1Institute of Plant and Microbial Biology, Academia Sinica, Taipei 11529, Taiwan.
2Department of Botany and Plant Pathology, Oregon State University, Corvallis, OR, U.S.A.
Mol Plant Microbe Interact. 2019 Aug;32(8):961-971. doi: 10.1094/MPMI-01-19-0021-R. Epub 2019 Jun 27.
The type VI secretion system (T6SS) is used by gram-negative bacteria to translocate effectors that can antagonize other bacterial cells. Models predict the variation in collections of effector and cognate immunity genes determine competitiveness and can affect the dynamics of populations and communities of bacteria. However, the outcomes of competition cannot be entirely explained by compatibility of effector-immunity (EI) pairs. Here, we characterized the diversity of T6SS loci of plant-pathogenic and showed that factors other than EI pairs can impact interbacterial competition. All examined strains encode T6SS active in secretion and antagonism against . The spectra of EI pairs as well as compositions of gene neighborhoods are diverse. Almost 30 in-planta competitions were tested between different genotypes of . Fifteen competitions between members of different species-level groups resulted in T6SS-dependent suppression in in-planta growth of prey genotypes. In contrast, ten competitions between members within species-level groups resulted in no significant effect on the growth of prey genotypes. One strain was an exceptional case and, despite encoding a functional T6SS and toxic effector protein, could not compromise the growth of the four tested prey genotypes. The data suggest T6SS-associated EI pairs can influence the competitiveness of strains of , but genetic features have a significant role on the efficacy of interbacterial antagonism.
VI 型分泌系统(T6SS)被革兰氏阴性菌用于转运效应物,这些效应物可以拮抗其他细菌细胞。模型预测,效应物和同源免疫基因集合的变异决定了竞争力,并可能影响细菌种群和群落的动态。然而,竞争的结果不能完全用效应物-免疫(EI)对的兼容性来解释。在这里,我们对植物病原性细菌的 T6SS 基因座的多样性进行了表征,并表明除了 EI 对之外,其他因素也会影响细菌之间的竞争。所有被检查的菌株都编码 T6SS,可在分泌和拮抗方面发挥作用。EI 对以及基因邻域的组成的多样性很大。在植物体内,对不同基因型的细菌进行了近 30 次竞争实验。在不同种水平组的成员之间进行了 15 次竞争,结果导致猎物基因型在植物体内生长受到 T6SS 依赖的抑制。相比之下,在种水平组内的成员之间进行的 10 次竞争对猎物基因型的生长没有显著影响。有一种菌株是一个例外,尽管它编码了一个功能齐全的 T6SS 和有毒的效应蛋白,但不能损害四个测试的猎物基因型的生长。数据表明,T6SS 相关的 EI 对可以影响细菌的竞争力,但遗传特征在细菌间拮抗的效果上起着重要作用。