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褐虾(Crangon crangon)中肠腺的转录组分析表明消化酶具有高度多态性。

Transcriptome analysis of the midgut gland of the brown shrimp Crangon crangon indicates high polymorphism in digestive enzymes.

作者信息

Martínez-Alarcón Diana, Harms Lars, Hagen Wilhelm, Saborowski Reinhard

机构信息

Bremen Marine Ecology (BreMarE), Marine Zoology, University of Bremen, P.O. Box 330440, 28334 Bremen, Germany; Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research (AWI), P.O. Box 120161, 27570 Bremerhaven, Germany.

Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research (AWI), P.O. Box 120161, 27570 Bremerhaven, Germany.

出版信息

Mar Genomics. 2019 Feb;43:1-8. doi: 10.1016/j.margen.2018.09.006. Epub 2018 Oct 5.

Abstract

Tolerance of organisms towards heterogeneous and variable environments is highly related to physiological flexibility. An effective strategy to enhance physiological flexibility is the expression of polymorphic enzymes. This seems to be the case in the brown shrimp Crangon crangon. It shows high reproduction rates, feeds opportunistically on endo- and epibenthic organisms, and is apparently well adapted to variable environmental conditions. Previous electrophoretic studies revealed a high level of polymorphism and no consistent phenotype of digestive enzymes between individuals. In order to understand the underlying biochemical processes, we carried out a transcriptome-based study of digestive enzymes of C. crangon. Detailed sequence analyses of triacylglycerol lipase, phospholipase A, alpha amylase, chitinase, trypsin and cathepsin L were performed to identify putative isoforms. The number of isoforms, and thus the degree of polymorphism varied among enzymes: lipases and carbohydrases showed higher numbers of isoforms in enzymes that besides their extracellular function also have diverse intracellular functions. Furthermore, cysteine proteinases showed a lower polymorphism than serine proteinases. We suggest that the expression of enzyme isoforms improves the efficiency of C. crangon in gaining energy from different food sources.

摘要

生物体对异质和多变环境的耐受性与生理灵活性高度相关。增强生理灵活性的一种有效策略是多态酶的表达。褐虾似乎就是这种情况。它具有高繁殖率,以底内和底栖生物为食,显然能很好地适应多变的环境条件。先前的电泳研究表明其多态性水平很高,且个体之间消化酶的表型不一致。为了了解潜在的生化过程,我们对褐虾的消化酶进行了基于转录组的研究。对三酰甘油脂肪酶、磷脂酶A、α淀粉酶、几丁质酶、胰蛋白酶和组织蛋白酶L进行了详细的序列分析,以鉴定推定的同工型。同工型的数量以及多态性程度在不同酶之间有所不同:脂肪酶和碳水化合物酶在除具有细胞外功能还具有多种细胞内功能的酶中显示出更高数量的同工型。此外,半胱氨酸蛋白酶的多态性低于丝氨酸蛋白酶。我们认为酶同工型的表达提高了褐虾从不同食物来源获取能量的效率。

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