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从阿拉斯加古尔卡纳冰川不同海拔的超等环境中分离寡营养酵母。

Isolation of oligotrophic yeasts from supraglacial environments of different altitude on the Gulkana Glacier (Alaska).

机构信息

Transdisciplinary Research Integration Center, Tokyo, Japan.

出版信息

FEMS Microbiol Ecol. 2012 Nov;82(2):279-86. doi: 10.1111/j.1574-6941.2012.01323.x. Epub 2012 Mar 19.

Abstract

Psychrophilic yeasts have been isolated from supra- and subglacial ice at many sites worldwide. To understand the ecology of psychrophilic yeasts on glaciers, we focused on their adaptation to wide range of nutrient concentrations and their distribution with altitude on the Gulkana Glacier in Alaska. We found various culturable psychrophilic yeasts on the ice surfaces of the glacier, and 11 species were isolated with incubation at 4 °C in four different dilutions of agar medium. Some of our isolated species (Rhodotorula psychrophenolica, Rhodotorula aff. psychrophenolica, Rhodotorula glacialis, and Basidiomycota sp. 1) can grow on the low dissolved organic matter (DOC) concentrations medium (7.6 mg L(-1)) which is close to the typical level of supraglacial melt water, suggesting that these species can inhabit in any supraglacial meltwater. Otherwise, most of other species were isolated only from higher DOC concentration medium (183 mg L(-1) -18.3 g L(-1)), suggesting that these are inhabitant around the cryoconite, because DOC concentrations in melted surface-ice contained cryoconite is much higher than in melted water. Similarity of altitudinal distribution between culturable yeast and algal biomass suggests that the ecological role played by the cold-adapted yeasts is as organic matter decomposers and nutrient cyclers in glacier ecosystem.

摘要

已从世界各地的冰上和冰下的冰川冰中分离出嗜冷酵母。为了了解嗜冷酵母在冰川上的生态,我们专注于它们对广泛的营养浓度的适应能力,以及它们在阿拉斯加的古尔卡纳冰川上的海拔分布。我们在冰川的冰面上发现了各种可培养的嗜冷酵母,并在 4°C 的四个不同琼脂培养基稀释度下培养,分离出了 11 个种。我们分离的一些种(嗜冷红酵母、嗜冷红酵母近缘种、冰川红酵母和 Basidiomycota sp.1)可以在低溶解有机物质(DOC)浓度的培养基(7.6 mg L(-1))中生长,该浓度接近典型的冰上融水水平,表明这些种可以栖息在任何冰上融水中。另一方面,大多数其他种只能从高 DOC 浓度培养基(183 mg L(-1) -18.3 g L(-1))中分离出来,这表明它们栖息在冰核周围,因为含有冰核的融化表面冰中的 DOC 浓度远高于融水中的浓度。可培养酵母和藻类生物量之间的海拔分布相似性表明,适应寒冷的酵母在冰川生态系统中作为有机物质分解者和养分循环者发挥着生态作用。

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