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甘南尕海草原毛虫肠道细菌群落结构分析 被引量:2
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作者 王金昌 曾小琴 +2 位作者 占智高 关丽梅 靳亮 《江西科学》 2017年第1期5-11,共7页
为探讨了甘南尕海自然保护区草原毛虫(Gynaephora aureate Ghou et Ying)肠道细菌群落结构组成,采集甘南尕海高寒草地3个不同地点的4龄草原毛虫幼虫,通过Illumina Hi Seq高通量测序平台对甘南尕海自然保护区草原毛虫肠道细菌群落结构组... 为探讨了甘南尕海自然保护区草原毛虫(Gynaephora aureate Ghou et Ying)肠道细菌群落结构组成,采集甘南尕海高寒草地3个不同地点的4龄草原毛虫幼虫,通过Illumina Hi Seq高通量测序平台对甘南尕海自然保护区草原毛虫肠道细菌群落结构组成进行分析,总共获得了206 098条序列。甘南尕海草原毛虫中肠的细菌由Proteobacteria(变形菌门)、Bacteroidetes(拟杆菌门)、Firmicutes(厚壁菌门)、Actinobacteria(放线菌门)、Tenericutes(软壁菌门)、Verrucomicrobia(疣微菌门)、Fusobacteria(梭杆菌门)、Acidobacteria(酸杆菌)、Deinococcus-Thermus(异常球菌-栖热菌门)和Planctomycetes(浮霉菌门)等10个门组成,优势菌群为Proteobacteria和Bacteroidetes。在属的水平上,Providencia(普罗威登斯菌)含量最丰富,其次是Brevundimonas(单胞菌属)、Bacteroides(拟杆菌属)和Methylotenera(甲基柔膜菌属)。阐明了甘南尕海草原毛虫肠道细菌群落的组成,为研究草原毛虫肠道微生物和草原毛虫对人畜的危害提供理论基础。 展开更多
关键词 甘南尕海 草原毛虫 肠道微生物 高通量测序
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Development of a multiprimer metabarcoding approach to understanding trophic interactions in agroecosystems
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作者 Ivan Batuecas Oscar Alomar +4 位作者 Cristina Castañe Josep Piñol Stéphane Boyer Lorena Gallardo-Montoya Nuria Agustí 《Insect Science》 SCIE CAS CSCD 2022年第4期1195-1210,共16页
To understand trophic interactions and the precise ecological role of each predatory species,it is important to know which arthropod and plant resources are used by generalist predators in agroecosystems.Molecular app... To understand trophic interactions and the precise ecological role of each predatory species,it is important to know which arthropod and plant resources are used by generalist predators in agroecosystems.Molecular approaches,such as the use of high-throughput sequencing(HTS),play a key role in identifying these resources.This study develops a multiprimer metabarcoding approach for screening the most common trophic interactions of two predatory arthropods with contrasting morphologies,Rhagonycha fulva(Coleoptera:Cantharidae)and Anthocoris nemoralis(Hemiptera:Anthocoridae)collected from a peach crop.To reduce the time and cost of this metabarcoding approach,we first evaluated the effect of using two different predator-pools of different size(10 and 23 individuals of the same species).We also used our system to analyze the performance of one and two primer pairs in the same library.Our results show that the analysis of 23 individuals together with the use of two primer pairs in the same library optimize the HTS analysis.Using these best-performing conditions,we then analyzed the entire bodies of field-collected predators as well as the washing solutions used to clean the insect bodies.We were able to identify both gut content(i.e.,diet)and external pollen load(i.e.,on the insects’bodies).This study also demonstrates the importance of washing predatory insects’bodies prior to HTS analysis when the target species have a considerable size(>10 mm)and hairy structures.This metabarcoding approach has significant potential for the study of trophic links in agriculture,revealing expected and unexpected trophic relationships. 展开更多
关键词 high-throug hput sequencing metabarcoding molecular diet analysis multiprimer approach predatory arthropods trophic interactions
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