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哲水蚤新哲水蚤的从头转录组组装:滞育解除的新资源。

De novo transcriptome assembly of the calanoid copepod Neocalanus flemingeri: A new resource for emergence from diapause.

作者信息

Roncalli Vittoria, Cieslak Matthew C, Sommer Stephanie A, Hopcroft Russell R, Lenz Petra H

机构信息

Békésy Laboratory of Neurobiology, Pacific Biosciences Research Center, University of Hawaii at Manoa, 1993 East-West Road, Honolulu, HI 96822, USA.

Békésy Laboratory of Neurobiology, Pacific Biosciences Research Center, University of Hawaii at Manoa, 1993 East-West Road, Honolulu, HI 96822, USA.

出版信息

Mar Genomics. 2018 Feb;37:114-119. doi: 10.1016/j.margen.2017.09.002. Epub 2017 Sep 14.

Abstract

Copepods, small planktonic crustaceans, are key links between primary producers and upper trophic levels, including many economically important fishes. In the subarctic North Pacific, the life cycle of copepods like Neocalanus flemingeri includes an ontogenetic migration to depth followed by a period of diapause (a type of dormancy) characterized by arrested development and low metabolic activity. The end of diapause is marked by the production of the first brood of eggs. Recent temperature anomalies in the North Pacific have raised concerns about potential negative effects on N. flemingeri. Since diapause is a developmental program, its progress can be tracked using through global gene expression. Thus, a reference transcriptome was developed as a first step towards physiological profiling of diapausing females using high-throughput Illumina sequencing. The de novo transcriptome, the first for this species was designed to investigate the diapause period. RNA-Seq reads were obtained for dormant to reproductive N. flemingeri females. A high quality de novo transcriptome was obtained by first assembling reads from each individual using Trinity software followed by clustering with CAP3 Assembly Program. This assembly consisted of 140,841transcripts (contigs). Bench-marking universal single-copy orthologs analysis identified 85% of core eukaryotic genes, with 79% predicted to be complete. Comparison with other calanoid transcriptomes confirmed its quality and degree of completeness. Trinity assembly of reads originating from multiple individuals led to fragmentation. Thus, the workflow applied here differed from the one recommended by Trinity, but was required to obtain a good assembly.

摘要

桡足类动物,即小型浮游甲壳类动物,是初级生产者与包括许多具有重要经济价值鱼类在内的较高营养级之间的关键环节。在亚北极北太平洋地区,像弗氏新哲水蚤这样的桡足类动物的生命周期包括一次向深海的个体发育迁移,随后是一段滞育期(一种休眠类型),其特征是发育停滞和代谢活动低下。滞育期的结束以第一批卵的产出为标志。北太平洋近期的温度异常引发了人们对其可能对弗氏新哲水蚤产生负面影响的担忧。由于滞育是一个发育程序,其进程可以通过全基因组表达来追踪。因此,作为使用高通量Illumina测序对滞育雌体进行生理特征分析的第一步,构建了一个参考转录组。这个该物种的首个从头转录组旨在研究滞育期。获取了处于休眠到生殖阶段的弗氏新哲水蚤雌体的RNA-Seq读数。通过首先使用Trinity软件对每个个体的读数进行组装,然后用CAP3组装程序进行聚类,获得了一个高质量的从头转录组。这个组装包含140,841个转录本(重叠群)。基准通用单拷贝直系同源物分析鉴定出85%的核心真核基因,其中79%预计是完整的。与其他哲水蚤类转录组的比较证实了其质量和完整程度。来自多个个体的读数的Trinity组装导致了片段化。因此,这里应用的工作流程与Trinity推荐的不同,但为了获得良好组装是必需的。

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