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满腹凝胶?DNA 宏条形码技术显示格陵兰海域多种鱼类捕食胶质浮游动物的证据。

A belly full of jelly? DNA metabarcoding shows evidence for gelatinous zooplankton predation by several fish species in Greenland waters.

作者信息

Dischereit Annkathrin, Throm Julia Katharina, Werner Karl Michael, Neuhaus Stefan, Havermans Charlotte

机构信息

HYIG ARJEL, Benthic Ecology, Alfred Wegener Institute Helmholtz Centre for Polar and Marine Research, Bremerhaven, Germany.

Marine Zoology, BreMarE-Bremen Marine Ecology, Fachbereich 2, Universität Bremen, Bremen 28334, Germany.

出版信息

R Soc Open Sci. 2024 Aug 14;11(8):240797. doi: 10.1098/rsos.240797. eCollection 2024 Aug.

Abstract

The waters of Greenland harbour a high species richness and biomass of gelatinous zooplankton (GZP); however, their role in the diet of the many fish species, including commercially exploited species, has not yet been verified. Traditionally, GZP was considered to be a trophic dead end, i.e. with a limited contribution as prey for higher trophic levels. We applied DNA metabarcoding of two gene fragments (COI, 18S V1-V2) to the stomach contents of seven pelagic and demersal fish species in Greenland waters, to identify their prey composition as well as the occurrence of GZP predation. We detected GZP DNA reads in the stomachs of all investigated fish species, with frequency of occurrences ranging from 12.5% (for ) to 50% (for ). GZP predation had not yet been reported for several of these species. GZP were found to majorly contribute to the diet of and , particularly, the siphonophore and the scyphozoan were of a high importance as prey, respectively. The use of multiple genetic markers enabled us to detect a total of 59 GZP taxa in the fish stomachs with several GZP species being detected only by one of the markers.

摘要

格陵兰岛海域拥有丰富的物种和高生物量的胶质浮游动物(GZP);然而,它们在包括商业开发物种在内的许多鱼类饮食中的作用尚未得到证实。传统上,GZP被认为是营养级的死胡同,即作为较高营养级的猎物贡献有限。我们对格陵兰岛海域七种中上层和底层鱼类的胃内容物进行了两个基因片段(COI、18S V1-V2)的DNA宏条形码分析,以确定它们的猎物组成以及GZP捕食的情况。我们在所有调查的鱼类胃中都检测到了GZP的DNA读数,出现频率从12.5%(对于 )到50%(对于 )不等。其中一些物种尚未有GZP捕食的报道。发现GZP在 和 的饮食中占主要部分,特别是管水母 和钵水母 分别作为重要的猎物。使用多种遗传标记使我们能够在鱼胃中总共检测到59种GZP分类群,其中几种GZP物种仅通过一种标记被检测到。

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