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Pseudomonas fluorescens NZI7 repels grazing by C. elegans a natural predator

机译:荧光假单胞菌NZI7排斥天然捕食者秀丽隐杆线虫的放牧

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摘要

The bacteriovorous nematode Caenorhabditis elegans has been used to investigate many aspects of animal biology, including interactions with pathogenic bacteria. However, studies examining C. elegans interactions with bacteria isolated from environments in which it is found naturally are relatively scarce. C. elegans is frequently associated with cultivation of the edible mushroom Agaricus bisporus, and has been reported to increase the severity of bacterial blotch of mushrooms, a disease caused by bacteria from the Pseudomonas fluorescens complex. We observed that pseudomonads isolated from mushroom farms showed differential resistance to nematode predation. Under nutrient poor conditions, in which most pseudomonads were consumed, the mushroom pathogenic isolate P. fluorescens NZI7 was able to repel C. elegans without causing nematode death. A draft genome sequence of NZI7 showed it to be related to the biocontrol strain P. protegens Pf-5. To identify the genetic basis of nematode repellence in NZI7, we developed a grid-based screen for mutants that lacked the ability to repel C. elegans. The mutants isolated in this screen included strains with insertions in the global regulator GacS and in a previously undescribed GacS-regulated gene cluster, ‘EDB' (‘edible'). Our results suggest that the product of the EDB cluster is a poorly diffusible or cell-associated factor that acts together with other features of NZI7 to provide a novel mechanism to deter nematode grazing. As nematodes interact with NZI7 colonies before being repelled, the EDB factor may enable NZI7 to come into contact with and be disseminated by C. elegans without being subject to intensive predation.
机译:细菌性线虫秀丽隐杆线虫已被用于研究动物生物学的许多方面,包括与致病细菌的相互作用。但是,研究秀丽隐杆线虫与从自然环境中分离出的细菌相互作用的研究相对较少。秀丽隐杆线虫通常与可食用蘑菇双孢蘑菇的栽培有关,并且据报道会增加蘑菇的细菌斑点的严重性,这是由荧光假单胞菌复合物引起的疾病。我们观察到从蘑菇场分离出的假单胞菌对线虫的捕食表现出不同的抗性。在营养不良的条件下,大多数假单胞菌被消耗掉了,蘑菇病原菌荧光假单胞菌NZI7能够击退线虫,而不会引起线虫死亡。 NZI7的基因组序列草图表明它与生物控制菌株P. protegens Pf-5相关。为了确定NZI7中线虫驱避作用的遗传基础,我们开发了基于网格的筛选器来筛选缺乏排斥线虫能力的突变体。在此筛选中分离出的突变体包括在全局调控子GacS和先前未描述的GacS调控基因簇“ EDB”(可食用)中插入的菌株。我们的结果表明,EDB簇的产物是扩散性很差或与细胞相关的因子,与NZI7的其他特征共同发挥作用,从而提供了一种新颖的机制来阻止线虫放牧。由于线虫在被驱除之前会与NZI7菌落相互作用,因此EDB因子可以使NZI7与秀丽隐杆线虫接触并被其传播,而无需进行强烈捕食。

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