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Impact of feeding by Arenicola marina (L.) and ageing of faecal material on fatty acid distribution and bacterial community structure in marine sediments: An experimental approach

机译:滨海槟榔的摄食和粪便的老化对海洋沉积物中脂肪酸分布和细菌群落结构的影响:一种实验方法

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摘要

The fate of ingested eukaryotic photoautotrophic fatty acids during gut transit in the lugwormArenicolamarina (L.) and the influence of A. marina's faeces on the evolution of fatty acid distribution and bacterial community structure in superficial sediments were studied under laboratory conditions. Dead phytoplanktonic cells (food portions) were fed to individual A. marina and subsequently incubated, or allowed to directly incubate in the presence of fresh egesta or non-ingested sediment. Changes in fatty acid composition and genetic structure of bacterial communities during gut transit and/or incubation were monitored using gas-chromatography/mass-spectrometry and a DNA fingerprint approach (RISA), respectively. Results, supported by principal component analyses, suggest that A. marina's feeding activity can directly and indirectly affect the lipid biomarker composition and the bacterial community structure of inhabited sediments. Faecal casts produced fromfood portions appeared qualitatively enriched in saturated fatty acids relative to (poly)unsaturated ones due, partly, to an increase of some bacterial fatty acids and to the preferential removal of some polyunsaturated fatty acids (PUFAs). The incubation of food portions in the presence of fresh A. marina's egesta (designed to study the indirect impact of feeding by A. marina) induced a significant increase in the concentrations of C20 and C22 polyunsaturated fatty acids (PUFAs), whereas these compounds almost disappeared following direct feeding and subsequent incubation, indicating that some dietary fatty acidsmay be more accessible to biodegradation following passage through the gut of A. marina. The aforementioned increase in PUFAs was attributed to a bacterial production during incubation, suggesting the presence of PUFA-producing bacteria in the fresh egesta of A. marina. Those bacteria were either enteric bacteria thatwere releasedwith the egesta or ingested bacteria that have survived gut passage, as suggested by the variations of the bacterial community structure (i.e. RISA profiles) during incubation. The results suggest that aged faeces from A. marina might be, in some circumstances, of relatively high nutritional value to trophic levels which are unable to synthesize essential PUFAs de novo. The presence of PUFA-producing bacteria in guts of marine lugworms deserves further attention.
机译:在实验室条件下,研究了夜蛾Arenicolamarina(L.)肠道运输过程中摄入的真核生物自养脂肪酸的命运以及滨海曲霉粪便对脂肪酸分布和细菌群落结构演变的影响。将死的浮游植物细胞(食物部分)喂入单个滨海曲霉,随后进行培养,或在存在新鲜egesta或未消化的沉积物的情况下直接进行培养。分别使用气相色谱/质谱和DNA指纹法(RISA)监测肠道转运和/或孵育期间细菌群落的脂肪酸组成和遗传结构的变化。结果得到主要成分分析的支持,表明滨海曲霉的摄食活性可以直接和间接影响居住区沉积物的脂质生物标志物组成和细菌群落结构。与(多)不饱和脂肪酸相比,从食物部分生产的粪便铸模在质量上富含饱和脂肪酸,部分原因是某些细菌脂肪酸的增加和某些多不饱和脂肪酸(PUFA)的优先去除。在新鲜的A. marina's egesta(旨在研究A. marina进食的间接影响)存在的情况下孵育食物部分会导致C20和C22多不饱和脂肪酸(PUFAs)浓度显着增加,而这些化合物几乎直接进食和随后的温育后它们消失了,表明某些膳食脂肪酸在通过滨海曲霉的肠道后可能更易于生物降解。 PUFA的上述增加归因于温育期间细菌的产生,这表明在滨海曲霉的新鲜egesta中存在产生PUFA的细菌。孵育过程中细菌群落结构的变化(即RISA谱)表明,这些细菌要么是与egesta一起释放的肠内细菌,要么是消化道中存活下来的消化细菌。结果表明,在某些情况下,来自滨海曲霉的老粪便可能具有较高的营养价值,达到营养水平,无法重新合成必需的PUFA。海洋lu虫胆中存在产生PUFA的细菌值得进一步关注。

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