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海洋硅藻生物活性氧化脂类对无脊椎动物生殖和发育的影响。

The influence of bioactive oxylipins from marine diatoms on invertebrate reproduction and development.

机构信息

School of Marine Science and Technology, Newcastle University, Ridley Building, Claremont Road, Newcastle upon Tyne, NE1 7RU, England, UK.

出版信息

Mar Drugs. 2009 Aug 21;7(3):367-400. doi: 10.3390/md7030367.

Abstract

Diatoms are one of the main primary producers in aquatic ecosystems and occupy a vital link in the transfer of photosynthetically-fixed carbon through aquatic food webs. Diatoms produce an array of biologically-active metabolites, many of which have been attributed as a form of chemical defence and may offer potential as candidate marine drugs. Of considerable interest are molecules belonging to the oxylipin family which are broadly disruptive to reproductive and developmental processes. The range of reproductive impacts includes; oocyte maturation; sperm motility; fertilization; embryogenesis and larval competence. Much of the observed bioactivity may be ascribed to disruption of intracellular calcium signalling, induction of cytoskeletal instability and promotion of apoptotic pathways. From an ecological perspective, the primary interest in diatom-oxylipins is in relation to the potential impact on energy flow in planktonic systems whereby the reproductive success of copepods (the main grazers of diatoms) is compromised. Much data exists providing evidence for and against diatom reproductive effects; however detailed knowledge of the physiological and molecular processes involved remains poor. This paper provides a review of the current state of knowledge of the mechanistic impacts of diatom-oxylipins on marine invertebrate reproduction and development.

摘要

硅藻是水生生态系统中主要的初级生产者之一,在水生食物网中光合作用固定碳的传递中占据着至关重要的环节。硅藻产生一系列具有生物活性的代谢产物,其中许多被认为是一种化学防御形式,可能具有作为候选海洋药物的潜力。相当引人注目的是属于氧化脂类家族的分子,它们广泛干扰生殖和发育过程。生殖影响的范围包括卵母细胞成熟、精子活力、受精、胚胎发生和幼虫能力。观察到的大部分生物活性可能归因于细胞内钙信号的破坏、细胞骨架不稳定性的诱导和凋亡途径的促进。从生态的角度来看,硅藻氧化脂类的主要关注点是它们对浮游系统能量流动的潜在影响,因为桡足类(硅藻的主要捕食者)的生殖成功受到了影响。有大量的数据提供了支持和反对硅藻生殖效应的证据;然而,涉及的生理和分子过程的详细知识仍然很差。本文综述了硅藻氧化脂类对海洋无脊椎动物生殖和发育的机制影响的现有知识状况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e80c/2763107/8b61ffc880d2/marinedrugs-07-00367f1.jpg

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