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基于连锁的蚊子基因组组装及影响滞育的染色体区域鉴定。

A Linkage-Based Genome Assembly for the Mosquito and Identification of Chromosomal Regions Affecting Diapause.

作者信息

Boyle John H, Rastas Pasi M A, Huang Xin, Garner Austin G, Vythilingam Indra, Armbruster Peter A

机构信息

Department of Biology, Georgetown University, 37th and O St, Washington, DC 20057, USA.

Department of Biology, University of Mary, Bismarck, ND 58504, USA.

出版信息

Insects. 2021 Feb 16;12(2):167. doi: 10.3390/insects12020167.

Abstract

The Asian tiger mosquito, , is an invasive vector mosquito of substantial public health concern. The large genome size (~1.19-1.28 Gb by cytofluorometric estimates), comprised of ~68% repetitive DNA sequences, has made it difficult to produce a high-quality genome assembly for this species. We constructed a high-density linkage map for based on 111,328 informative SNPs obtained by RNAseq. We then performed a linkage-map anchored reassembly of AalbF2, the genome assembly produced by Palatini et al. (2020). Our reassembled genome sequence, AalbF3, represents several improvements relative to AalbF2. First, the size of the AalbF3 assembly is 1.45 Gb, almost half the size of AalbF2. Furthermore, relative to AalbF2, AalbF3 contains a higher proportion of complete and single-copy BUSCO genes (84.3%) and a higher proportion of aligned RNAseq reads that map concordantly to a single location of the genome (46%). We demonstrate the utility of AalbF3 by using it as a reference for a bulk-segregant-based comparative genomics analysis that identifies chromosomal regions with clusters of candidate SNPs putatively associated with photoperiodic diapause, a crucial ecological adaptation underpinning the rapid range expansion and climatic adaptation of .

摘要

白纹伊蚊是一种具有重大公共卫生意义的入侵性媒介蚊子。其基因组规模较大(通过细胞荧光分析估计约为1.19 - 1.28 Gb),其中约68%为重复DNA序列,这使得为该物种构建高质量的基因组组装变得困难。我们基于通过RNA测序获得的111,328个信息性单核苷酸多态性(SNP)构建了白纹伊蚊的高密度连锁图谱。然后,我们对Palatini等人(2020年)构建的基因组组装AalbF2进行了基于连锁图谱的重新组装。我们重新组装的基因组序列AalbF3相对于AalbF2有了一些改进。首先,AalbF3组装的大小为1.45 Gb,几乎是AalbF2大小的一半。此外,相对于AalbF2,AalbF3包含更高比例的完整单拷贝BUSCO基因(84.3%)以及更高比例的与基因组单个位置一致比对的RNA测序 reads(46%)。我们通过将AalbF3用作基于混合分离群体的比较基因组学分析的参考,证明了其效用,该分析识别出了与光周期滞育相关的候选SNP簇所在的染色体区域,光周期滞育是支撑白纹伊蚊快速范围扩张和气候适应的关键生态适应特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/adf3/7919801/0de9624fb854/insects-12-00167-g001.jpg

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