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棘皮动物海星幼虫中神经肽基因表达的定位

Localization of Neuropeptide Gene Expression in Larvae of an Echinoderm, the Starfish .

作者信息

Mayorova Tatiana D, Tian Shi, Cai Weigang, Semmens Dean C, Odekunle Esther A, Zandawala Meet, Badi Yusef, Rowe Matthew L, Egertová Michaela, Elphick Maurice R

机构信息

Department of Organismal Biology, School of Biological and Chemical Sciences, Queen Mary University of LondonLondon, UK; Laboratory of Developmental Neurobiology, Koltzov Institute of Developmental Biology of Russian Academy of SciencesMoscow, Russia.

Department of Organismal Biology, School of Biological and Chemical Sciences, Queen Mary University of London London, UK.

出版信息

Front Neurosci. 2016 Dec 1;10:553. doi: 10.3389/fnins.2016.00553. eCollection 2016.

Abstract

Neuropeptides are an ancient class of neuronal signaling molecules that regulate a variety of physiological and behavioral processes in animals. The life cycle of many animals includes a larval stage(s) that precedes metamorphic transition to a reproductively active adult stage but, with the exception of and other insects, research on neuropeptide signaling has hitherto largely focused on adult animals. However, recent advances in genome/transcriptome sequencing have facilitated investigation of neuropeptide expression/function in the larvae of protostomian (e.g., the annelid ) and deuterostomian (e.g., the urochordate ) invertebrates. Accordingly, here we report the first multi-gene investigation of larval neuropeptide precursor expression in a species belonging to the phylum Echinodermata-the starfish . Whole-mount mRNA hybridization was used to visualize in bipinnaria and brachiolaria stage larvae the expression of eight neuropeptide precursors: L-type SALMFamide (S1), F-type SALMFamide (S2), vasopressin/oxytocin-type, NGFFYamide, thyrotropin-releasing hormone-type, gonadotropin-releasing hormone-type, calcitonin-type and corticotropin-releasing hormone-type. Expression of only three of the precursors (S1, S2, NGFFYamide) was observed in bipinnaria larvae but by the brachiolaria stage expression of all eight precursors was detected. An evolutionarily conserved feature of larval nervous systems is the apical organ and in starfish larvae this comprises the bilaterally symmetrical lateral ganglia, but only the S1 and S2 precursors were found to be expressed in these ganglia. A prominent feature of brachiolaria larvae is the attachment complex, comprising the brachia and adhesive disk, which mediates larval attachment to a substratum prior to metamorphosis. Interestingly, all of the neuropeptide precursors examined here are expressed in the attachment complex, with distinctive patterns of expression suggesting potential roles for neuropeptides in the attachment process. Lastly, expression of several neuropeptide precursors is associated with ciliary bands, suggesting potential roles for the neuropeptides derived from these precursors in control of larval locomotion and/or feeding. In conclusion, our findings provide novel perspectives on the evolution and development of neuropeptide signaling systems and neuroanatomical insights into neuropeptide function in echinoderm larvae.

摘要

神经肽是一类古老的神经元信号分子,可调节动物体内多种生理和行为过程。许多动物的生命周期包括一个幼虫阶段,在此阶段之后会发生变态转变,进入具有生殖活性的成虫阶段,但除了[某种动物]和其他昆虫外,迄今为止,关于神经肽信号传导的研究主要集中在成年动物上。然而,基因组/转录组测序的最新进展促进了对原口动物(如环节动物[某种环节动物])和后口动物(如尾索动物[某种尾索动物])幼虫中神经肽表达/功能的研究。因此,我们在此报告了对属于棘皮动物门的物种——海星幼虫神经肽前体表达的首次多基因研究。采用全组织mRNA原位杂交技术,在羽腕幼虫和短腕幼虫阶段的幼虫中可视化八种神经肽前体的表达:L型SALMFamide(S1)、F型SALMFamide(S2)、血管加压素/催产素型、NGFFYamide、促甲状腺激素释放激素型、促性腺激素释放激素型、降钙素型和促肾上腺皮质激素释放激素型。在羽腕幼虫中仅观察到三种前体(S1、S2、NGFFYamide)的表达,但到短腕幼虫阶段,检测到了所有八种前体的表达。幼虫神经系统的一个进化保守特征是顶器,在海星幼虫中,顶器由双侧对称的侧神经节组成,但仅发现S1和S2前体在这些神经节中表达。短腕幼虫的一个显著特征是附着复合体,由腕和吸盘组成,在变态前介导幼虫附着于基质。有趣的是,此处检测的所有神经肽前体都在附着复合体中表达,其独特的表达模式表明神经肽在附着过程中可能发挥作用。最后,几种神经肽前体的表达与纤毛带相关,这表明源自这些前体的神经肽在控制幼虫运动和/或摄食方面可能发挥作用。总之,我们的研究结果为神经肽信号系统的进化和发育提供了新的视角,并对棘皮动物幼虫中神经肽的功能提供了神经解剖学见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7728/5130983/b0c275a45637/fnins-10-00553-g0001.jpg

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