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Roles of the different components of magnesium chelatase in abscisic acid signal transduction

机译:螯合镁不同成分在脱落酸信号转导中的作用

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摘要

The H subunit of Mg-chelatase (CHLH) was shown to regulate abscisic acid (ABA) signaling and the I subunit (CHLI) was also reported to modulate ABA signaling in guard cells. However, it remains essentially unknown whether and how the Mg-chelatase-catalyzed Mg-protoporphyrin IX-production differs from ABA signaling. Using a newly-developed surface plasmon resonance system, we showed that ABA binds to CHLH, but not to the other Mg-chelatase components/subunits CHLI, CHLD (D subunit) and GUN4. A new rtl1 mutant allele of the CHLH gene in Arabidopsis thaliana showed ABA-insensitive phenotypes in both stomatal movement and seed germination. Upregulation of CHLI1 resulted in ABA hypersensitivity in seed germination, while downregulation of CHLI conferred ABA insensitivity in stomatal response in Arabidopsis. We showed that CHLH and CHLI, but not CHLD, regulate stomatal sensitivity to ABA in tobacco (Nicotiana benthamiana). The overexpression lines of the CHLD gene showed wild-type ABA sensitivity in Arabidopsis. Both the GUN4-RNA interference and overexpression lines of Arabidopsis showed wild-type phenotypes in the major ABA responses. These findings provide clear evidence that the Mg-chelatase-catalyzed Mg-ProtoIX production is distinct from ABA signaling, giving information to understand the mechanism by which the two cellular processes differs at the molecular level.Electronic supplementary materialThe online version of this article (doi:10.1007/s11103-012-9965-3) contains supplementary material, which is available to authorized users.
机译:Mg螯合酶(CHLH)的H亚基显示出调节脱落酸(ABA)信号传导,I亚基(CHLI)也据报道可调节保卫细胞中的ABA信号传导。然而,本质上仍未知Mg-螯合酶催化的Mg-原卟啉IX产生与ABA信号传导是否不同以及如何不同。使用新开发的表面等离振子共振系统,我们表明ABA结合CHLH,但不结合其他Mg螯合酶组分/亚基CHLI,CHLD(D亚基)和GUN4。拟南芥CHLH基因的一个新的rtl1突变等位基因在气孔运动和种子萌发中均表现出ABA不敏感表型。 CHLI1的上调导致种子发芽中的ABA超敏性,而CHLI的下调赋予拟南芥气孔响应中的ABA不敏感性。我们显示,CHLH和CHLI而不是CHLD调节烟草(烟草Nicotiana benthamiana)对ABA的气孔敏感性。 CHLD基因的过表达系在拟南芥中显示了野生型ABA敏感性。拟南芥的GUN4-RNA干扰和过表达系均在主要的ABA反应中显示了野生型表型。这些发现提供了明确的证据,表明Mg-螯合酶催化的Mg-ProtoIX的产生不同于ABA信号传导,从而提供了信息来了解两种细胞过程在分子水平上不同的机理。电子补充材料本文的在线版本(doi :10.1007 / s11103-012-9965-3)包含补充材料,授权用户可以使用。

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