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首页> 外文期刊>Molecular Plant-Microbe Interactions >Mutation of rpiA in Enterobacter cloacae Decreases Seed and Root Colonization and Biocontrol of Damping-Off Caused by Pythium ultimum on Cucumber
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Mutation of rpiA in Enterobacter cloacae Decreases Seed and Root Colonization and Biocontrol of Damping-Off Caused by Pythium ultimum on Cucumber

机译:阴沟肠杆菌中rpiA的突变减少了黄瓜的终生腐霉引起的种子和根定殖并抑制了生物防治

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Strains of Enterobacter cloacae show promise as biocontrol agents for Pythium ultimum -induced damping-off on cucumber and other crops. E. cloacae A145 is a mini-Tn5 Km transposon mutant of strain 501R3 that was significantly reduced in suppression of damping-off on cucumber caused by P. ultimum . Strain A145 was deficient in colonization of cucumber, sunflower, and wheat seeds and significantly reduced in colonization of corn and cowpea seeds relative to strain 501R3. Populations of strain A145 were also significantly lower than those of strain 501R3 at all sampling times in cucumber, wheat, and sunflower rhizosphere. Populations of strain A145 were not detectable in any rhizosphere after 42 days, while populations of strain 501R3 remained at substantial levels throughout all experiments. Molecular characterization of strain A145 indicated mini-Tn 5 Km was inserted in a region of the E. cloacae genome with a high degree of DNA and amino acid sequence similarity to rpiA , which encodes ribose-5-phosphate isomerase. In Escherichia coli , RpiA catalyzes the interconversion of ribose-5-phosphate and ribulose-5-phosphate and is a key enzyme in the pentose phosphate pathway. Ribose-5-phosphate isomerase activity in cell lysates from strain A145 was approximately 3.5% of that from strain 501R3. In addition, strain A145 was a ribose auxotroph, as expected for an rpiA mutant. Introduction of a 1.0-kb DNA fragment containing only the rpiA homologue into strain A145 restored ribose phosphate isomerase activity, prototrophy, seedling colonization, and disease suppression to levels similar to those associated with strain 501R3. Experiments reported here indicate a key role for rpiA and possibly the pentose phosphate pathway in suppression of damping-off and colonization of subterranean portions of plants by E. cloacae .
机译:阴沟肠杆菌菌株有望作为终生腐霉菌诱导的黄瓜和其他农作物减毒的生物防治剂。阴沟肠杆菌A145是菌株501R3的微型-Tn5Km转座子突变体,其在抑制由终极疟原虫引起的黄瓜的阻尼上被显着降低。与菌株501R3相比,菌株A145在黄瓜,向日葵和小麦种子上的定植能力不足,而在玉米和cow豆种子上的定植则明显减少。在所有采样时间,黄瓜,小麦和向日葵根际中,A145菌株的种群也显着低于501R3菌株。 42天后,在任何根际都无法检测到A145菌株,而在所有实验中501R3菌株的含量均保持在较高水平。菌株A145的分子表征表明,将mini-Tn 5 Km插入到阴沟肠杆菌基因组区域,该区域与rpiA具有高度的DNA和氨基酸序列相似性,rpiA编码核糖-5-磷酸异构酶。在大肠杆菌中,RpiA催化5磷酸核糖和5磷酸核糖的相互转化,是戊糖磷酸途径中的关键酶。来自菌株A145的细胞裂解物中的5-磷酸核糖异构酶活性约为来自菌株501R3的核糖-5-磷酸异构酶活性。另外,如对于rpiA突变体所预期的,菌株A145是核糖营养缺陷型。将仅包含rpiA同源物的1.0-kb DNA片段引入菌株A145中,可恢复核糖磷酸异构酶活性,原营养,幼苗定植和抑制疾病,使其水平与菌株501R3相关。此处报道的实验表明,rpiA以及可能的戊糖磷酸途径在抑制阴沟肠杆菌对植物地下部分的抑制和定居中起关键作用。

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