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松花江中鞭毛藻群落的分布模式

Distribution patterns of dinoflagellate communities along the Songhua River.

作者信息

Gao Yangchun, Chen Yiyong, Xiong Wei, Li Shiguo, Zhan Aibin

机构信息

Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, China.

University of Chinese Academy of Sciences, Chinese Academy of Sciences, Beijing, China.

出版信息

PeerJ. 2019 Apr 9;7:e6733. doi: 10.7717/peerj.6733. eCollection 2019.

Abstract

BACKGROUND

Dinoflagellates have the potential to pose severe ecological and economic damages to aquatic ecosystems. It is therefore largely needed to understand the causes and consequences of distribution patterns of dinoflagellate communities in order to manage potential environmental problems. However, a majority of studies have focused on marine ecosystems, while the geographical distribution patterns of dinoflagellate communities and associated determinants in freshwater ecosystems remain unexplored, particularly in running water ecosystems such as rivers and streams.

METHODS

Here we utilized multiple linear regression analysis and combined information on species composition recovered by high-throughput sequencing and spatial and environmental variables to analyze the distribution patterns of dinoflagellate communities along the Songhua River.

RESULTS

After high-throughput sequencing, a total of 490 operational taxonomic units (OTUs) were assigned to dinoflagellates, covering seven orders, 13 families and 22 genera. Although the sample sites were grouped into three distinctive clusters with significant difference ( < 0.05) in environmental variables, OTUs-based dinoflagellate communities among the three clusters showed no significant difference ( > 0.05). Among all 24 environmental factors, two environmental variables, including NO-N and total dissolved solids (TDS), were selected as the significantly influential factors ( < 0.05) on the distribution patterns of dinoflagellate communities based on forward selection. The redundancy analysis (RDA) model showed that only a small proportion of community variation (6.1%) could be explained by both environmental (NO-N and TDS) and dispersal predictors (watercourse distance) along the River. Variance partitioning revealed a larger contribution of local environmental factors (5.85%) than dispersal (0.50%) to the total variation of dinoflagellate communities.

DISCUSSION

Our findings indicated that in addition to the two quantifiable processes in this study (species sorting and dispersal), more unquantifiable stochastic processes such as temporal extinction and colonization events due to rainfall may be responsible for the observed geographical distribution of the dinoflagellate community along the Songhua River. Results obtained in this study suggested that deeper investigations covering different seasons are needed to understand the causes and consequences of geographical distribution patterns of dinoflagellate biodiversity in river ecosystems.

摘要

背景

甲藻有对水生生态系统造成严重生态和经济损害的可能性。因此,为了管理潜在的环境问题,非常有必要了解甲藻群落分布模式的成因和后果。然而,大多数研究都集中在海洋生态系统上,而淡水生态系统中甲藻群落的地理分布模式及其相关决定因素仍未得到探索,特别是在河流和溪流等流水生态系统中。

方法

在此,我们利用多元线性回归分析,并结合高通量测序恢复的物种组成信息以及空间和环境变量,来分析松花江上甲藻群落的分布模式。

结果

高通量测序后,共为甲藻指定了490个可操作分类单元(OTU),涵盖7个目、13个科和22个属。尽管样本位点被分为三个不同的聚类,其环境变量存在显著差异(<0.05),但基于OTU的三个聚类中的甲藻群落没有显著差异(>0.05)。在所有24个环境因素中,基于向前选择,两个环境变量,包括硝态氮(NO-N)和总溶解固体(TDS),被选为对甲藻群落分布模式有显著影响的因素(<0.05)。冗余分析(RDA)模型表明,沿着河流,环境(NO-N和TDS)和扩散预测因子(河道距离)只能解释一小部分群落变异(6.1%)。方差分解显示,局部环境因素(5.85%)对甲藻群落总变异的贡献大于扩散(0.50%)。

讨论

我们的研究结果表明,除了本研究中的两个可量化过程(物种分选和扩散)外,更多不可量化的随机过程,如降雨导致的暂时灭绝和定殖事件,可能是松花江上观察到的甲藻群落地理分布的原因。本研究获得的结果表明,需要进行涵盖不同季节的更深入调查,以了解河流生态系统中甲藻生物多样性地理分布模式的成因和后果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9364/6461062/3ce8b0c389dd/peerj-07-6733-g001.jpg

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