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常见土壤中耐蔗糖细菌的流行情况及其分离与鉴定

Prevalence of sucretolerant bacteria in common soils and their isolation and characterization.

作者信息

Fredsgaard Casper, Moore Donald B, Chen Fei, Clark Benton C, Schneegurt Mark A

机构信息

Department of Biological Sciences, Wichita State University, 1845 Fairmount, Wichita, KS, 67260, USA.

Planetary Protection Group, Jet Propulsion Laboratory, NASA, Pasadena, CA, USA.

出版信息

Antonie Van Leeuwenhoek. 2017 Aug;110(8):995-1005. doi: 10.1007/s10482-017-0873-z. Epub 2017 Apr 13.

Abstract

Sucretolerant microbes grow in the presence of sugar concentrations high enough to substantially lower water activities. Natural habitats high in sugars are mainly limited to dried fruit, floral nectar, honey, sugarcane, and associated soils. Organisms that tolerate extremes of solute concentration, high enough to lower water activities, might not be expected in common oligoosmotic soils. We report on the isolation of sucretolerant bacteria from common soils using media supplemented with 50% sucrose (a 0.91) and their physiological characterization and identification by 16S rRNA gene phylogeny. Fifteen of these sucretolerant isolates from common soils were related to four Bacillus spp. A Lysinibacillus and a Microbacterium (actinomycete) also were collected. All grew at 50% sucrose and 13 grew at 60% sucrose. Most probable number counts were used to determine the abundance of sucretolerant microbes in several common soil types, including agricultural, managed turf, and native prairie. Microbial abundance (with fungicides) was about 10 and 10 cells g soil in media containing 50 or 70% sucrose, respectively. The abundances of sucretolerant bacteria in common soils mirror those of halotolerant bacteria that grow at 10 and 20% NaCl. However, there is not a correlation between halotolerance and sucretolerance in our isolates, nor can predictions be made based on taxonomy. Specific solute effects may be at work, rather than biological responses to a single physicochemical parameter such as a . The occurrence of spore-forming sucretolerant bacteria in common soils has relevance to forward planetary protection and astrobiology. Extraterrestrial habitable regions are defined in part by tolerance to high solute concentrations and osmotolerant soil microbes may contaminate spacecraft.

摘要

耐糖微生物能在糖浓度高到足以显著降低水活性的环境中生长。富含糖分的自然栖息地主要限于干果、花蜜、蜂蜜、甘蔗及相关土壤。在常见的低渗土壤中,预计不会存在能耐受极端溶质浓度(高到足以降低水活性)的生物。我们报告了从普通土壤中分离耐糖细菌的情况,所用培养基添加了50%蔗糖(水活性为0.91),并对其进行了生理特性分析以及通过16S rRNA基因系统发育进行鉴定。从普通土壤中分离出的这15株耐糖菌株与4个芽孢杆菌属物种相关。还分离出了1株赖氨酸芽孢杆菌和1株微杆菌(放线菌)。所有菌株都能在50%蔗糖浓度下生长,13株能在60%蔗糖浓度下生长。采用最大可能数计数法来确定几种常见土壤类型(包括农业土壤、人工管理草皮和原生草原土壤)中耐糖微生物的丰度。在含有50%或70%蔗糖的培养基中,(使用杀真菌剂时)微生物丰度分别约为每克土壤10⁴和10³个细胞。普通土壤中耐糖细菌的丰度与在10%和20%氯化钠环境中生长的耐盐细菌的丰度相似。然而,在我们分离出 的菌株中,耐盐性和耐糖性之间没有相关性,也无法根据分类学进行预测。可能是特定的溶质效应在起作用,而不是对诸如水活性这样单一物理化学参数的生物学反应。普通土壤中形成芽孢的耐糖细菌的存在与未来的行星保护和天体生物学相关。地外宜居区域部分是由对高溶质浓度的耐受性定义的,耐渗透土壤微生物可能会污染航天器。

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