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Culturable Populations of Sporomusa spp. and Desulfovibrio spp. in the Anoxic Bulk Soil of Flooded Rice Microcosms

机译:孢子虫的可培养种群。和脱硫弧菌属。淹没的水稻微观缺氧土壤中的迁移

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摘要

Most-probable-number (MPN) counts were made of homoacetogenic and other bacteria present in the anoxic flooded bulk soil of laboratory microcosms containing 90- to 95-day-old rice plants. MPN counts with substrates known to be useful for the selective enrichment or the cultivation of homoacetogenic bacteria (betaine, ethylene glycol, 2,3-butanediol, and 3,4,5-trimethoxybenzoate) gave counts of 2.3 × 103 to 2.8 × 105 cells per g of dry soil. Homoacetogens isolated from the terminal positive steps of these dilution cultures belonged to the genus Sporomusa. Counts with succinate, ethanol, and lactate gave much higher MPNs of 5.9 × 105 to 3.4 × 107 cells per g of dry soil and led to the isolation of Desulfovibrio spp. Counting experiments on lactate and ethanol which included Methanospirillum hungatei in the medium gave MPNs of 2.3 × 106 to 7.5 × 108 cells per g of dry soil and led to the isolation of Sporomusa spp. The latter strains could grow with betaine, ethylene glycol, 2,3-butanediol, and/or 3,4,5-trimethoxybenzoate, but apparently most cells of Sporomusa spp. did not initiate growth in counting experiments with those substrates. Spores apparently accounted for 2.2% or less of the culturable bacteria. It appears that culturable Desulfovibrio spp. and Sporomusa spp. were present in approximately equal numbers in the bulk soil. Multiple, phylogenetically-distinct, phenotypically-different, strains of each genus were found in the same soil system.
机译:最可能数(MPN)计数是由存在90到95天大的水稻植株的实验室微观世界中缺氧淹没的散装土壤中存在的均乙酸和其他细菌组成的。使用已知可用于选择性富集或培养同产乙酸细菌(甜菜碱,乙二醇,2,3-丁二醇和3,4,5-三甲氧基苯甲酸酯)的底物进行的MPN计数为2.3×10 3 / sup>到每g干燥土壤2.8×10 5 个细胞。从这些稀释培养物的末端阳性步骤中分离出的同型乙酸原属于孢子虫属。每克干燥土壤中琥珀酸,乙醇和乳酸的计数可得到更高的MPN,为5.9×10 5 至3.4×10 7 细胞,并导致分离出Desulfovibrio spp 。对乳酸菌和乙醇进行计数实验(每培养基中含有饥饿的甲基甲烷螺旋菌)可使每克干燥土壤中的MPN分别为2.3×10 6 至7.5×10 8 细胞,并导致分离孢子虫属。后一菌株可以与甜菜碱,乙二醇,2,3-丁二醇和/或3,4,5-三甲氧基苯甲酸酯一起生长,但显然大多数孢子囊菌细胞。在使用这些底物进行计数实验时并未启动生长。显然,孢子占可培养细菌的2.2%或更少。似乎可培养的脱硫弧菌。和孢子藻属。存在于散装土壤中的数量大致相等。在同一土壤系统中发现了每个属的多个系统发育不同,表型不同的菌株。

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