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Phase Variation in Xenorhabdus nematophilus and Photorhabdus luminescens: Differences in Respiratory Activity and Membrane Energization

机译:Xenorhabdus nematophilus和Photorhabdus luminescens的相变:呼吸活动和膜能量的差异。

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Phase variation in Xenorhabdus and Photorhabdus spp. has a significant impact on their symbiotic relationship with entomopathogenic nematodes by altering the metabolic by-products upon which the nematodes feed. The preferential retention of the phase I variant by the infective-stage nematode and its better support for nematode reproduction than phase II indicates its importance in the bacterial-nematode interactions. However, there is no obvious role for phase II in these interactions. This study has revealed differences in the respiratory activity between the two phases of Xenorhabdus nematophilus A24 and Photorhabdus luminescens Hm. After experiencing periods of starvation, phase II cells recommenced growth within 2 to 4 h from the addition of nutrients, compared with 14 h for phase I cells, indicating a more efficient nutrient uptake ability in the former. The levels of activity of major respiratory enzymes were 15 to 100% higher in phase II cells from stationary cultures in complex media than in phase I cells. Transmembrane proton motive force measurements were also higher by 20% in phase II under the same conditions. The increased membrane potentials reflect upon the ability of the phase II variant to respond to nutrients, both through growth and nutrient uptake. It is postulated that while phase I cells are better adapted to conditions in the insect and the nematode, phase II cells may be better adapted to conditions in soil as free-living organisms.
机译:Xenorhabdus和Photorhabdus spp中的相位变化。通过改变线虫赖以为生的代谢副产物,对它们与昆虫致病线虫的共生关系产生重大影响。感染阶段线虫优先保留I期变体,并且比II期更好地支持线虫繁殖,表明其在细菌-线虫相互作用中的重要性。但是,第二阶段在这些交互作用中没有明显的作用。这项研究揭示了Xenorhabdus nematophilus A24和Luminscens Hm两个阶段之间呼吸活动的差异。经历饥饿期后,II期细胞在添加营养后2到4小时内重新开始生长,而I期细胞则在14小时内恢复生长,表明前者具有更有效的营养吸收能力。在复杂培养基中固定培养的II期细胞中,主要呼吸酶的活性水平比I期细胞高15至100%。在相同条件下,第二阶段的跨膜质子动力测量值也提高了20%。膜电位的增加反映了II期变体通过生长和养分吸收对养分作出反应的能力。据推测,虽然I期细胞更适合昆虫和线虫的条件,但II期细胞可能更适合作为自由生物的土壤条件。

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