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Selection of low-temperature resistance in bacteria and potential applications

机译:细菌中耐低温性的选择及其潜在应用

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Microbial consortia may harbour an array of resistance mechanisms that facilitate survival under harsh conditions, including antifreeze and ice-nucleation proteins. Antifreeze proteins lower freezing points as well as inhibit the growth of large, potentially damaging ice crystals from small ice embryos. In contrast, ice-nucleation proteins prevent supercooling and allow ice formation at high, sub-zero temperatures. Psychrophiles and psychrotolerant microbes are typically sought in extremely cold environments. However, given that geography is unlikely to present an insurmountable barrier to microbial dispersal, we reasoned that species with low-temperature adaptations should also be present, although rare, in more temperate environments. In consequence, the challenge then becomes one of selecting for rare microbes present in a larger community. Following the introductory commentary, we demonstrate that both freeze-thaw survival and ice-affinity selection can be used to identify microbes, which demonstrate low-temperature resistance, from enrichments derived from temperate environments. Selection resulted in a drastic decrease in cell abundance and diversity, allowing the isolation of a subset of resistant microbes. Depending on the origin of the consortia, these resistant microbes demonstrated cross-tolerance to osmotic stress, or a high proportion of antifreeze and/or ice-nucleation protein activities. Both types of ice-associating proteins presumably facilitate microbial survival at low temperatures. These proteins, as well as molecules that maintain osmotic balance, are also of commercial interest, with applications in the food, energy and medical industries. In addition, the resistant phenotypes described here provide a glimpse into the breadth of strategies microbes use to survive and thrive at low temperatures.
机译:微生物联盟可能包含一系列抵抗机制,这些机制有助于在恶劣条件下生存,包括抗冻剂和冰核蛋白。抗冻蛋白可降低冰点并抑制小冰胚产生的大的,潜在破坏性的冰晶的生长。相反,冰核蛋白可防止过冷并允许在零以下高温下形成冰。通常在极冷的环境中寻找嗜冷菌和抗精神病微生物。但是,考虑到地理条件不可能为微生物扩散提供不可逾越的障碍,因此我们认为在更温带的环境中也应存在具有低温适应性的物种,尽管很少见。结果,挑战就变成了选择存在于更大社区中的稀有微生物之一。在介绍性评论之后,我们证明了冻融存活和冰亲和力选择均可用于鉴定来自温带环境的富集微生物,这些微生物表现出耐低温性。选择导致细胞丰度和多样性的急剧下降,从而可以分离出一部分耐药微生物。取决于联合体的起源,这些抗性微生物表现出对渗透压的交叉耐受性,或高比例的抗冻和/或冰核蛋白活性。两种类型的冰缔合蛋白大概都有助于微生物在低温下生存。这些蛋白质以及维持渗透平衡的分子,也具有商业意义,可用于食品,能源和医疗行业。另外,此处描述的抗性表型让人们一窥微生物在低温下生存和繁衍的策略范围。

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