Hu Lingfei, Ye Meng, Li Ran, Zhang Tongfang, Zhou Guoxin, Wang Qi, Lu Jing, Lou Yonggen
State Key Laboratory of Rice Biology, Institute of Insect Science, Zhejiang University, Hangzhou 310058, China (L.H., M.Y., R.L., T.Z., G.Z., Q.W., J.L., Y.L.); andDepartment of Plant Protection, Key Laboratory for Quality Improvement of Agriculture Products of Zhejiang Province, Zhejiang Agriculture and Forestry University, Lin'an 311300, China (G.Z.).
State Key Laboratory of Rice Biology, Institute of Insect Science, Zhejiang University, Hangzhou 310058, China (L.H., M.Y., R.L., T.Z., G.Z., Q.W., J.L., Y.L.); andDepartment of Plant Protection, Key Laboratory for Quality Improvement of Agriculture Products of Zhejiang Province, Zhejiang Agriculture and Forestry University, Lin'an 311300, China (G.Z.)
Plant Physiol. 2015 Dec;169(4):2907-21. doi: 10.1104/pp.15.01090. Epub 2015 Oct 9.
The mechanisms by which herbivore-attacked plants activate their defenses are well studied. By contrast, little is known about the regulatory mechanisms that allow them to control their defensive investment and avoid a defensive overshoot. We characterized a rice (Oryza sativa) WRKY gene, OsWRKY53, whose expression is rapidly induced upon wounding and induced in a delayed fashion upon attack by the striped stem borer (SSB) Chilo suppressalis. The transcript levels of OsWRKY53 are independent of endogenous jasmonic acid but positively regulated by the mitogen-activated protein kinases OsMPK3/OsMPK6. OsWRKY53 physically interacts with OsMPK3/OsMPK6 and suppresses their activity in vitro. By consequence, it modulates the expression of defensive, MPK-regulated WRKYs and thereby reduces jasmonic acid, jasmonoyl-isoleucine, and ethylene induction. This phytohormonal reconfiguration is associated with a reduction in trypsin protease inhibitor activity and improved SSB performance. OsWRKY53 is also shown to be a negative regulator of plant growth. Taken together, these results show that OsWRKY53 functions as a negative feedback modulator of MPK3/MPK6 and thereby acts as an early suppressor of induced defenses. OsWRKY53 therefore enables rice plants to control the magnitude of their defensive investment during early signaling.
食草动物攻击后植物激活防御的机制已得到充分研究。相比之下,对于植物如何控制其防御投入并避免防御过度的调控机制却知之甚少。我们鉴定了一个水稻(Oryza sativa)WRKY基因OsWRKY53,其表达在受伤后迅速被诱导,在受到二化螟(SSB)Chilo suppressalis攻击后则延迟诱导。OsWRKY53的转录水平不依赖于内源性茉莉酸,但受丝裂原活化蛋白激酶OsMPK3/OsMPK6正向调控。OsWRKY53与OsMPK3/OsMPK6发生物理相互作用,并在体外抑制它们的活性。结果,它调节防御性的、MPK调控的WRKYs的表达,从而降低茉莉酸、茉莉酰异亮氨酸和乙烯的诱导。这种植物激素的重新配置与胰蛋白酶抑制剂活性的降低以及二化螟生长性能的改善有关。OsWRKY53也被证明是植物生长的负调控因子。综上所述,这些结果表明OsWRKY53作为MPK3/MPK6的负反馈调节因子,从而作为诱导防御的早期抑制因子发挥作用。因此,OsWRKY53使水稻植株能够在早期信号传导过程中控制其防御投入的程度。