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Effects of Larval Mosquitoes (Aedes triseriatus) and Stemflow on Microbial Community Dynamics in Container Habitats

机译:幼虫蚊(Aedes triseriatus)和茎流对容器栖息地微生物群落动态的影响

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摘要

The dynamics of the microbial food sources for Aedes triseriatus larvae in microcosms were found to be strongly influenced by larval presence. The total abundance of bacteria in water samples generally increased in response to larvae, including populations of cultivable, facultatively anaerobic bacteria. Additionally, a portion of the community shifted from Pseudomonaceae to Enterobacteriaceae. Bacterial abundance on leaf material was significantly reduced in the presence of actively feeding larvae. Principle-component analysis of whole community fatty acid methyl ester (FAME) profiles showed that larvae changed the microbial community structure in both the water column and the leaf material. Cyclopropyl FAMEs, typically associated with bacteria, were reduced in microcosms containing larvae; however, other bacterial fatty acids showed no consistent response. Long-chain polyunsaturated fatty acids characteristic of microeukaryotes (protozoans and meiofauna) declined in abundance when larvae were present, indicating that larval feeding reduced the densities of these microorganisms. However, presumed fungal lipid markers either increased or were unchanged in response to larvae. Larval presence also affected microbial nitrogen metabolism through modification of the physiochemical conditions or by grazing on populations of bacteria involved in nitrification-denitrification. Stemflow primarily influenced inorganic ion and organic compound concentrations in the microcosms and had less-pronounced effects on microbial community parameters than did larval presence. Stemflow treatments diluted concentrations of all inorganic ions (chloride, sulfate, and ammonium) and organic compounds (total dissolved organic carbon, soluble carbohydrates, and total protein) measured, with the exceptions of nitrite and nitrate. Stemflow addition did not measurably affect larval biomass in the microcosms but did enhance development rates and early emergence patterns of adults.
机译:发现在微观世界中,伊蚊幼虫的微生物食物来源的动力学受到幼虫存在的强烈影响。响应于幼虫,包括可培养的兼性厌氧菌的种群,水样中细菌的总丰度通常会增加。另外,一部分群落从假单胞菌科转移到肠杆菌科。在主动喂食幼虫的情况下,叶片材料上的细菌丰度显着降低。全群落脂肪酸甲酯(FAME)谱的主成分分析表明,幼虫改变了水柱和叶片材料中的微生物群落结构。通常与细菌有关的环丙基FAME在含有幼虫的微观世界中减少;然而,其他细菌脂肪酸没有显示出一致的反应。当存在幼虫时,微真核生物(原生动物和介壳动物)特有的长链多不饱和脂肪酸大量减少,这表明幼虫摄食降低了这些微生物的密度。但是,假定的真菌脂质标记物响应幼虫而增加或保持不变。幼虫的存在还通过改变物理化学条件或放牧硝化-硝化作用所涉及的细菌种群而影响微生物的氮代谢。与幼虫相比,干流主要影响微观世界中无机离子和有机化合物的浓度,对微生物群落参数的影响较小。 Stemflow处理可测量所有无机离子(氯离子,硫酸根和铵离子)和有机化合物(总溶解有机碳,可溶性碳水化合物和总蛋白质)的稀释浓度,亚硝酸盐和硝酸盐除外。茎流的添加并没有显着影响微观世界中幼虫的生物量,但确实提高了成年动物的发育速度和早期出苗方式。

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