首页> 美国卫生研究院文献>Microbes and Environments >Lotus Accessions Possess Multiple Checkpoints Triggered by Different Type III Secretion System Effectors of the Wide-Host-Range Symbiont Bradyrhizobium elkanii USDA61
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Lotus Accessions Possess Multiple Checkpoints Triggered by Different Type III Secretion System Effectors of the Wide-Host-Range Symbiont Bradyrhizobium elkanii USDA61

机译:Lotus Resadings拥有多种检查点由不同类型III分泌系统效应器触发的宽宿主范围Symbiont Bradyrhizobium elkanii USDA61

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摘要

Bradyrhizobium elkanii, a rhizobium with a relatively wide host range, possesses a functional type III secretion system (T3SS) that is involved in symbiotic incompatibility against Rj4-genotype soybean (Glycine max) and some accessions of mung bean (Vigna radiata). To expand our knowledge on the T3SS-mediated partner selection mechanism in the symbiotic legume-rhizobia association, we inoculated three Lotus experimental accessions with wild-type and T3SS-mutant strains of B. elkanii USDA61. Different responses were induced by T3SS in a host genotype-dependent manner. Lotus japonicus Gifu inhibited infection; L. burttii allowed infection, but inhibited nodule maturation at the post-infection stage; and L. burttii and L. japonicus MG-20 both displayed a nodule early senescence-like response. By conducting inoculation tests with mutants of previously reported and newly identified effector protein genes of B. elkanii USDA61, we identified NopF as the effector protein triggering the inhibition of infection, and NopM as the effector protein triggering the nodule early senescence–like response. Consistent with these results, the B. elkanii USDA61 gene for NopF introduced into the Lotus symbiont Mesorhizobium japonicum induced infection inhibition in L. japonicus Gifu, but did not induce any response in L. burttii or L. japonicus MG-20. These results suggest that Lotus accessions possess at least three checkpoints to eliminate unfavorable symbionts, including the post-infection stage, by recognizing different T3SS effector proteins at each checkpoint.
机译:具有相对宽的宿主范围的根瘤菌的Bradyrhizobium Elkanii具有功能性III型分泌系统(T3S),其参与与RJ4-基因型大豆(甘氨酸最大)和Mung Bean(Vigna Radiata)的一些含义的共生不相容性。为了扩展我们对共生豆科植物联合症的T3SS介导的合作伙伴选择机制的了解,我们用野生型和T3S-突变体菌株接种了B. Elkanii USDA61的野生型和T3S-突变菌株。 T3SS以宿主基因型依赖性方式诱导不同的反应。 Lotus Japonicus Gifu抑制感染; L. Burttii允许感染,但抑制在感染后阶段的结节成熟;和L.Burttii和L.japonicus mg-20均显示出结节早期衰老的反应。通过用先前报道的突变体进行接种试验和新鉴定的B.Elkanii USDA61的效应蛋白基因,我们将NoPF鉴定为触发感染抑制的效应蛋白,并且再生的乳头作为效应蛋白引发结节早期衰老的反应。与这些结果一致,B.Elkanii USDA61基因为NOPF引入莲花Symbiont Mesorhizobium japonicum诱导的L.Paponicus Gifu诱导的感染抑制,但在L.Burttii或L.Paponicus Mg-20中没有诱导任何反应。这些结果表明,莲花的申请具有至少三种检查点来消除在每个检查点处的不同T3S效应蛋白来消除包括后感染阶段的不利的共生。

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