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Microbial diversity and structure in the gastrointestinal tracts of two stranded short-finned pilot whales(Globicephala macrorhynchus)and a pygmy sperm whale(Kogia breviceps) 被引量:2
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作者 Shijie BAI Peijun ZHANG +3 位作者 Mingli LIN Wenzhi LIN Zixin YANG Songhai LI 《Integrative Zoology》 SCIE CSCD 2021年第3期324-335,共12页
Information on the gut microbiome composition of different mammals could provide novel insights into the evolution of mammals and succession of microbial communities in different hosts.However,there is limited informa... Information on the gut microbiome composition of different mammals could provide novel insights into the evolution of mammals and succession of microbial communities in different hosts.However,there is limited information on the gut microbiome composition of marine mammals,especially cetaceans because of sampling constraints.In this study,we investigated the diversity and composition of microbial communities in the stomach,midgut,and hindgut of 2 stranded short-finned pilot whales(Globicephala macrorhynchus)and hindgut of a stranded pygmy sperm whale(Kogia breviceps)by using 16S rRNA gene amplicon sequencing technology.On the basis of the 50 most abundant operational taxonomic units,principal coordinate analysis,and non-metric multidimensional scaling analysis,we confirmed that the gut microbial communities of the 3 whales were different.Our results revealed that the gut microbiome of 1 stranded short-finned pilot whale GM16 was dominated by Firmicutes(mainly Clostridium)and Fusobacteria;whereas that of the other pilot whale GM19 was composed of Gammaproteobacteria and Bacteroidetes(mainly Vibrio and Bacteroides,respectively),probably caused by intestinal disease and antibiotic treatment.The gut microbiome of the pygmy sperm whale was dominated by Firmicutes and Bacteroidetes.Moreover,different gastrointestinal tract regions harbored different microbial community structures.To our knowledge,this is the first report of the gut microbiome of short-finned pilot whales,and our findings will expand our current knowledge on microbial diversity and composition in the gastrointestinal tract of cetaceans. 展开更多
关键词 gastrointestinal tract gut microbiome microbial diversity pygmy sperm whale(kogia breviceps) short-finned pilot whale(Globicephala macrorhynchus)
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福建漳浦搁浅的小抹香鲸 被引量:1
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作者 王丕烈 童慎汉 袁红梅 《水产科学》 CAS 北大核心 2007年第12期671-674,共4页
2005年7月20日,在福建省漳浦县深土镇近岸搁浅1头雄性小抹香鲸。描述了该标本的外形与骨骼,并记录其测量记录。标本体长297 cm,头骨长416 cm,脊椎式C7+T12+L9+Ca23=51,本种与侏儒抹香鲸有较大差异。
关键词 漳浦 小抹香鲸 形态
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小抹香鲸回声定位信号高指向性发声机理
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作者 徐诚湘 夏飞 +2 位作者 许延峰 胡青 桂端 《中山大学学报(自然科学版)(中英文)》 CAS CSCD 北大核心 2022年第3期162-170,共9页
齿鲸回声定位信号具有高频高指向性特性,使其能够精确感知水中目标,是现代声纳模仿的对象。本文通过分析小抹香鲸Kogia breviceps头部的几何结构与组织特性,采用双曲正割折射率材料模拟声速连续变化的额隆,并利用双曲正割折射率材料的... 齿鲸回声定位信号具有高频高指向性特性,使其能够精确感知水中目标,是现代声纳模仿的对象。本文通过分析小抹香鲸Kogia breviceps头部的几何结构与组织特性,采用双曲正割折射率材料模拟声速连续变化的额隆,并利用双曲正割折射率材料的最外侧声线轨迹对额隆的轮廓进行建模。在频域与时域两种模式下,应用有限元方法对仿真模型的远场指向性展开了分析,结果表明,点源经过具有双曲正割梯度折射率的额隆后在开口处形成了平面波,即额隆起到了准直的作用。通过对远场声压值分区域相关性分析表明,额隆的准直作用是形成较窄主瓣的主要原因,气囊和头骨则主要起到抑制旁瓣的作用。 展开更多
关键词 小抹香鲸kogia breviceps 高指向性 梯度折射率 准直作用
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