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首页> 外文期刊>Plant and Soil >GunA of Sinorhizobium (Ensifer) fredii HH103 is a T3SS-secreted cellulase that differentially affects symbiosis with cowpea and soybean
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GunA of Sinorhizobium (Ensifer) fredii HH103 is a T3SS-secreted cellulase that differentially affects symbiosis with cowpea and soybean

机译:Sinorhizobium(Ensifer)Fredii HH103的Guna是一种T3SS-分泌的纤维素酶,差异地影响豇豆和大豆的共生

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AimsThe symbiosis between Sinorhizobium fredii HH103 and its host legumes is influenced by the type 3 secretion system (T3SS), which delivers proteins (effectors) directly into the host cells to promote infection. GunA, one of the predicted HH103 effectors, potentially codes for a cellulase. In this work we tried to characterise GunA and elucidate its role in symbosis with soybean and cowpea.MethodsA GunA::HA fusion protein was constructed to study T3SS-dependent secretion. Cellulase activity of GunA was measured and gunA::uidA-GFP and gunA::cyA fusions were constructed to monitor gunA expression in nodules and to study translocation to the host cells, respectively. Finally, the symbiotic performance of a gunA mutant was studied in soybean and cowpea.ResultsGunA from S. fredii HH103 shows cellulase activity and is secreted through the T3SS in response to the inducer flavonoid genistein. Interestingly, at the beggining of the symbiotic process, GunA was partially responsible for the induction of the expression of the soybean GmPR1 gene, a gene used as a marker for plant defense responses. However, GunA was also detected in soybean and cowpea developed nodules. Finally, nodulation assays indicate that GunA is beneficial for symbiosis with soybean but detrimental with cowpea.ConclusionSecretion of GunA through the S. fredii HH103 T3SS clearly and differentially impacts the symbiotic performance of this strain with soybean and cowpea. GunA, or its cellulase activity, is recognised by soybean root cells very early in the symbiotic process but, curiously, its secretion can also be detected in mature nodules. This suggests different symbiotic roles at different symbiotic stages that need to be further elucidated.
机译:Sinorhizobium Fredii HH103及其主腿部之间的AIMBIES受到3型分泌系统(T3SS)的影响,其将蛋白质(效应器)直接递送到宿主细胞中以促进感染。 Guna是预测的HH103效应器之一,可能是纤维素酶的代码。在这项工作中,我们试图表征Gara,并用大豆和豇豆阐明其在Symbosis中的作用。方法是构建研究T3SS依赖性分泌的HA融合蛋白。测量枪菌的纤维素酶活性,并对Guna :: UIDA-GFP和Guna :: CyA融合分别监测结节中的疙瘩表达并分别研究蒸发宿主细胞。最后,在大豆和豇豆中研究了Guna突变体的共生性能。来自S.Fredii HH103的牛皮菌,显示纤维素酶活性,并响应于诱导物黄酮核苷酸的T3S分泌。有趣的是,在共生过程中的开始时,Guna部分负责诱导大豆GMPR1基因的表达,该基因用作植物防御反应的标志物。然而,在大豆和豇豆发育结节中也检测到Guna。最后,染色测定表明,Guna对大豆和豇豆有害的豆类有益。通过S.Fredii HH103 T3ss清楚地影响Guna的Concrationscretion,用大豆和豇豆对这种菌株的共生性能进行差异。 Guna或其纤维素酶活性,在共生过程中非常早期识别大豆根细胞,但是,奇迹,其分​​泌也可以在成熟结节中检测。这表明需要进一步阐明的不同共生阶段的不同共生作用。

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