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, 属名新拟, 种名新拟, 从叶蝉中分离得到。

, gen. nov., sp. nov., isolated from the leafhopper .

机构信息

Institute of Infection, Veterinary and Ecological Sciences, University of Liverpool, Liverpool, UK.

The National Biofilms Innovation Centre, School of Life Sciences, University of Nottingham Biodiscovery Institute, University of Nottingham, Nottingham, UK.

出版信息

Int J Syst Evol Microbiol. 2022 Jun;72(6). doi: 10.1099/ijsem.0.005440.

Abstract

Bacterial endosymbionts are found in multiple arthropod species, where they play crucial roles as nutritional symbionts, defensive symbionts or reproductive parasites. Recent work has highlighted a new clade of heritable microbes within the gammaproteobacteria that enter into both obligate and facultative symbioses, with an obligately required unculturable symbiont recently given the name Symbiopectobacterium. In this study, we describe a culturable rod shaped non-flagellated bacterial symbiont from this clade isolated from the leafhopper . The symbiont is related to the transovarially transmitted 'BEV' bacterium that was first isolated from the leafhopper by Alexander Purcell, and we therefore name the symbiont sp. nov., gen. nov. We further report the closed genome sequence for . The genome is atypical for a heritable microbe, being large in size, without profound AT bias and with little evidence of pseudogenization. The genome is predicted to encode Type II, III and VI secretion systems and associated effectors and a non-ribosomal peptide synthase array likely to produce bioactive small molecules. The predicted metabolism is more complete than for other symbionts in the clade, and the microbe is predicted to synthesize a range of B vitamins. However, Biolog plate results indicate that the metabolism is depauperate compared to the sister clade, represented by . A quorum-sensing pathway related to that of species (containing an overlapping expI-expR1 pair in opposite directions and a "solo" expR2) is evidenced, and LC-MS/MS analysis reveals the presence of 3-hydroxy-C10-HSL as the sole -acylhomoserine lactone (AHL) in our strain. This AHL profile is profoundly divergent from that of other and species which produce mostly 3-oxo-C6- and 3-oxo-C8-HSL and could aid group identification. Thus, this microbe denotes one that has lost certain pathways associated with a saprophytic lifestyle but represents an important baseline against which to compare other members of the genus that show more profound integration into host biology. The type strain of gen. nov., sp. nov. is SyEd1 (LMG 32449=CECT 30436).

摘要

细菌内共生体存在于多种节肢动物物种中,在这些物种中,它们作为营养共生体、防御共生体或生殖寄生虫发挥着关键作用。最近的研究强调了 gammaproteobacteria 中一个新的可遗传微生物群,它们进入专性和兼性共生关系,最近一种必需的不可培养共生体被命名为 Symbiopectobacterium。在这项研究中,我们描述了从这个谱系中分离出来的一种可培养的杆状无鞭毛细菌共生体,该共生体与 transovarially 传播的“BEV”细菌有关,该细菌最初是由 Alexander Purcell 从叶蝉中分离出来的,因此我们将共生体命名为 sp. nov.,gen. nov.。我们进一步报道了 的封闭基因组序列。该基因组对于可遗传微生物来说是非典型的,其大小较大,没有明显的 AT 偏向,并且伪基因化的证据很少。该基因组预测编码 II 型、III 型和 VI 型分泌系统及其相关效应子和非核糖体肽合成酶阵列,可能产生生物活性小分子。预测的代谢比该谱系中的其他共生体更完整,并且该微生物预测合成一系列 B 族维生素。然而,Biolog 板结果表明,与代表 sister clade 的 相比,代谢是贫瘠的。证据表明存在与 物种相关的群体感应途径(包含方向相反的重叠 expI-expR1 对和“单独”的 expR2),LC-MS/MS 分析显示存在 3-羟基-C10-HSL 作为我们菌株中唯一的 -酰基高丝氨酸内酯 (AHL)。这种 AHL 谱与其他 和 物种产生的谱截然不同,这些物种主要产生 3-氧代-C6-和 3-氧代-C8-HSL,可帮助进行群体鉴定。因此,这种微生物表示已经失去了某些与腐生生活方式相关的途径,但代表了一个重要的基线,可以与表现出更深入宿主生物学整合的属中的其他成员进行比较。属的新种型菌株,sp. nov.是 SyEd1(LMG 32449=CECT 30436)。

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