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作 者:王丹丹 王剑峰 WANG Dandan;WANG Jianfeng(Liaoning Key Laboratory of Urban Integrated Pest Management and Ecological Security/College of Life Science and Bioengineering,Shenyang University,Shenyang 110044,Liaoning,China)
机构地区:[1]沈阳大学生命科学与工程学院/辽宁省城市有害生物治理与生态安全重点实验室,中国辽宁沈阳110044
出 处:《生命科学研究》2023年第3期229-236,244,共9页Life Science Research
基 金:辽宁省自然科学基金项目(2019-ZD-0539);国家自然科学基金资助项目(31672332)。
摘 要:利用Illumina MiSeq高通量测序技术,对广粪蚊不同发育阶段体内细菌16S rDNA的V3~V4变异区进行分析,探究其细菌的群落多样性。7个样本共获得548058条有效序列,它们聚类为870个操作分类单元(operational taxonomic unit,OTU),注释到24门、51纲、92目、175科、346属。广粪蚊体内细菌的赵氏指数(Chao index)、艾斯指数(Ace index)和香农指数(Shannon index)分别为485.00~885.03、485.09~877.55和2.90~4.31。其中,优势菌门为变形菌门(Proteobacteria)和放线菌门(Actinobacteria),优势菌目为根瘤菌目(Rhizobiales)和放线菌目(Actinomycetales),优势菌属为黄色杆菌科未知属(unclassified Xanthobacteraceae)、假单胞菌属(Pseudomonas)和无色杆菌属(Leucobacter)。但各样本的优势菌属有所不同,如假单胞菌属在卵中的占比最高,黄色杆菌科未知属在1~3龄幼虫和成虫中的相对丰度最高,棒状杆菌属(Corynebacterium)在4龄幼虫中的占比最高,普罗威登斯菌属(Providencia)在蛹中的占比最高。主成分分析(principle component analysis,PCA)表明,广粪蚊体内细菌的群落组成在不同发育阶段存在一定的差异。研究结果为广粪蚊体内微生物资源的开发提供了相关信息,也为广粪蚊的生物防治工作提供了参考依据。To explore the diversity of bacterial community in Cobolidia fuscipes(Meigen),the V3~V4 regions of bacterial 16S rDNA in this insect species at different development stages were sequenced using Illumina MiSeq high-throughput sequencing platform.A total of 548058 reads and 870 operational taxonomic units(OTUs)were obtained and annotated into 24 phyla,51 classes,92 orders,175 families and 346 genera.The Chao,Ace and Shannon indices were 485.00~885.03,485.09~877.55 and 2.90~4.31,respectively.The dominant bacterial phyla were Proteobacteria and Actinobacteria,dominant orders were Rhizobiales and Actinomycetales,and dominant genera were unclassified Xanthobacteraceae,Pseudomonas and Leucobacter.However,the dominant genus in each sample was different.Pseudomonas occupied the highest proportion in eggs,unclassified Xanthobacteraceae had the highest relative abundance in the 1st to 3rd instar larvae and adults,Corynebacterium had the highest relative abundance in the 4th instar larvae,and Providencia had the highest relative abundance in pupae.Principle component analysis(PCA)demonstrated that the composition of bacterial community in C.fuscipes(Meigen)was different at different development stages.This study provides a theoretical basis for exploitation of microbial resources in C.fuscipes(Meigen)and also for biocontrol of the pest species.
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