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Abiotic Stresses Antagonize the Rice Defence Pathway through the Tyrosine-Dephosphorylation of OsMPK6

机译:非生物胁迫通过OsMPK6的酪氨酸脱磷酸作用拮抗水稻防御途径。

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摘要

Plants, as sessile organisms, survive environmental changes by prioritizing their responses to the most life-threatening stress by allocating limited resources. Previous studies showed that pathogen resistance was suppressed under abiotic stresses. Here, we show the mechanism underlying this phenomenon. Phosphorylation of WRKY45, the central transcription factor in salicylic-acid (SA)-signalling-dependent pathogen defence in rice, via the OsMKK10-2–OsMPK6 cascade, was required to fully activate WRKY45. The activation of WRKY45 by benzothiadiazole (BTH) was reduced under low temperature and high salinity, probably through abscisic acid (ABA) signalling. An ABA treatment dephosphorylated/inactivated OsMPK6 via protein tyrosine phosphatases, OsPTP1/2, leading to the impaired activation of WRKY45 and a reduction in Magnaporthe oryzae resistance, even after BTH treatment. BTH induced a strong M. oryzae resistance in OsPTP1/2 knockdown rice, even under cold and high salinity, indicating that OsPTP1/2 is the node of SA-ABA signalling crosstalk and its down-regulation makes rice disease resistant, even under abiotic stresses. These results points to one of the directions to further improve crops by managing the tradeoffs between different stress responses of plants.
机译:作为无柄生物,植物通过分配有限的资源来优先应对最威胁生命的胁迫,从而能够应对环境变化。先前的研究表明,在非生物胁迫下,病原体抗性受到抑制。在这里,我们显示了这种现象的潜在机制。为了完全激活WRKY45,需要通过OsMKK10-2–OsMPK6级联对水稻中水杨酸(SA)信号依赖性病原体防御系统的中心转录因子WRKY45进行磷酸化。在低温和高盐度下,苯并噻二唑(BTH)对WRKY45的活化作用可能降低了,这可能是通过脱落酸(ABA)信号传导引起的。 ABA处理通过蛋白酪氨酸磷酸酶OsPTP1 / 2使磷酸化/灭活的OsMPK6失活,甚至在BTH处理后,也导致WRKY45的激活受损和稻瘟病菌抗性降低。即使在寒冷和高盐度下,BTH仍能在OsPTP1 / 2敲除水稻中诱导出对米曲霉的强抗性,表明OsPTP1 / 2是SA-ABA信号串扰的节点,其下调即使在非生物胁迫下也能使水稻抗病。 。这些结果指出了通过管理植物不同胁迫响应之间的权衡来进一步改善作物的方向之一。

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