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褐翅长蠹染色体水平基因组组装:对宿主适应和环境耐受的洞察。

Chromosomal-level genome assembly of Hylurgus ligniperda: insights into host adaptation and environmental tolerance.

机构信息

Beijing Key Laboratory for Forest Pest Control, Beijing Forestry University, Beijing, 100083, China.

Department of Forest Protection, College of Forestry, Hebei Agricultural University, Baoding, 071033, China.

出版信息

BMC Genomics. 2024 Aug 20;25(1):792. doi: 10.1186/s12864-024-10711-6.

Abstract

BACKGROUND

Hylurgus ligniperda (Coleoptera: Curculionidae) is a worldwide forest quarantine pest. It is widely distributed, has many host tree species, and possesses strong adaptability. To explore its environmental adaptability and the related molecular mechanisms, we conducted chromosome-level genome sequencing and analyzed the transcriptome under different environmental factors, identifying key expressed genes.

RESULTS

We employed PacBio, Illumina, and Hi-C sequencing techniques to assemble a 520 Mb chromosomal-level genome of H. ligniperda, obtaining an N50 of 39.97 Mb across 138 scaffolds. A total of 10,765 protein-coding genes were annotated after repeat masking. Fourteen chromosomes were identified, among which Hyli14 was determined to be the sex chromosome. Survival statistics were tested over various growth periods under high temperature and low humidity conditions. The maximum survival period of adults reached 292 days at 25 °C, 65% relative humidity. In comparison, the maximum survival period was 14 days under 35 °C, 65% relative humidity, and 106 days under 25°C, 40% relative humidity. This indicated that environmental stress conditions significantly reduced adults' survival period. We further conducted transcriptome analysis to screen for potentially influential differentially expressed genes, such as CYP450 and Histone. Subsequently, we performed gene family analysis to gain insights into their functions and interactions, such as CYP450 and Histone. CYP450 genes affected the detoxification metabolism of enzymes in the Cytochrome P450 pathway to adapt to different environments. Histone genes are involved in insect hormone biosynthesis and longevity-regulating pathways in H. ligniperda to adapt to environmental stress.

CONCLUSIONS

The genome at the chromosome level of H. ligniperda was assembled for the first time. The mortality of H. ligniperda increased significantly at 35 ℃, 65% RH, and 25 ℃, 40% RH. CYP450 and Histone genes played an important role in response to environmental stress. This genome offers a substantial genetic resource for investigating the molecular mechanisms behind beetle invasion and spread.

摘要

背景

光肩星天牛(鞘翅目:天牛科)是一种世界性的森林检疫害虫。它分布广泛,宿主树种繁多,适应性强。为了探讨其环境适应性及相关分子机制,我们进行了染色体水平的基因组测序,并分析了不同环境因子下的转录组,鉴定了关键表达基因。

结果

我们采用 PacBio、Illumina 和 Hi-C 测序技术组装了光肩星天牛 5.20 亿碱基对的染色体水平基因组,获得了 138 个支架的 N50 为 39.97 兆碱基对。经过重复掩蔽后,共注释了 10765 个编码蛋白的基因。鉴定出 14 条染色体,其中 Hyli14 被确定为性染色体。在高温低湿条件下,对不同生长阶段的成虫进行了生存统计测试。在 25°C、65%相对湿度下,成虫的最大生存时间达到 292 天。相比之下,在 35°C、65%相对湿度下,成虫的最大生存时间为 14 天,在 25°C、40%相对湿度下,成虫的最大生存时间为 106 天。这表明环境应激条件显著缩短了成虫的生存时间。我们进一步进行了转录组分析,筛选出潜在的有影响的差异表达基因,如 CYP450 和组蛋白。随后,我们进行了基因家族分析,以了解它们的功能和相互作用,如 CYP450 和组蛋白。CYP450 基因影响细胞色素 P450 途径中酶的解毒代谢,以适应不同的环境。Histone 基因参与光肩星天牛的昆虫激素生物合成和长寿调控途径,以适应环境压力。

结论

首次组装了光肩星天牛染色体水平的基因组。在 35℃、65% RH 和 25℃、40% RH 下,光肩星天牛的死亡率显著增加。CYP450 和组蛋白基因在应对环境压力方面发挥了重要作用。该基因组为研究甲虫入侵和传播的分子机制提供了丰富的遗传资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0799/11337627/d8caa86575c9/12864_2024_10711_Fig1_HTML.jpg

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