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海藻糖基低聚糖作为新型相容性溶质在费氏新萨托菌(费氏曲霉)及其他真菌子囊孢子中的功能与普遍性

Functionality and prevalence of trehalose-based oligosaccharides as novel compatible solutes in ascospores of Neosartorya fischeri (Aspergillus fischeri) and other fungi.

作者信息

Wyatt Timon T, van Leeuwen M Richard, Golovina Elena A, Hoekstra Folkert A, Kuenstner Eric J, Palumbo Edward A, Snyder Nicole L, Visagie Cobus, Verkennis Alex, Hallsworth John E, Wösten Han A B, Dijksterhuis Jan

机构信息

CBS-KNAW Fungal Biodiversity Centre, Uppsalalaan 8, Utrecht, 3584CT, The Netherlands.

出版信息

Environ Microbiol. 2015 Feb;17(2):395-411. doi: 10.1111/1462-2920.12558. Epub 2014 Oct 22.

Abstract

Ascospores of Neosartorya, Byssochlamys and Talaromyces can be regarded as the most stress-resistant eukaryotic cells. They can survive exposure at temperatures as high as 85°C for 100 min or more. Neosartorya fischeri ascospores are more viscous and more resistant to the combined stress of heat and desiccation than the ascospores of Talaromyces macrosporus which contain predominantly trehalose. These ascospores contain trehalose-based oligosaccharides (TOS) that are novel compatible solutes, which are accumulated to high levels. These compounds are also found in other members of the genus Neosartorya and in some other genera within the order Eurotiales that also include Byssochlamys and Talaromyces. The presence of oligosaccharides was observed in species that had a relatively high growth temperature. TOS glasses have a higher glass transition temperature (Tg ) than trehalose, and they form a stable glass with crystallizing molecules, such as mannitol. Our data indicate that TOS are important for prolonged stabilization of cells against stress. The possible unique role of these solutes in protection against dry heat conditions is discussed.

摘要

新萨托菌属、丝衣霉属和篮状菌属的子囊孢子可被视为最具抗逆性的真核细胞。它们能在高达85°C的温度下暴露100分钟或更长时间后存活。费氏新萨托菌的子囊孢子比主要含有海藻糖的大孢篮状菌的子囊孢子更黏稠,对热和干燥的复合胁迫更具抗性。这些子囊孢子含有基于海藻糖的寡糖(TOS),它们是新型相容性溶质,并积累到很高的水平。在新萨托菌属的其他成员以及散囊菌目内的一些其他属(其中也包括丝衣霉属和篮状菌属)中也发现了这些化合物。在生长温度相对较高的物种中观察到了寡糖的存在。TOS玻璃态具有比海藻糖更高的玻璃化转变温度(Tg),并且它们与结晶分子(如甘露醇)形成稳定的玻璃态。我们的数据表明,TOS对于细胞长期抵御胁迫的稳定性很重要。本文讨论了这些溶质在抵御干热条件方面可能具有的独特作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c26b/4371660/8adbb0212991/emi0017-0395-f1.jpg

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