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首页> 外文期刊>The ISME journal emultidisciplinary journal of microbial ecology >Macrofauna regulate heterotrophic bacterial carbon and nitrogen incorporation in low-oxygen sediments
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Macrofauna regulate heterotrophic bacterial carbon and nitrogen incorporation in low-oxygen sediments

机译:大型动物调节低氧沉积物中异养细菌碳和氮的掺入

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Oxygen minimum zones(OMZs) currently impinge upon >1 million km ~2 of sea floor and are predicted to expand with climate change.We investigated how changes in oxygen availability, macrofaunal biomass and retention of labile organic matter(OM) regulate heterotrophic bacterial C and N incorporation in the sediments of the OMZ-impacted Indian continental margin(540-1100 m;O 2 0.35-15 μmol l 1).In situ pulse-chase experiments traced 13 C: 15 N-labelled phytodetritus into bulk sediment OM and hydrolysable amino acids, including the bacterial biomarker D-alanine.Where oxygen availability was lowest(O 2 0.35 μmol l 1), metazoan macrofauna were absent and bacteria assimilated 30-90% of the labelled phytodetritus within the sediment.At higher oxygen levels(O 2 2-15 μmol l 1) the macrofaunal presence and lower phytodetritus retention with the sediment occur concomitantly, and bacterial phytodetrital incorporation was reduced and retarded.Bacterial C and N incorporation exhibited a significant negative relationship with macrofaunal biomass across the OMZ.We hypothesise that fauna-bacterial interactions significantly influence OM recycling in low-oxygen sediments and need to be considered when assessing the consequences of global change on biogeochemical cycles.
机译:最小氧气区(OMZs)目前会撞击超过100万公里〜2的海底,并预计会随着气候变化而扩大。我们调查了氧气供应量,大型真菌生物量和不稳定有机物(OM)的保留如何调节异养细菌C和氮掺入OMZ影响的印度大陆边缘(540-1100 m; O 2 0.35-15μmoll 1)。原位脉冲追踪实验追踪了13 C:15 N标记的植物碎屑进入大块沉积物OM和包括细菌生物标记D-丙氨酸在内的可水解氨基酸,其中氧的利用率最低(O 2 0.35μmoll 1),后生动物缺乏动物,细菌吸收了沉积物中标记植物性碎屑的30-90%。 O 2 2-15μmoll 1)同时发生大型动物粪便和植物碎屑在沉积物中的滞留,细菌植物碎屑的掺入减少并受阻。我们假设动物-细菌相互作用显着影响低氧沉积物中的OM循环,因此在评估全球变化对生物地球化学循环的后果时应考虑到。

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