异胞体
大豆孢囊线虫
共生
线虫
酶
根瘤菌
微生物学
对抗
囊肿
生物
细菌
生物化学
植物
生态学
遗传学
受体
医学
放射科
作者
Wei Chen,Di Wang,Shaoyong Ke,Yangrong Cao,Wensheng Xiang,Xiaoli Guo,Qing Yang
出处
期刊:Nature microbiology
日期:2024-06-17
卷期号:9 (8): 1993-2005
被引量:2
标识
DOI:10.1038/s41564-024-01727-5
摘要
Cyst nematodes are the most damaging species of plant-parasitic nematodes. They antagonize the colonization of beneficial microbial symbionts that are important for nutrient acquisition of plants. The molecular mechanism of the antagonism, however, remains elusive. Here, through biochemical combined with structural analysis, we reveal that Heterodera glycines, the most notorious soybean cyst nematode, suppresses symbiosis by secreting an enzyme named HgCht2 to hydrolyse the key symbiotic signalling molecules, lipochitooligosaccharides (LCOs). We solved the three-dimensional structures of apo HgCht2, as well as its chitooligosaccharide-bound and LCO-bound forms. These structures elucidated the substrate binding and hydrolysing mechanism of the enzyme. We designed an HgCht2 inhibitor, 1516b, which successfully suppresses the antagonism of cyst nematodes towards nitrogen-fixing rhizobia and phosphorus-absorbing arbuscular mycorrhizal symbioses. As HgCht2 is phylogenetically conserved across all cyst nematodes, our study revealed a molecular mechanism by which parasitic cyst nematodes antagonize the establishment of microbial symbiosis and provided a small-molecule solution. Heterodera glycines, a soybean cyst nematode, suppresses microbial plant symbiosis by secreting the HgCht2 enzyme to hydrolyse the key symbiotic signalling molecules, lipochitooligosaccharides.
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