A sensor kinase controls turgor-driven plant infection by the rice blast fungus

附着胞 膨胀压力 真菌 麦格纳波特 细胞生物学 生物 蛋白激酶A 组氨酸激酶 生物物理学 激酶 组氨酸 格里斯麦格纳波特 植物 生物化学 水稻 基因
作者
Lauren S. Ryder,Yasin Dagdas,Michael J. Kershaw,Chandrasekhar Venkataraman,Anotida Madzvamuse,Yan Xia,Neftaly Cruz-Mireles,Darren M. Soanes,Míriam Osés-Ruiz,Vanessa Styles,Jan Sklenář,Frank L.H. Menke,Nicholas J. Talbot
出处
期刊:Nature [Springer Nature]
卷期号:574 (7778): 423-427 被引量:90
标识
DOI:10.1038/s41586-019-1637-x
摘要

The blast fungus Magnaporthe oryzae gains entry to its host plant by means of a specialized pressure-generating infection cell called an appressorium, which physically ruptures the leaf cuticle1,2. Turgor is applied as an enormous invasive force by septin-mediated reorganization of the cytoskeleton and actin-dependent protrusion of a rigid penetration hypha3. However, the molecular mechanisms that regulate the generation of turgor pressure during appressorium-mediated infection of plants remain poorly understood. Here we show that a turgor-sensing histidine–aspartate kinase, Sln1, enables the appressorium to sense when a critical turgor threshold has been reached and thereby facilitates host penetration. We found that the Sln1 sensor localizes to the appressorium pore in a pressure-dependent manner, which is consistent with the predictions of a mathematical model for plant infection. A Δsln1 mutant generates excess intracellular appressorium turgor, produces hyper-melanized non-functional appressoria and does not organize the septins and polarity determinants that are required for leaf infection. Sln1 acts in parallel with the protein kinase C cell-integrity pathway as a regulator of cAMP-dependent signalling by protein kinase A. Pkc1 phosphorylates the NADPH oxidase regulator NoxR and, collectively, these signalling pathways modulate appressorium turgor and trigger the generation of invasive force to cause blast disease. The histidine–aspartate kinase Sln1 acts as a molecular sensor of turgor in appressoria of the rice blast fungus Magnaporthe oryzae, enabling penetration of the host leaf cuticle and plant infection.

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