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Characterization and Identification of Numerically Abundant Culturable Bacteria from the Anoxic Bulk Soil of Rice Paddy Microcosms

机译:稻田缩微缺氧土壤中数量丰富的可培养细菌的鉴定与鉴定

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摘要

Most-probable-number (liquid serial dilution culture) counts were obtained for polysaccharolytic and saccharolytic fermenting bacteria in the anoxic bulk soil of flooded microcosms containing rice plants. The highest viable counts (up to 2.5 × 108 cells per g [dry weight] of soil) were obtained by using xylan, pectin, or a mixture of seven mono- and disaccharides as the growth substrate. The total cell count for the soil, as determined by using 4′,6-diamidino-2-phenylindole staining, was 4.8 × 108 cells per g (dry weight) of soil. The nine strains isolated from the terminal positive tubes in counting experiments which yielded culturable populations that were equivalent to about 5% or more of the total microscopic count population belonged to the division Verrucomicrobia, the Cytophaga-Flavobacterium-Bacteroides division, clostridial cluster XIVa, clostridial cluster IX, Bacillus spp., and the class Actinobacteria. Isolates originating from the terminal positive tubes of liquid dilution series can be expected to be representatives of species whose populations in the soil are large. None of the isolates had 16S rRNA gene sequences identical to 16S rRNA gene sequences of previously described species for which data are available. Eight of the nine strains isolated fermented sugars to acetate and propionate (and some also fermented sugars to succinate). The closest relatives of these strains (except for the two strains of actinobacteria) were as-yet-uncultivated bacteria detected in the same soil sample by cloning PCR-amplified 16S rRNA genes (U. Hengstmann, K.-J. Chin, P. H. Janssen, and W. Liesack, Appl. Environ. Microbiol. 65:5050–5058, 1999). Twelve other isolates, which originated from most-probable-number counting series indicating that the culturable populations were smaller, were less closely related to cloned 16S rRNA genes.
机译:获得了含水稻植株淹没的微观世界中缺氧大块土壤中的多糖酵解和糖酵解发酵细菌的最大概率数(液体连续稀释培养)计数。通过使用木聚糖,果胶或七种单糖和二糖的混合物作为生长底物,获得了最高的活菌数(每克[干重]土壤最多2.5×10 8 细胞)。通过4',6-二mid基-2-苯基吲哚染色确定的土壤总细胞数为每g(干重)土壤4.8×10 8 个细胞。在计数实验中从末端阳性试管中分离出的9个菌株产生的可培养种群相当于总显微计数种群的5%或以上,属于Verrucomicrobia分区,Cytophaga-Flavobacterium-Bacteroides分区,梭菌簇XIVa,梭菌第九类,芽孢杆菌属,和放线菌属。来自液体稀释系列末端正极的分离株有望代表土壤中种群众多的物种。没有分离物具有与可获得数据的前述物种的16S rRNA基因序列相同的16S rRNA基因序列。九个菌株中的八个将发酵糖分离为乙酸盐和丙酸酯(还有一些发酵糖分离为琥珀酸)。通过克隆PCR扩增的16S rRNA基因(U. Hengstmann,K.-J. Chin,PH Janssen),在同一土壤样品中检测到这些菌株的最亲戚(除了两个放线菌菌株)。 W.Liesack,Appl.Environ.Microbiol.65:5050-5058,1999)。其他十二个分离株起源于最可能的计数序列,表明可培养的种群较小,与克隆的16S rRNA基因的亲缘关系较小。

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