Chien Ching-Fang, Liu Cheng-Ying, Lu Yew-Yee, Sung You-Hsing, Chen Kuo-Yau, Lin Nai-Chun
Department of Agricultural Chemistry, National Taiwan University, Taipei, Taiwan.
Front Microbiol. 2020 Jun 3;11:1118. doi: 10.3389/fmicb.2020.01118. eCollection 2020.
The type VI secretion system (T6SS) is a widespread bacterial nanoweapon used for delivery of toxic proteins into cell targets and contributes to virulence, anti-inflammatory processes, and interbacterial competition. In the model phytopathogenic bacterium pv. tomato () DC3000, two T6SS gene clusters, HSI-I and HSI-II, were identified, but their functions remain unclear. We previously reported that , located in HSI-II, is involved in competition with enterobacteria and yeast. Here, we demonstrated that interbacterial competition of DC3000 against several Gram-negative plant-associated bacteria requires mainly HSI-II activity. By means of a systematic approach using in-frame deletion mutants for each gene in the HSI-II cluster, we identified genes indispensable for Hcp2 expression, Hcp2 secretion and interbacterial competition ability. Deletion of PSPTO_5413 only affected growth in interbacterial competition assays but not Hcp2 secretion, which suggests that PSPTO_5413 might be a putative effector. Moreover, PSPTO_5424, encoding a putative σ-dependent transcriptional regulator, positively regulated the expression of all three operons in HSI-II. Our discovery that the HSI-II gene cluster gives DC3000 the ability to compete with other plant-associated bacteria could help in understanding a possible mechanism of how phytopathogenic bacteria maintain their ecological niches.
VI型分泌系统(T6SS)是一种广泛存在的细菌纳米武器,用于将毒性蛋白传递到细胞靶标中,并在致病、抗炎过程和细菌间竞争中发挥作用。在模式植物病原菌番茄致病变种()DC3000中,鉴定出了两个T6SS基因簇,即HSI-I和HSI-II,但它们的功能仍不清楚。我们之前报道过,位于HSI-II中的参与了与肠杆菌和酵母的竞争。在此,我们证明了DC3000与几种革兰氏阴性植物相关细菌的细菌间竞争主要需要HSI-II的活性。通过对HSI-II簇中的每个基因使用框内缺失突变体的系统方法,我们鉴定出了对于Hcp2表达、Hcp2分泌和细菌间竞争能力不可或缺的基因。PSPTO_5413的缺失仅影响细菌间竞争试验中的生长,但不影响Hcp2分泌,这表明PSPTO_5413可能是一个假定的效应蛋白。此外,编码假定的σ依赖性转录调节因子的PSPTO_5424正向调节HSI-II中所有三个操纵子的表达。我们发现HSI-II基因簇赋予DC3000与其他植物相关细菌竞争的能力,这有助于理解植物病原菌维持其生态位的可能机制。