Bonnamy Mélia, Pinel-Galzi Agnès, Gorgues Lucille, Chalvon Véronique, Hébrard Eugénie, Chéron Sophie, Nguyen Tràng Hiếu, Poulicard Nils, Sabot François, Pidon Hélène, Champion Antony, Césari Stella, Kroj Thomas, Albar Laurence
PHIM Plant Health Institute, Univ Montpellier, IRD, CIRAD, INRAE, Institut Agro, 34980, Montpellier, France.
DIADE, Univ Montpellier, IRD, 34394, Montpellier, France.
New Phytol. 2023 Feb;237(3):900-913. doi: 10.1111/nph.18532. Epub 2022 Dec 7.
Viral diseases are a major limitation for crop production, and their control is crucial for sustainable food supply. We investigated by a combination of functional genetics and experimental evolution the resistance of rice to the rice yellow mottle virus (RYMV), which is among the most devastating rice pathogens in Africa, and the mechanisms underlying the extremely fast adaptation of the virus to its host. We found that the RYMV3 gene that protects rice against the virus codes for a nucleotide-binding and leucine-rich repeat domain immune receptor (NLRs) from the Mla-like clade of NLRs. RYMV3 detects the virus by forming a recognition complex with the viral coat protein (CP). The virus escapes efficiently from detection by mutations in its CP, some of which interfere with the formation of the recognition complex. This study establishes that NLRs also confer in monocotyledonous plants immunity to viruses, and reveals an unexpected functional diversity for NLRs of the Mla clade that were previously only known as fungal disease resistance proteins. In addition, it provides precise insight into the mechanisms by which viruses adapt to plant immunity and gives important knowledge for the development of sustainable resistance against viral diseases of cereals.
病毒性疾病是作物生产的主要限制因素,对其进行控制对于可持续粮食供应至关重要。我们通过功能遗传学和实验进化相结合的方法,研究了水稻对水稻黄斑驳病毒(RYMV)的抗性,该病毒是非洲最具毁灭性的水稻病原体之一,同时也研究了该病毒对其宿主的极快速适应的潜在机制。我们发现,保护水稻免受该病毒侵害的RYMV3基因编码一种来自NLRs的Mla类进化枝的核苷酸结合和富含亮氨酸重复结构域免疫受体(NLRs)。RYMV3通过与病毒外壳蛋白(CP)形成识别复合物来检测病毒。该病毒通过其CP中的突变有效地逃避检测,其中一些突变会干扰识别复合物的形成。这项研究证实,NLRs也赋予单子叶植物对病毒的免疫力,并揭示了Mla进化枝的NLRs意想不到的功能多样性,这些NLRs以前仅被认为是真菌病害抗性蛋白。此外,它还提供了对病毒适应植物免疫机制的精确见解,并为开发针对谷物病毒性疾病的可持续抗性提供了重要知识。