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分层和混合水细菌浮游生物种群的基质掺入模式。

Substrate incorporation patterns of bacterioplankton populations in stratified and mixed waters of a humic lake.

机构信息

Max Planck Institute for Marine Microbiology, Bremen, Germany.

出版信息

Environ Microbiol. 2009 Jul;11(7):1854-65. doi: 10.1111/j.1462-2920.2009.01910.x. Epub 2009 Mar 23.

DOI:10.1111/j.1462-2920.2009.01910.x
PMID:19320716
Abstract

Bacterial incorporation of glucose, leucine, acetate and 4-hydroxybenzoic acid (HBA) was investigated in an artificially divided humic lake (Grosse Fuchskuhle, Germany). Two basins with contrasting influx of allochthonous organic carbon were sampled during late summer stratification (oxic and anoxic layers) and after autumn mixing. High total and cell-specific incorporation rates were observed for glucose and HBA in stratified and mixed waters respectively, but only a small fraction of bacteria visibly incorporated HBA. The oxic layer of the more humic-rich basin featured a significantly lower fraction of glucose incorporating cells and substantially higher proportions of acetate assimilating bacteria. Niche differentiation was observed in two betaproteobacterial populations: cells affiliated with the Polynucleobacter C subcluster efficiently incorporated acetate but little glucose, whereas the opposite was found for members of the R-BT065 clade. By contrast, leucine incorporation was variable in both taxa. Considering the high concentrations and rapid photochemical generation of organic acids in humic waters our results may help to explain the success of the Polynucleobacter C lineage in such habitats. Specific substrate or habitat preferences were also present in three subgroups of the actinobacterial acI lineage: The numerically dominant clade in oxic waters (acI-840-1) was absent in the anoxic zone and did not incorporate acetate. A second group (acI-840-2) was found both in the epi- and hypolimnion, whereas the third one (acI-840-3) only occurred in anoxic waters. Altogether our results suggest a constitutive preference for some substrates versus an adaptive utilization of others in the studied microbial groups.

摘要

我们研究了人工划分的腐殖质湖中(德国大富斯卡湖)葡萄糖、亮氨酸、乙酸和 4-羟基苯甲酸(HBA)的细菌摄取情况。在夏末分层(好氧层和缺氧层)和秋季混合后,对两个具有不同异源有机碳流入的流域进行了采样。在分层和混合水中,葡萄糖和 HBA 的总细胞特异性摄取率均较高,但只有一小部分细菌可见地摄取 HBA。富营养化程度较高的流域的好氧层中,摄取葡萄糖的细胞比例明显较低,而同化乙酸的细菌比例则高得多。在两个β变形菌种群中观察到生态位分化:与 Polynucleobacter C 亚群相关的细胞有效地摄取乙酸,但很少摄取葡萄糖,而 R-BT065 菌群的情况则相反。相比之下,亮氨酸的摄取在两个分类群中均具有变异性。考虑到腐殖质水中有机酸的高浓度和快速光化学生成,我们的结果可能有助于解释 Polynucleobacter C 谱系在这种生境中的成功。在放线菌 acI 谱系的三个亚群中也存在特定的底物或栖息地偏好:在好氧水中占优势的 clade(acI-840-1)不存在于缺氧区,也不摄取乙酸。第二个 clade(acI-840-2)存在于上、下湖水中,而第三个 clade(acI-840-3)仅存在于缺氧水中。总的来说,我们的结果表明,在所研究的微生物群体中,某些底物具有组成型偏好,而其他底物则具有适应性利用。

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