中表现出结构和拷贝数的变化。携带独立 ARG2 等位基因的不同高粱系为 ARG2 基因的身份提供了遗传验证。ARG2 的表达受 Cs 诱导,几丁质诱导抗性而不是敏感系中 ARG2 的表达。ARG2 介导的抗性伴随着感染早期防御和次生代谢物基因的更高表达,以及抗性植物中花色苷和玉米素代谢物的上调。有趣的是,ARG2 瞬时表达在烟草原生质体中时定位于质膜。重要的是,ARG2 植株的地上干物质产量高于携带易感等位基因的近等基因系,这表明不存在与 ARG2 相关的生长权衡。此外,ARG2 介导的抗性在广泛的温度范围内是稳定的。我们的观察结果为抗性育种和抗性机制的剖析开辟了途径。