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Biodiversity of a Burkholderia cepacia population isolated from the maize rhizosphere at different plant growth stages.

机译:从玉米根际分离到不同植物生长阶段的洋葱伯克霍尔德菌洋葱种群的生物多样性。

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摘要

A Burkholderia cepacia population naturally occurring in the rhizosphere of Zea mays was investigated in order to assess the degree of root association and microbial biodiversity at five stages of plant growth. The bacterial strains isolated on semiselective PCAT medium were mostly assigned to the species B. cepacia by an analysis of the restriction patterns produced by amplified DNA coding for 16S rRNA (16S rDNA) (ARDRA) with the enzyme AluI. Partial 16S rDNA nucleotide sequences of some randomly chosen isolates confirmed the ARDRA results. Throughout the study, B. cepacia was strictly associated with maize roots, ranging from 0.6 to 3.6% of the total cultivable microflora. Biodiversity among 83 B. cepacia isolates was analyzed by the random amplified polymorphic DNA (RAPD) technique with two 10-mer primers. An analysis of RAPD patterns by the analysis of molecular variance method revealed a high level of intraspecific genetic diversity in this B. cepacia population. Moreover, the genetic diversity was related to divergences among maize root samplings, with microbial genetic variability markedly higher in the first stages of plant growth; in other words, the biodiversity of this rhizosphere bacterial population decreased over time.
机译:为了评估植物生长五个阶段的根缔合程度和微生物多样性,调查了在玉米根际中天然存在的洋葱伯克霍尔德菌种群。通过分析用酶AluI编码16S rRNA(16S rDNA)(ARDRA)的扩增DNA产生的限制性酶切图谱,将在半选择性PCAT培养基上分离出的细菌菌株大多归类为洋葱伯克霍尔德菌。一些随机选择的分离物的部分16S rDNA核苷酸序列证实了ARDRA结果。在整个研究过程中,洋葱头孢杆菌与玉米根严格相关,占可培养菌群总数的0.6%至3.6%。通过随机扩增多态性DNA(RAPD)技术和两个10-mer引物分析了83株洋葱伯克霍尔德菌分离株之间的生物多样性。通过分子变异分析方法对RAPD模式进行的分析显示,此洋葱酒双歧杆菌种群中种内遗传多样性较高。此外,遗传多样性与玉米根样品之间的差异有关,在植物生长的第一阶段,微生物的遗传变异性显着较高。换句话说,根际细菌种群的生物多样性随着时间的推移而下降。

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