Department of Ecology and Evolutionary Biology, University of California Irvine, Irvine, CA, USA.
Unidad de Genómica Avanzada (Langebio), CINVESTAV, Irapuato, GTO, Mexico.
Commun Biol. 2021 Jun 25;4(1):791. doi: 10.1038/s42003-021-02335-3.
A detailed knowledge of gene function in the monarch butterfly is still lacking. Here we generate a genome assembly from a Mexican nonmigratory population and used RNA-seq data from 14 biological samples for gene annotation and to construct an atlas portraying the breadth of gene expression during most of the monarch life cycle. Two thirds of the genes show expression changes, with long noncoding RNAs being particularly finely regulated during adulthood, and male-biased expression being four times more common than female-biased. The two portions of the monarch heterochromosome Z, one ancestral to the Lepidoptera and the other resulting from a chromosomal fusion, display distinct association with sex-biased expression, reflecting sample-dependent incompleteness or absence of dosage compensation in the ancestral but not the novel portion of the Z. This study presents extended genomic and transcriptomic resources that will facilitate a better understanding of the monarch's adaptation to a changing environment.
对黑脉金斑蝶基因功能的详细了解仍然缺乏。在这里,我们从一个墨西哥非迁徙种群中生成了一个基因组组装,并使用来自 14 个生物样本的 RNA-seq 数据进行基因注释,并构建了一个图谱,描绘了黑脉金斑蝶生命周期中大部分时间的基因表达广度。三分之二的基因显示表达变化,长非编码 RNA 在成年期特别精细地调控,雄性偏性表达的频率是雌性偏性表达的四倍。黑脉金斑蝶异染色质 Z 的两个部分,一个是鳞翅目动物的祖先,另一个是由染色体融合产生的,与性别偏性表达明显相关,反映了样本依赖性的不完全或在祖先但不在新的 Z 部分的剂量补偿缺失。本研究提供了扩展的基因组和转录组资源,将有助于更好地了解黑脉金斑蝶对不断变化的环境的适应。