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Microbial Community Response during the Iron Fertilization Experiment LOHAFEX

机译:铁肥试验过程中微生物群落的响应

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Iron fertilization experiments in high-nutrient, low-chlorophyll areas are known to induce phytoplankton blooms. However, little is known about the response of the microbial community upon iron fertilization. As part of the LOHAFEX experiment in the southern Atlantic Ocean, Bacteria and Archaea were monitored within and outside an induced bloom, dominated by Phaeocystis -like nanoplankton, during the 38 days of the experiment. The microbial production increased 1.6-fold (thymidine uptake) and 2.1-fold (leucine uptake), while total cell numbers increased only slightly over the course of the experiment. 454 tag pyrosequencing of partial 16S rRNA genes and catalyzed reporter deposition fluorescence in situ hybridization (CARD FISH) showed that the composition and abundance of the bacterial and archaeal community in the iron-fertilized water body were remarkably constant without development of typical bloom-related succession patterns. Members of groups usually found in phytoplankton blooms, such as Roseobacter and Gammaproteobacteria , showed no response or only a minor response to the bloom. However, sequence numbers and total cell numbers of the SAR11 and SAR86 clades increased slightly but significantly toward the end of the experiment. It seems that although microbial productivity was enhanced within the fertilized area, a succession-like response of the microbial community upon the algal bloom was averted by highly effective grazing. Only small-celled members like the SAR11 and SAR86 clades could possibly escape the grazing pressure, explaining a net increase of those clades in numbers.
机译:已知在高营养,低叶绿素区域的铁肥试验会引起浮游植物的开花。但是,对于铁肥对微生物群落的反应知之甚少。作为在南部大西洋进行的LOHAFEX实验的一部分,在实验的38天中,监测了细菌和古细菌在诱导的水华内和水外,水华以类囊藻类浮游生物为主。在实验过程中,微生物产量增加了1.6倍(胸腺嘧啶核苷摄取)和2.1倍(亮氨酸摄取),而总细胞数仅略有增加。 454标签部分16S rRNA基因的焦磷酸测序和催化的报告分子沉积荧光原位杂交(CARD FISH)表明,在铁施肥水体中细菌和古细菌群落的组成和丰度非常恒定,而没有发生典型的与开花相关的演替模式。通常在浮游植物水华中发现的群体成员,如玫瑰红细菌和丙型细菌,对水华没有反应或仅有较小的反应。但是,SAR11和SAR86进化枝的序列号和总细胞数在实验结束时略有增加,但显着增加。看来,尽管施肥区的微生物生产力提高了,但高效放牧避免了微生物群落对藻华的演替式反应。只有像SAR11和SAR86进化枝这样的小型成员才能摆脱放牧压力,这说明这些进化枝的数量净增加。

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