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首页> 外文期刊>Journal of Microbiological Methods >Induction of spontaneous phenotype conversion in Ralstonia solanacearum by addition of iron compounds in liquid medium
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Induction of spontaneous phenotype conversion in Ralstonia solanacearum by addition of iron compounds in liquid medium

机译:通过加入液体介质中的铁化合物诱导罗尔斯顿菌氏菌的自发性表型转化

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摘要

Ralstonia solanacearum is a soil-borne pathogen that causes bacterial wilt in plants. The wild-type strain of R. solanacearum undergoes spontaneous phenotype conversion (PC), from a fluidal to non-fluidal colony morphology. PC mutants are non-pathogenic due to reduced virulence factors, and can control wilt diseases as biological control agents. The induction factors of PC in R. solanacearum are currently unclear. Here, we investigated the effect of iron treatment on bacterial growth of wild-type strain and PC mutant, and PC of the wild-type strain in liquid medium. Interestingly, PC was frequently induced in the single cultured wild-type strain by iron treatment; however, PC was not induced in the co-culture. In a co-culture of both strains, the PC mutant showed increased growth compared to the wild-type strain by iron treatment. Furthermore, we investigated the effects of iron treatment on the bacterial growth and PC of the wild-type strain under different culture conditions of medium type (MM broth, BG broth, and water medium), iron compounds, and pH. In BG broth, PC occurred frequently regardless of iron treatment. In MM broth, the optimal conditions for high frequency induction of PC by iron treatments were treatment of iron (III) EDTA, and under pH 7-8. Conversely, PC was not induced by iron treatment in water medium and in MM broth under pH 5 conditions. Common to the culture conditions wherein PC was not induced by iron treatment, the bacterial density of the wild-type strain was as low as 10(6) CFU mL(-1) or less. Finally, we investigated the effects on bacterial growth and PC of the wild type strain by the iron treatment and addition of culture filtrate after cultivation of the wild-type strain at high concentration. In medium containing only the culture filtrate, PC did not occur. However, in medium containing the culture filtrate and iron, PC occurred frequently. Our results thus suggest that high-density growth of the wild-type strain as well as the presence of iron are involved in inducing PC in R. solanacearum.
机译:青枯菌是一种土传病原体,可引起植物青枯病。青枯菌野生型菌株经历了自发表型转化(PC),从流性菌落形态转化为非流性菌落形态。由于毒力因子降低,PC突变体无致病性,可以作为生物防治剂控制枯萎病。目前尚不清楚青枯病菌中PC的诱导因子。在这里,我们研究了铁处理对野生型菌株和PC突变体的细菌生长的影响,以及野生型菌株在液体培养基中的PC。有趣的是,在单一培养的野生型菌株中,铁处理经常诱导PC;然而,在共培养中没有诱导PC。在两个菌株的共培养中,与铁处理的野生型菌株相比,PC突变体的生长速度加快。此外,我们还研究了在不同培养基类型(MM肉汤、BG肉汤和水培养基)、铁化合物和pH值的培养条件下,铁处理对野生型菌株的细菌生长和PC的影响。在BG肉汤中,无论铁处理如何,PC都频繁发生。在MM肉汤中,铁处理高频诱导PC的最佳条件为铁(III)EDTA处理,pH值为7-8。相反,在pH为5的条件下,铁在水介质和MM肉汤中处理不会诱导PC。与未通过铁处理诱导PC的培养条件相同,野生型菌株的细菌密度低至10(6)CFU mL(-1)或更低。最后,我们研究了高浓度培养野生型菌株后,通过铁处理和添加培养滤液对其细菌生长和PC的影响。在只含有培养滤液的培养基中,PC不会发生。然而,在含有培养滤液和铁的培养基中,PC经常发生。因此,我们的结果表明,野生型菌株的高密度生长以及铁的存在参与了青枯菌中PC的诱导。

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