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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Dynamics of bacterial community structure on intertidal sandflat inhabited by the ghost shrimp Nihonotrypaea harmandi (Decapoda: Axiidea: Callianassidae) in Tomioka Bay, Amakusa, Japan
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Dynamics of bacterial community structure on intertidal sandflat inhabited by the ghost shrimp Nihonotrypaea harmandi (Decapoda: Axiidea: Callianassidae) in Tomioka Bay, Amakusa, Japan

机译:日本天草富冈湾鬼虾Nihonotrypaea harmandi(十足目:Axiidea:Callianassidae)栖息的潮间带滩涂细菌群落结构的动态

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Callianassid (ghost) shrimp has been claimed as an ecosystem engineer, as it is one of the most powerful bioturbating macrobenthos in intertidal sandflats. However, our knowledge about the relationship between areal distribution of bottom-dwelling ghost shrimps and dynamics of sediment microbial community structure remains obscured. We used automated ribosomal intergenic spacer analysis (ARISA) to reveal the bacterial community dynamics in the sediment of intertidal sandflat of Tomioka Bay, Kyushu, Japan, which is predominantly inhabited by a burrow-dwelling callianassid shrimp Nihonotrypaea harmandi. We found that the bacterial community structures of high and middle shrimp population areas were significantly differentiated from those of low population area (ANOSIM, R = 0.10-0.18, p <0.01), while the former two areas were statistically indistinguishable (ANOSIM, R = 0.015, p > 0.1). These results illustrated the potential importance of shrimp population density as a key factor in shaping the bacterial community structure and interpreting their dynamics in the sandflat Furthermore, greater similarity between burrow and non-burrow communities was found in samples taken in autumn through winter than in those in summer (one-way ANOVA, p < 0.05), whereas the phylotype richness was not simply differentiated by seasons. These results suggest not only that environmental variables including water temperature and salinity of the water column overlying the sandflat could exert notable impacts on the sediment bacterial community dynamics, but that the bio-irrigation and mixing by the ghost shrimp in permeable sandflat would strongly homogenize sediment particles, enhance solute transport surrounding the burrow and ambient subsurface substrate, and therefore reduce spatial differentiation of the bacterial community structure between the two sites. A comparison between present and previous studies of axiidean (former taxonomic group name, thalassinidean) ghost shrimps provides us with a comprehensive understanding of the shrimps' impacts on bacterial community dynamics, highlighting the importance of sediment permeability, a characteristic determined by the type of sediment, as a key controlling factor to shape spatial heterogeneity of bacterial community structure around burrow. (C) 2015 Elsevier B.V. All rights reserved.
机译:卡利亚纳西德(幽灵)虾被称为生态系统工程师,因为它是潮间带滩涂中最强大的生物扰动底栖动物之一。然而,关于底栖鬼虾的面积分布与沉积物微生物群落结构动态之间关系的知识仍然不清楚。我们使用自动核糖体基因间间隔物分析(ARISA)揭示了日本九州富冈湾潮间带滩涂沉积物中的细菌群落动态,该沉积物主要栖息于栖息在地下的call鱼虾Nihonotrypaea harmandi。我们发现高和中虾种群区域的细菌群落结构与低种群种群的细菌群落结构有显着差异(ANOSIM,R = 0.10-0.18,p <0.01),而前两个区域在统计学上没有区别(ANOSIM,R = 0.015,p> 0.1)。这些结果说明了虾种群密度作为塑造细菌群落结构和解释其在沙滩中的动态的关键因素的潜在重要性。此外,在秋季至冬季采集的样本中,比其他样本中的洞穴和非洞穴群落之间的相似性更高。在夏季(单向方差分析,p <0.05),而系统型丰富度不是简单地按季节区分的。这些结果不仅表明环境变量(包括水温和覆盖在滩涂上的水柱的盐度)可能对沉积物细菌群落动态产生显着影响,而且幽灵虾在渗透性滩涂中的生物灌溉和混合将强烈地使沉积物均匀化。颗粒,增强了洞穴和周围地下基质周围的溶质运移,因此减少了两个位置之间细菌群落结构的空间分化。通过对当前研究和以前对Axiidean(前生物分类群名称,thalassinidean)幽灵虾的研究的比较,我们可以全面了解虾对细菌群落动态的影响,突出了沉积物渗透性的重要性,该特征取决于沉积物的类型,作为塑造洞穴周围细菌群落结构空间异质性的关键控制因素。 (C)2015 Elsevier B.V.保留所有权利。

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