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Biological Control of the Phytoparasitic Nematode Mesocriconema xenoplax on Peach Trees

机译:桃树上植物寄生线虫间皮线虫异种的生物防治

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摘要

Seven fluorescent Pseudomonas spp. capable of inhibiting reproduction of Mesocriconema xenoplax have been isolated from soil sites that suppress both nematode multiplication and Peach Tree Short Life (PTSL). One of these seven strains, Pseudomonas sp. BG33R, inhibits M. xenoplax multiplication in vivo and egg hatch in vitro. Mesocriconema xenoplax populations on peach seedlings inoculated with BG33R and planted into soil-solarized field plots remained at or below the economic threshold for nematicide treatment in South Carolina for nearly 18 months. Soil solarization alone induced a shift toward a microbial community that was suppressive to nematode multiplication. Additionally, five Tn5 mutants of BG33R, lacking the ability to kill eggs, have been generated. The Tn5 insertion site in each mutant has been cloned and sequenced. DNA sequence analysis has revealed a high degree of homology to several genes of interest because of their potential involvement in the production of the egg-kill factor. These Tn5 egg-kill negative mutants also no longer produce protease or salicylic acid while producing nearly twice the amount of fluorescent siderophore as the wild type parent.
机译:七个荧光假单胞菌属。已经从抑制线虫繁殖和桃树短寿(PTSL)的土壤位点中分离出了具有抑制美隐锥虫繁殖能力的植物。这七个菌株之一,假单胞菌属。 BG33R在体内和体外卵孵化均能抑制异种疟原虫繁殖。在南卡罗来纳州,用BG33R接种并种植在土壤隔离的田地中的桃幼苗上的中隐孢子虫种群一直保持在或低于杀线虫剂处理的经济阈值,将近18个月。仅土壤日晒作用就导致向抑制线虫繁殖的微生物群落转变。另外,已经产生了五个BG33R的Tn5突变体,它们缺乏杀死卵的能力。每个克隆中的Tn5插入位点已被克隆并测序。 DNA序列分析显示与某些感兴趣的基因高度同源,因为它们可能参与了卵杀伤因子的产生。这些Tn5杀死卵的阴性突变体也不再产生蛋白酶或水杨酸,而产生的荧光铁载体的数量几乎是野生型亲本的两倍。

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