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蝗虫胚胎胸膜足的转录组支持这些器官产生使幼虫能够孵化的酶。

Transcriptome of pleuropodia from locust embryos supports that these organs produce enzymes enabling the larva to hatch.

作者信息

Konopová Barbora, Buchberger Elisa, Crisp Alastair

机构信息

1Department of Zoology, University of Cambridge, Cambridge, UK.

2Department of Evolutionary Developmental Genetics, University of Göttingen, Göttingen, Germany.

出版信息

Front Zool. 2020 Jan 16;17:4. doi: 10.1186/s12983-019-0349-2. eCollection 2020.

Abstract

BACKGROUND

Pleuropodia are limb-derived glandular organs that transiently appear on the first abdominal segment in embryos of insects from majority of "orders". They are missing in the genetic model and little is known about them. Experiments carried out on orthopteran insects 80 years ago indicated that the pleuropodia secrete a "hatching enzyme" that digests the serosal cuticle to enable the larva to hatch, but evidence by state-of-the-art molecular methods is missing.

RESULTS

We used high-throughput RNA-sequencing to identify the genes expressed in the pleuropodia of the locust (Orthoptera). First, using transmission electron microscopy we studied the development of the pleuropodia during 11 stages of the locust embryogenesis. We show that the glandular cells differentiate and start secreting just before the definitive dorsal closure of the embryo and the secretion granules outside the cells become more abundant prior to hatching. Next, we generated a comprehensive embryonic reference transcriptome for the locust and used it to study genome wide gene expression across ten morphologicaly defined stages of the pleuropodia. We show that when the pleuropodia have morphological markers of functional organs and produce secretion, they are primarily enriched in transcripts associated with transport functions. They express genes encoding enzymes capable of digesting cuticular protein and chitin. These include the potent cuticulo-lytic Chitinase 5, whose transcript rises just before hatching. Unexpected finding was the enrichment in transcripts for immunity-related enzymes. This indicates that the pleuropodia are equipped with epithelial immunity similarly as barrier epithelia in postembryonic stages.

CONCLUSIONS

These data provide transcriptomic support for the historic hypothesis that pleuropodia produce cuticle-degrading enzymes and function in hatching. They may also have other functions, such as facilitation of embryonic immune defense. By the genes that they express the pleuropodia are specialized embryonic organs and apparently an important though neglected part of insect physiology.

摘要

背景

侧足是源自附肢的腺器官,在大多数“目”的昆虫胚胎中,会短暂出现在第一腹节上。在遗传模型中它们并不存在,人们对其了解甚少。80年前对直翅目昆虫进行的实验表明,侧足分泌一种“孵化酶”,可消化浆膜表皮,使幼虫能够孵化,但缺乏最新分子方法的证据。

结果

我们使用高通量RNA测序来鉴定蝗虫(直翅目)侧足中表达的基因。首先,利用透射电子显微镜研究了蝗虫胚胎发育11个阶段中侧足的发育情况。我们发现,腺细胞在胚胎最终背侧闭合前开始分化并开始分泌,细胞外的分泌颗粒在孵化前变得更加丰富。接下来,我们为蝗虫生成了一个全面的胚胎参考转录组,并用于研究侧足十个形态学定义阶段的全基因组基因表达。我们发现,当侧足具有功能器官的形态学标记并产生分泌物时,它们主要富集与运输功能相关的转录本。它们表达编码能够消化表皮蛋白和几丁质的酶的基因。其中包括强效的角质层分解几丁质酶5,其转录本在孵化前升高。意外的发现是免疫相关酶的转录本富集。这表明侧足与胚胎后期的屏障上皮一样,具备上皮免疫功能。

结论

这些数据为侧足产生角质层降解酶并在孵化中起作用这一历史假设提供了转录组学支持。它们可能还具有其他功能,例如促进胚胎免疫防御。通过它们表达的基因,侧足是专门化的胚胎器官,显然是昆虫生理学中一个重要但被忽视的部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e8c/6966819/991e62dd07c9/12983_2019_349_Fig2_HTML.jpg

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