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大型植物分解对奥基夫诺基沼泽细菌浮游生物生长速度和群落结构的影响。

Influence of macrophyte decomposition on growth rate and community structure of okefenokee swamp bacterioplankton.

机构信息

Institute of Ecology and Department of Microbiology, University of Georgia, Athens, Georgia 30602.

出版信息

Appl Environ Microbiol. 1986 Feb;51(2):293-301. doi: 10.1128/aem.51.2.293-301.1986.

Abstract

Dissolved substances released during decomposition of the white water lily (Nymphaea odorata) can alter the growth rate of Okefenokee Swamp bacterioplankton. In microcosm experiments dissolved compounds released from senescent Nymphaea leaves caused a transient reduction in the abundance and activity of water column bacterioplankton, followed by a period of intense bacterial growth. Rates of [H]thymidine incorporation and turnover of dissolved d-glucose were depressed by over 85%, 3 h after the addition of Nymphaea leachates to microcosms containing Okefenokee Swamp water. Bacterial activity subsequently recovered; after 20 h [H]thymidine incorporation in leachate-treated microcosms was 10-fold greater than that in control microcosms. The recovery of activity was due to a shift in the composition of the bacterial population toward resistance to the inhibitory compounds present in Nymphaea leachates. Inhibitory compounds released during the decomposition of aquatic macrophytes thus act as selective agents which alter the community structure of the bacterial population with respect to leachate resistance. Soluble compounds derived from macrophyte decomposition influence the rate of bacterial secondary production and the availability of microbial biomass to microconsumers.

摘要

在白睡莲(Nymphaea odorata)分解过程中释放的溶解物质会改变奥克弗诺基沼泽细菌浮游生物的生长速度。在微宇宙实验中,衰老的睡莲叶片释放的溶解化合物会导致水柱细菌浮游生物的丰度和活性暂时降低,随后是一段强烈的细菌生长时期。在向含有奥克弗诺基沼泽水的微宇宙中添加睡莲浸出液 3 小时后,[H]胸腺嘧啶掺入率和溶解 d-葡萄糖的周转率下降超过 85%。细菌活性随后恢复;在浸出液处理的微宇宙中,[H]胸腺嘧啶掺入率在 20 小时后比对照微宇宙高 10 倍。活性的恢复是由于细菌种群的组成发生了变化,对睡莲浸出液中存在的抑制化合物具有抗性。因此,水生植物分解过程中释放的抑制化合物充当选择剂,改变了细菌种群的群落结构,使其对浸出液具有抗性。来自大型植物分解的可溶性化合物会影响细菌次生生产力的速度和微生物生物量对微型消费者的可利用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d4d/238862/6f73d58662cc/aem00137-0086-a.jpg

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