...
首页> 外文期刊>Plant physiology >The Compromised Recognition of Turnip Crinkle Virus1 Subfamily of Microrchidia ATPases Regulates Disease Resistance in Barley to Biotrophic and Necrotrophic Pathogens1[C][W][OPEN]
【24h】

The Compromised Recognition of Turnip Crinkle Virus1 Subfamily of Microrchidia ATPases Regulates Disease Resistance in Barley to Biotrophic and Necrotrophic Pathogens1[C][W][OPEN]

机译:芜菁皱纹病毒1亚家族的微赤霉病ATPase的受损识别调节大麦对生物营养和坏死性病原体的抗病性1 [C] [W] [OPEN]

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

MORC1 and MORC2, two of the seven members of the Arabidopsis (Arabidopsis thaliana) Compromised Recognition of Turnip Crinkle Virus1 subfamily of microrchidia Gyrase, Heat Shock Protein90, Histidine Kinase, MutL (GHKL) ATPases, were previously shown to be required in multiple layers of plant immunity. Here, we show that the barley (Hordeum vulgare) MORCs also are involved in disease resistance. Genome-wide analyses identified five MORCs that are 37% to 48% identical on the protein level to AtMORC1. Unexpectedly, and in clear contrast to Arabidopsis, RNA interference-mediated knockdown of MORC in barley resulted in enhanced basal resistance and effector-triggered, powdery mildew resistance locus A12-mediated resistance against the biotrophic powdery mildew fungus (Blumeria graminis f. sp. hordei), while MORC overexpression decreased resistance. Moreover, barley knockdown mutants also showed higher resistance to Fusarium graminearum. Barley MORCs, like their Arabidopsis homologs, contain the highly conserved GHKL ATPase and S5 domains, which identify them as members of the MORC superfamily. Like AtMORC1, barley MORC1 (HvMORC1) binds DNA and has Mn2+-dependent endonuclease activities, suggesting that the contrasting function of MORC1 homologs in barley versus Arabidopsis is not due to differences in their enzyme activities. In contrast to AtMORCs, which are involved in silencing of transposons that are largely restricted to pericentromeric regions, barley MORC mutants did not show a loss-of-transposon silencing regardless of their genomic location.Reciprocal overexpressionofMORC1homologs inbarleyandArabidopsis showedthatAtMORC1andHvMORC1 couldnot restore each other’s function. Together, these results suggest thatMORC proteins function as modulators of immunity, which can act negatively (barley) or positively (Arabidopsis) dependent on the species.
机译:MORC1和MORC2,拟南芥(Arabidopsis thaliana)的七个成员中的两个,对小裂球菌回旋酶,热激蛋白90,组氨酸激酶,MutL(GHKL)ATPases的芜菁皱纹病毒1亚科的识别能力以前被证明需要多层植物免疫力。在这里,我们表明大麦(大麦)MORCs也参与抗病性。全基因组分析确定了5种MORC,它们在蛋白质水平上与AtMORC1相同,为37%至48%。出乎意料的是,与拟南芥形成鲜明对比的是,大麦中MORC的RNA干扰介导的敲低导致增强的基础抗性和效应触发的白粉病抗性基因座A12介导的对生物营养白粉病真菌的抗性(Blumeria graminis f。sp。hordei ),而MORC过表达会降低耐药性。此外,大麦击倒突变体还显示出对禾谷镰刀菌的更高抗性。大麦MORC像其拟南芥同系物一样,包含高度保守的GHKL ATPase和S5结构域,这些结构域将它们识别为MORC超家族成员。像AtMORC1一样,大麦MORC1(HvMORC1)结合DNA并具有Mn2 +依赖的核酸内切酶活性,这表明大麦与拟南芥中MORC1同源物的对比功能并不是由于其酶活性的差异。与AtMORCs参与的转座子(主要局限于着丝粒区域)的沉默有关,大麦MORC突变体无论其基因组位置如何都不会表现出转座子沉默。总之,这些结果表明,MORC蛋白起着免疫调节剂的作用,依赖于该物种,该蛋白可以发挥消极作用(大麦)或发挥积极作用(拟南芥)。

著录项

相似文献

  • 外文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号