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Erwinia chrysanthemi at high osmolarity: influence of osmoprotectants on growth and pectate lyase production

机译:Erwinia Chrysanthemi在高渗透压:Osmoplotectants对生长和枸杞酶生产的影响

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The mechanism of osmotic stress adaptation was investigated in the phytopathogen Erwinia chrysanthemi. Growth of the bacterium was inhibited by elevated medium osmolarity, and exogenous glycine betaine, proline, ectoine or pipecolate permitted recovery of growth at inhibitory osmolarity. Osmoprotectants were taken up by transporters induced by elevated osmolarity, and their level of accumulation within the cell was dependent on the osmolarity of the growth medium. The influence of osmolarity and osmoprotectants on the production of pectate lyases (PLs) was investigated. Increased medium osmolarity resulted first in an induction of PL activity, followed by a shift to the basal level at higher osmolyte concentrations. This induction was reversed by osmoprotectants in the medium. The increased PL activity was attributed in part to the induced transcription of the main PL gene, pelE, and all the osmoprotectants that were analysed were found to prevent pelE induction. PL activity was partially inhibited in vitro by high ionic strength but not by elevated concentrations of sugars, and the addition of osmoprotectants at 1 mM had no effect on PL activity in vitro.
机译:在植物病理学Erwinia Chrysanthemi中研究了渗透胁迫适应的机制。通过升高的培养基渗透压抑制细菌的生长,以及外源甘氨酸甜菜碱,脯氨酸,胞外或吡啶醇允许在抑制性渗透性中恢复生长。通过升高的渗透压诱导的转运蛋白溶液溶液,其在细胞内的积累水平取决于生长培养基的渗透压。研究了渗透压和Osmoplotectants对果胶裂解酶(PLS)产生的影响。在PL活性的诱导中首先导致培养基渗透压增加,然后在较高的渗透浓度下转移到基础水平。该诱导通过培养基中的OsMoplotectant逆转。增加的PL活性部分归因于主PL基因,骨质,骨盆和分析的所有渗透剂的诱导转录归因于预防骨质诱导。通过高离子强度的体外部分抑制PL活性,但不通过升高糖浓度的糖,并且在体外加入OsMoplotectants对Pl活性没有影响。

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