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在蜜蜂品级中,从蛹盘到翅膀和胸部背板的变态过程中转录组动态。

Transcriptome dynamics during metamorphosis of imaginal discs into wings and thoracic dorsum in Apis mellifera castes.

机构信息

Departamento de Genética, Faculdade de Medicina de Ribeirão Preto, Universidade de São Paulo, Av. Bandeirantes 3900, 14049-900, Ribeirão Preto, SP, Brazil.

Departamento de Tecnologia, Faculdade de Ciências Agrárias e Veterinárias, Universidade Estadual Paulista Júlio de Mesquita Filho, Jaboticabal, SP, Brazil.

出版信息

BMC Genomics. 2021 Oct 22;22(1):756. doi: 10.1186/s12864-021-08040-z.

Abstract

BACKGROUND

Much of the complex anatomy of a holometabolous insect is built from disc-shaped epithelial structures found inside the larva, i.e., the imaginal discs, which undergo a rapid differentiation during metamorphosis. Imaginal discs-derived structures, like wings, are built through the action of genes under precise regulation.

RESULTS

We analyzed 30 honeybee transcriptomes in the search for the gene expression needed for wings and thoracic dorsum construction from the larval wing discs primordia. Analyses were carried out before, during, and after the metamorphic molt and using worker and queen castes. Our RNA-seq libraries revealed 13,202 genes, representing 86.2% of the honeybee annotated genes. Gene Ontology analysis revealed functional terms that were caste-specific or shared by workers and queens. Genes expressed in wing discs and descendant structures showed differential expression profiles dynamics in premetamorphic, metamorphic and postmetamorphic developmental phases, and also between castes. At the metamorphic molt, when ecdysteroids peak, the wing buds of workers showed maximal gene upregulation comparatively to queens, thus underscoring differences in gene expression between castes at the height of the larval-pupal transition. Analysis of small RNA libraries of wing buds allowed us to build miRNA-mRNA interaction networks to predict the regulation of genes expressed during wing discs development.

CONCLUSION

Together, these data reveal gene expression dynamics leading to wings and thoracic dorsum formation from the wing discs, besides highlighting caste-specific differences during wing discs metamorphosis.

摘要

背景

完全变态昆虫的许多复杂解剖结构都是由幼虫体内发现的盘状上皮结构构建的,即 imaginal discs,它们在变态过程中经历快速分化。 imaginal discs 衍生的结构,如翅膀,是通过基因的作用在精确调节下构建的。

结果

我们分析了 30 个蜜蜂转录组,以寻找幼虫翅膀 disc 原基发育为翅膀和胸部背部所需的基因表达。分析在变态蜕皮前、蜕皮中和蜕皮后进行,并使用工蜂和蜂王蜂群。我们的 RNA-seq 文库揭示了 13,202 个基因,代表了蜜蜂注释基因的 86.2%。基因本体论分析揭示了特定于蜂群或工蜂和蜂王共享的功能术语。在 premetamorphic、metamorphic 和 postmetamorphic 发育阶段以及蜂群之间,表达在 wing discs 和衍生结构中的基因显示出不同的表达谱动态。在变态蜕皮时,当蜕皮激素达到峰值时,工蜂的翅膀芽显示出与蜂王相比最大的基因上调,从而突出了幼虫-蛹转变高峰期蜂群之间基因表达的差异。对 wing buds 的 small RNA 文库的分析使我们能够构建 miRNA-mRNA 相互作用网络,以预测在 wing discs 发育过程中表达的基因的调控。

结论

这些数据共同揭示了导致翅膀和胸部背部从 wing discs 形成的基因表达动态,同时突出了 wing discs 变态过程中的蜂群特异性差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f200/8532292/77ee9bd7f4ea/12864_2021_8040_Fig1_HTML.jpg

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