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松科中缺乏完整K片段的新型脱水素。这是个例外而非普遍规律。

Novel dehydrins lacking complete K-segments in Pinaceae. The exception rather than the rule.

作者信息

Perdiguero Pedro, Collada Carmen, Soto Alvaro

机构信息

GENFOR Grupo de Investigación en Genética y Fisiología Forestal, Universidad Politécnica de Madrid Madrid, Spain ; Unidad Mixta de Genómica y Ecofisiología Forestal INIA/UPM, Madrid, Spain.

出版信息

Front Plant Sci. 2014 Dec 2;5:682. doi: 10.3389/fpls.2014.00682. eCollection 2014.

Abstract

Dehydrins are thought to play an essential role in the plant response, acclimation and tolerance to different abiotic stresses, such as cold and drought. These proteins contain conserved and repeated segments in their amino acid sequence, used for their classification. Thus, dehydrins from angiosperms present different repetitions of the segments Y, S, and K, while gymnosperm dehydrins show A, E, S, and K segments. The only fragment present in all the dehydrins described to date is the K-segment. Different works suggest the K-segment is involved in key protective functions during dehydration stress, mainly stabilizing membranes. In this work, we describe for the first time two Pinus pinaster proteins with truncated K-segments and a third one completely lacking K-segments, but whose sequence homology leads us to consider them still as dehydrins. qRT-PCR expression analysis show a significant induction of these dehydrins during a severe and prolonged drought stress. By in silico analysis we confirmed the presence of these dehydrins in other Pinaceae species, breaking the convention regarding the compulsory presence of K-segments in these proteins. The way of action of these unusual dehydrins remains unrevealed.

摘要

脱水素被认为在植物对不同非生物胁迫(如寒冷和干旱)的响应、适应和耐受过程中发挥着重要作用。这些蛋白质在其氨基酸序列中含有保守且重复的片段,用于它们的分类。因此,被子植物的脱水素呈现出Y、S和K片段的不同重复形式,而裸子植物的脱水素则显示出A、E、S和K片段。迄今为止所描述的所有脱水素中唯一存在的片段是K片段。不同的研究表明,K片段在脱水胁迫期间参与关键的保护功能,主要是稳定膜结构。在这项工作中,我们首次描述了两种具有截短K片段的海岸松蛋白以及第三种完全缺乏K片段的蛋白,但它们的序列同源性使我们仍将它们视为脱水素。qRT-PCR表达分析表明,在严重且持久的干旱胁迫期间,这些脱水素会显著诱导表达。通过计算机分析,我们证实了这些脱水素在其他松科物种中的存在,打破了这些蛋白质中必须存在K片段的常规。这些不寻常的脱水素的作用方式仍未揭示。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5232/4251312/4ab42914257c/fpls-05-00682-g0001.jpg

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