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Ribosomal protein QM/RPL10 positively regulates defence and protein translation mechanisms during nonhost disease resistance

机译:核糖体蛋白质qm / rpl10在非强硬抗病期间呈正调节防御和蛋白翻译机制

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摘要

Ribosomes play an integral part in plant growth, development, and defence responses. We report here the role of ribosomal protein large (RPL) subunit QM/RPL10 in nonhost disease resistance. The RPL10‐silenced Nicotiana benthamiana plants showed compromised disease resistance against nonhost pathogen Pseudomonas syringae pv. tomato T1. The RNA‐sequencing analysis revealed that many genes involved in defence and protein translation mechanisms were differentially affected due to silencing of NbRPL10. Arabidopsis AtRPL10 RNAi and rpl10 mutant lines showed compromised nonhost disease resistance to P. syringae pv. tomato T1 and P. syringae pv. tabaci. Overexpression of AtRPL10A in Arabidopsis resulted in reduced susceptibility against host pathogen P. syringae pv. tomato DC3000. RPL10 interacts with the RNA recognition motif protein and ribosomal proteins RPL30, RPL23, and RPS30 in the yeast two‐hybrid assay. Silencing or mutants of genes encoding these RPL10‐interacting proteins in N. benthamiana or Arabidopsis, respectively, also showed compromised disease resistance to nonhost pathogens. These results suggest that QM/RPL10 positively regulates the defence and translation‐associated genes during nonhost pathogen infection.
机译:核糖体在植物生长,发展和国防反应中发挥不良部分。我们在此报告核糖体蛋白大(RPL)亚单位QM / RPL10在非健康疾病性中的作用。 RPL10沉默的尼古罗尼亚·宾夕法尼亚州植物植物显示出抗病性抗病患者抗性抗病症抗性PSSeudomonas Syringae PV。番茄t1。 RNA测序分析显示,由于NBRP110的沉默,许多参与防御和蛋白翻译机制的基因差异影响。 Arabidopsis ATRPL10 RNAi和RPL10突变线显示出损害的非健康疾病抗性P.Syringae PV。番茄T1和p. inringae pv。 Tabaci。 Arabidopsis中ATRPL10A的过度表达导致对宿主病原体P.Syringae PV的敏感性降低。番茄DC3000。 RPL10与RNA识别基序蛋白质和核糖体蛋白RPL30,RPL23和RPS30相互作用,在酵母双杂交测定中。分别编码这些RPL10相互作用蛋白的基因的沉默或突变体分别在N.Nenthamiana或拟南芥中,也表现出对非HATHOST病原体的损伤性抗病性。这些结果表明,QM / RPL10在非质子病原体感染期间积极调节防御和翻译相关基因。

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