Department of Plant Pathology and Weed Research, ARO, Volcani Center, Rishon LeZion, 7505101, Israel.
School of Plant Sciences and Food Security, Tel Aviv University, Tel Aviv, 69978, Israel.
Commun Biol. 2020 Jul 30;3(1):404. doi: 10.1038/s42003-020-01130-w.
Plants rely on innate immunity to perceive and ward off microbes and pests, and are able to overcome the majority of invading microorganisms. Even so, specialized pathogens overcome plant defenses, posing a persistent threat to crop and food security worldwide, raising the need for agricultural products with broad, efficient resistance. Here we report a specific mutation in a tomato (S. lycopersicum) helper nucleotide-binding domain leucine-rich repeat H-NLR, SlNRC4a, which results in gain of function constitutive basal defense activation, in absence of PRR activation. Knockout of the entire NRC4 clade in tomato was reported to compromise Rpi-blb2 mediated immunity. The SlNRC4a mutant reported here possesses enhanced immunity and disease resistance to a broad-spectrum of pathogenic fungi, bacteria and pests, while lacking auto-activated HR or negative effects on plant growth and crop yield, providing promising prospects for agricultural adaptation in the war against plant pathogens that decrease productivity.
植物依赖先天免疫来感知和抵御微生物和害虫,并且能够克服大多数入侵的微生物。即便如此,专门的病原体还是能够克服植物的防御,对全球的作物和粮食安全构成持续威胁,这就需要具有广泛、高效抗性的农产品。在这里,我们报告了番茄(S. lycopersicum)辅助核苷酸结合域亮氨酸丰富重复 H-NLR 中的一个特定突变 SlNRC4a,该突变导致功能获得性组成型基础防御激活,而无需 PRR 激活。据报道,番茄中整个 NRC4 簇的敲除会损害 Rpi-blb2 介导的免疫。这里报道的 SlNRC4a 突变体具有增强的免疫和对广谱病原真菌、细菌和害虫的抗性,同时缺乏自动激活的 HR 或对植物生长和作物产量的负面影响,为对抗降低生产力的植物病原体的农业适应提供了有希望的前景。