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内陆发光杆菌一个洄游种群的遗传变异。

Genetic Variation within a Lotic Population of Janthinobacterium lividum.

机构信息

Department of Biology, Cedar Crest College, Allentown, Pennsylvania 18104-6196.

出版信息

Appl Environ Microbiol. 1993 Jul;59(7):2214-9. doi: 10.1128/aem.59.7.2214-2219.1993.

Abstract

An understanding of the genetic variation within and between populations should allow scientists to address many problems, including those associated with endangered species and the release of genetically modified organisms into the environment. With respect to microorganisms, the release of genetically engineered microorganisms is likely to increase dramatically given the current growth in the bioremediation industry. In this study, genetic variation within a lotic, bacterial population of Janthinobacterium lividum was measured with restriction fragment length polymorphism analysis. Chromosomal DNA from 10 Kettle Creek (Hawk Mountain Sanctuary, Kempton, Pa.) J. lividum isolates was digested with six restriction endonucleases and probed with a 7.5-kb pKK3535 fragment containing the E. coli rrnB rRNA operon. Genetic variation, as measured in terms of nucleotide diversity, was high within the population. The 0.0781 value for genetic variation was especially high given the conservative nature of the genetic probe. The average percent similarity among isolates within the population was 67.25%. Pairwise comparisons of nucleotide diversity values (pi) and similarity coefficients (F) yielded values ranging from 0.0032 to 0.1816 and 0.3363 to 0.9808, respectively. Putative clonemates were not present within the group of isolates; however, all isolates shared 14 fragments across a spectrum of six restriction enzymes. The presence of these common fragments indicates that restriction fragment length polymorphism analysis may provide population- or species-specific diagnostic markers for J. lividum. Data that suggest a plume effect with respect to the downstream movement of J. lividum are also presented. An increase in genetic variation within groups of isolates along the longitudinal gradient of Kettle Creek is also suggested.

摘要

理解种群内和种群间的遗传变异,应该能够让科学家解决很多问题,包括那些与濒危物种和向环境中释放转基因生物有关的问题。就微生物而言,鉴于生物修复行业的当前发展,释放经过遗传工程改造的微生物很可能会大幅增加。在这项研究中,采用限制性片段长度多态性分析,对缓流水生环境中詹氏杆菌(Janthinobacterium lividum)的细菌种群内的遗传变异进行了测量。从 10 个 Kettle Creek(Hawk Mountain Sanctuary,Kempton,Pa.)的詹氏杆菌 J. lividum 分离株的染色体 DNA 中,用 6 种限制内切酶进行酶切,并用含有大肠杆菌 rrnB rRNA 操纵子的 7.5-kb pKK3535 片段进行探测。以核苷酸多样性衡量的遗传变异在种群内很高。考虑到遗传探针的保守性质,0.0781 的遗传变异值特别高。种群内分离株之间的平均相似率为 67.25%。核苷酸多样性值(pi)和相似系数(F)的成对比较得出的值范围分别为 0.0032 至 0.1816 和 0.3363 至 0.9808。群体内不存在假定的克隆株;然而,所有分离株在 6 种限制酶的范围内共享 14 个片段。这些共同片段的存在表明,限制性片段长度多态性分析可能为詹氏杆菌提供种群或物种特异性的诊断标记。还提出了关于詹氏杆菌向下游移动的羽流效应的数据。还表明,在 Kettle Creek 的纵向梯度上,分离株群体内的遗传变异增加。

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