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Temporal and spatial patterns of microbial community biomass and composition in the Southern California Current Ecosystem

机译:南加州当前生态系统中微生物群落生物量和组成的时空格局

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摘要

As part of the California Current Ecosystem Long Term Ecological Research (CCE-LTER) Program, samples for epifluorescence microscopy and flow cytometry (FCM) were collected at ten 'cardinal' stations on the California Cooperative Oceanic Fisheries Investigations (CalCOFI) grid during 25 quarterly cruises from 2004 to 2010 to investigate the biomass, composition and size-structure of microbial communities within the southern CCE. Based on our results, we divided the region into offshore, and inshore northern and southern zones. Mixed-layer phytoplankton communities in the offshore had lower biomass (16 ±2 μg C L~(-1); all errors represent the 95% confidence interval), smaller size-class cells and biomass was more stable over seasonal cycles. Offshore phytoplankton biomass peaked during the winter months. Mixed-layer phytoplankton communities in the northern and southern inshore zones had higher biomass (78 ± 22 and 32 ± 9 μg C L~(-1) respectively), larger size-class cells and stronger seasonal biomass patterns. Inshore communities were often dominated by micro-size (20-200 μm) diatoms; however, autotrophic dinoflagellates dominated during late 2005 to early 2006, corresponding to a year of delayed upwelling in the northern CCE. Biomass trends in mid and deep euphotic zone samples were similar to those seen in the mixed-layer, but with declining biomass with depth, especially for larger size classes in the inshore regions. Mixed-layer ratios of autotrophic carbon to chlorophyll a (AC:Chl a) had a mean value of 51.5 ± 5.3. Variability of nitracline depth, bin-averaged AC:Chl a in the mixed-layer ranged from 40 to 80 and from 22 to 35 for the deep euphotic zone, both with significant positive relationships to nitracline depth. Total living microbial carbon, including auto- and heterotrophs, consistently comprised about half of paniculate organic carbon (POC).
机译:作为加利福尼亚州当前生态系统长期生态研究(CCE-LTER)计划的一部分,每个季度25个季度在加利福尼亚合作海洋渔业调查(CalCOFI)网格的十个“主要”站点收集了落射荧光显微镜和流式细胞仪(FCM)样品。从2004年到2010年航行,以调查CCE南部微生物群落的生物量,组成和大小结构。根据我们的结果,我们将该地区分为近海区和近海北部和南部地区。近海的混合层浮游植物群落生物量较低(16±2μgC L〜(-1);所有误差均表示95%的置信区间),较小的类细胞和生物量在季节性周期内更稳定。近海浮游植物生物量在冬季达到峰值。北部和南部近海带的混合层浮游植物群落具有较高的生物量(分别为78±22和32±9μgC L〜(-1)),较大的类细胞和较强的季节性生物量模式。沿海社区通常被微型硅藻(20-200μm)所占据。然而,自养的鞭毛藻在2005年底至2006年初占主导地位,这对应于CCE北部延缓上升的一年。在中,深共生区样品中,生物量趋势与混合层中的相似,但生物量随深度下降,特别是对于近海区域较大的生物量。自养碳与叶绿素a的混合层比率(AC:Chl a)的平均值为51.5±5.3。混合层中二元平均AC:Chl a在混合层的亚硝酸盐深度变化范围从40到80,在深层富营养区范围从22到35,两者均与亚硝酸盐深度显着正相关。总的活微生物碳,包括自养和异养菌,始终约占颗粒有机碳(POC)的一半。

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