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首页> 外文期刊>FEMS Microbiology Ecology >The metabolic shift in highly and weakly virulent Dickeya solani strains is more affected by temperature than by mutations in genes encoding global virulence regulators
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The metabolic shift in highly and weakly virulent Dickeya solani strains is more affected by temperature than by mutations in genes encoding global virulence regulators

机译:高度弱毒性的DICKEYA Solani菌株的代谢变化比编码全球毒力调节剂的基因突变更大

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摘要

Global warming may shortly increase the risk of disease development on plants. Significant differences in the metabolic activity screened with Phenotype Microarray at 22?C and 28?C were observed between D. solani strains with high and low virulence level. Highly virulent D. solani was characterized by a higher number of metabolized compounds and a faster metabolism and was more tolerant to non-favorable pH and osmolarity. Metabolic phenotyping showed for the first time that the mutation in pecT gene, which encodes a global repressor of virulence, affects several pathways of the basic cell metabolism. PecT mutants had a higher maceration capacity of potato tissue and showed a higher pectinolytic activity than the wild-type strains. On the contrary, mutation in expI gene, which encoded the signaling molecules synthase crucial for quorum sensing, had an insignificant effect on the cell metabolism, although it slightly reduced the potato tissue maceration. The ability to utilize most of the tested compounds was higher at 28?C, while the survival at non-favorable pH and osmolarity was higher at 22?C. These results proved that the temperature of incubation had the most significant impact on the D. solani metabolic profiles.
机译:全球变暖可能很快可能增加植物疾病发展风险。在具有高低和低毒力水平的D.Solani菌株之间观察到在22℃和28℃下筛选的代谢活性筛选的代谢活性的显着差异。高毒性的D.Solani的特征在于较高数量的代谢化合物和更快的代谢,并且更耐受非有利的pH和渗透压。代谢表型首次显示了编码毒力的全球阻遏物的Pect基因的突变影响了基本细胞代谢的几种途径。 PECT突变体具有较高的马铃薯组织的丙匹配能力,并且表现出比野生型菌株更高的果胶溶液活性。相反,expi基因的突变,其编码了对频压感测至关重要的信号传导分子,对细胞代谢产生了微不足道的影响,尽管它略微降低了马铃薯组织浸渍。利用大部分测试化合物的能力在28℃下较高,而非有利pH和渗透性的存活率在22℃下较高。这些结果证明了孵育温度对D.Solani代谢谱的影响最大。

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  • 来源
    《FEMS Microbiology Ecology》 |2020年第3期|共13页
  • 作者单位

    Department of Plant Protection and Biotechnology Intercollegiate Faculty of Biotechnology University of Gdansk and Medical University of Gdansk Abrahama 58 80-307 Gdansk Poland;

    Department of Agriculture Food Environment and Forestry (DAGRI) University of Florence Via della Lastruccia 10 - 50019 Sesto Fiorentino Italy;

    Department of Plant Protection and Biotechnology Intercollegiate Faculty of Biotechnology University of Gdansk and Medical University of Gdansk Abrahama 58 80-307 Gdansk Poland;

    Department of Agriculture Food Environment and Forestry (DAGRI) University of Florence Via della Lastruccia 10 - 50019 Sesto Fiorentino Italy;

    Department of Biology University of Florence Via Madonna del Piano 6 50019 Sesto Fiorentino Italy and;

    Microbiologie Adaptation et Pathogénie Univ Lyon CNRS UMR5240 Univ Claude Bernard Lyon 1 INSA de Lyon F-69622 Villeurbanne France;

    Department of Plant Protection and Biotechnology Intercollegiate Faculty of Biotechnology University of Gdansk and Medical University of Gdansk Abrahama 58 80-307 Gdansk Poland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 微生物学;
  • 关键词

    Phenotype MicroarrayTM; pecT; expI; quorum sensing;

    机译:表型微阵列;pect;expi;Quorum感应;

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