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Genome Assembly of the Ragweed Leaf Beetle: A Step Forward to Better Predict Rapid Evolution of a Weed Biocontrol Agent to Environmental Novelties

机译:豚草叶片甲虫的基因组组装:更好地预测杂草生物控制特工的快速演变为环境Novelties

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摘要

Rapid evolution of weed biological control agents (BCAs) to new biotic and abiotic conditions is poorly understood and so far only little considered both in pre-release and post-release studies, despite potential major negative or positive implications for risks of nontargeted attacks or for colonizing yet unsuitable habitats, respectively. Provision of genetic resources, such as assembled and annotated genomes, is essential to assess potential adaptive processes by identifying underlying genetic mechanisms. Here, we provide the first sequenced genome of a phytophagous insect used as a BCA, that is, the leaf beetle Ophraella communa, a promising BCA of common ragweed, recently and accidentally introduced into Europe. A total 33.98 Gb of raw DNA sequences, representing ∼43-fold coverage, were obtained using the PacBio SMRT-Cell sequencing approach. Among the five different assemblers tested, the SMARTdenovo assembly displaying the best scores was then corrected with Illumina short reads. A final genome of 774 Mb containing 7,003 scaffolds was obtained. The reliability of the final assembly was then assessed by benchmarking universal single-copy orthologous genes (>96.0% of the 1,658 expected insect genes) and by remapping tests of Illumina short reads (average of 98.6 ± 0.7% without filtering). The number of protein-coding genes of 75,642, representing 82% of the published antennal transcriptome, and the phylogenetic analyses based on 825 orthologous genes placing O. communa in the monophyletic group of Chrysomelidae, confirm the relevance of our genome assembly. Overall, the genome provides a valuable resource for studying potential risks and benefits of this BCA facing environmental novelties.
机译:杂草生物对照剂(BCA)的快速演变为新的生物和非生物条件令人难以理解,并且在预释放和后期释放后,迄今为止只考虑到释放后的研究,尽管可能对非目标攻击的风险潜在潜在的主要负面或积极影响分别殖民但不合适的栖息地。提供遗传资源,例如组装和注释的基因组,对于评估潜在的遗传机制来评估潜在的自适应过程至关重要。在这里,我们提供了用作BCA的植物昆虫的第一个测序基因组,即叶甲虫ophraella communa,这是一个普通豚草的有希望的bca,最近并不小心被引入欧洲。使用PACBIO SMRT-Cell测序方法获得总计33.98GB的原始DNA序列,代表〜43倍覆盖。在测试的五种不同的汇编中,用Illumina短读取显示显示最佳分数的SmartDenovo组件。得到含有7,003个支架的774 MB的最终基因组。然后通过基准测试通用单拷贝正交基因(> 96.0%的1,658%的预期昆虫基因)并通过将Illumina短读取的检测(平均过滤的平均值为98.6±0.7%)来评估最终组件的可靠性。 75,642的蛋白质编码基因的数量,代表出版的脑膜转录组的82%,以及基于825次外科基因的系统发育分析放置在Chrysomelidae的单晶组中,证实了我们基因组组装的相关性。总体而言,该基因组提供了研究该BCA面临环境Novelties的潜在风险和益处的宝贵资源。

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