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Bacteria dispersal by hitchhiking on zooplankton

机译:通过在浮游动物上搭便车来扩散细菌

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Microorganisms and zooplankton are both important components of aquatic food webs. Although both inhabit the same environment, they are often regarded as separate functional units that are indirectly connected through nutrient cycling and trophic cascade. However, research on pathogenic and nonpathogenic bacteria has shown that direct association with zooplankton has significant influences on the bacteria's physiology and ecology. We used stratified migration columns to study vertical dispersal of hitchhiking bacteria through migrating zooplankton across a density gradient that was otherwise impenetrable for bacteria in both upward and downward directions (conveyor-belt hypothesis). The strength of our experiments is to permit quantitative estimation of transport and release of associated bacteria: vertical migration of Daphnia mag-na yielded an average dispersal rate of 1.3 ×10~5·cells·Daphnia~(-1)· migration cycle~(-1) for the lake bacterium Brevundimonas sp. Bidirectional vertical dispersal by migrating D. magna was also shown for two other bacterial species, albeit at lower rates. The prediction that diurnally migrating zooplankton acquire different attached bacterial communities from hypolimnion and epilimnion between day and night was subsequently confirmed in our field study. In mesotrophic Lake Nehmitz, D. hyalina showed pronounced diet vertical migration along with significant diurnal changes in attached bacterial community composition. These results confirm that hitchhiking on migrating animals can be an important mechanism for rapidly relocating microorganisms, including pathogens, allowing them to access otherwise inaccessible resources.
机译:微生物和浮游动物都是水生食物网的重要组成部分。尽管两者都居住在同一环境中,但它们通常被视为通过营养循环和营养级联间接连接的独立功能单元。然而,对致病性和非致病性细菌的研究表明,与浮游动物的直接联系对细菌的生理和生态有重大影响。我们使用分层迁移柱来研究浮游动物通过跨密度梯度迁移浮游细菌的垂直分布,否则该密度梯度无法使细菌在向上和向下方向渗透(传送带假设)。我们的实验强度是可以定量估计相关细菌的迁移和释放:水蚤的垂直迁移产生的平均扩散率为1.3×10〜5·细胞·水蚤〜(-1)·迁移周期〜( -1)为湖细菌Brevundimonas sp.。对于另外两种细菌,尽管迁移速率较低,但也显示了通过迁移大麦芽孢杆菌进行的双向垂直扩散。随后在我们的田间研究中证实了昼夜迁移浮游动物会从低水平和上水平的动物获得不同的附着细菌群落的预测。在中营养的内默茨湖中,透明藻D. hyalina表现出明显的饮食垂直迁移以及附着细菌群落组成的明显昼夜变化。这些结果证实,在迁徙动物上搭便车可能是迅速重新定位包括病原体在内的微生物的重要机制,从而使它们能够获得原本无法获得的资源。

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