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蚓螈头部和尾部的皮肤腺体浓度适应了不同的进化压力。

Skin gland concentrations adapted to different evolutionary pressures in the head and posterior regions of the caecilian Siphonops annulatus.

机构信息

Instituto Butantan, São Paulo, Brazil.

Utah State University, Logan, UT, USA.

出版信息

Sci Rep. 2018 Feb 23;8(1):3576. doi: 10.1038/s41598-018-22005-5.

Abstract

Amphibian skin is rich in mucous glands and poison glands, secreting substances important for gas exchange and playing a fundamental role in chemical defense against predators and microorganisms. In the caecilian Siphonops annulatus (Mikan, 1920) we observed a concentration of enlarged mucous glands in the head region. In the posterior region of the body a similar concentration is made up of enlarged poison glands. These accumulations of glands structurally resemble the macroglands previously reported in anurans and salamanders. The skin glands in these regions are each surrounded by collagen walls forming a honeycomb-like structure. The collagen network in the head region firmly attaches to tiny pits in the bones of the skull. The two extremities of the body produce different secretions, containing exclusive molecules. Considering the fossorial lifestyle of caecilians, it seems evident that the secretions of the head and caudal region serve different functions. The anterior macrogland of mucous glands, rich in mucous/lipid secretion, in conjunction with the funnel-shaped head, may act to lubricate the body and penetrate the soil, thus facilitating locomotion underground. The blunt posterior end bearing an internalized macrogland of poison glands in the dermis may act in chemical defense and/or by blocking invasion of tunnels.

摘要

两栖动物的皮肤富含黏液腺和毒腺,这些腺体分泌的物质对于气体交换非常重要,并在化学防御方面发挥着重要作用,可以抵御捕食者和微生物的侵害。在蚓螈目 Caecilia 科的索氏蚓螈(Siphonops annulatus)中,我们观察到头部区域有大量增大的黏液腺聚集。在身体的后躯区域,也有类似的大量增大的毒腺聚集。这些腺体的聚集结构类似于先前在蛙类和蝾螈中报道的大型腺体。这些区域的皮肤腺体被胶原壁包围,形成蜂窝状结构。头部区域的胶原网络紧紧附着在颅骨的微小凹陷处。身体的两个末端产生不同的分泌物,含有独特的分子。考虑到蚓螈的穴居生活方式,头部和尾部区域的分泌物似乎具有不同的功能。富含黏液/脂质分泌的大型前部黏液腺,与漏斗形的头部一起,可能起到润滑身体和穿透土壤的作用,从而促进地下运动。后端钝圆,真皮内有一个内化的毒腺大型腺体,可能在化学防御和/或阻止隧道入侵方面发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1424/5824806/85f9edad6df8/41598_2018_22005_Fig1_HTML.jpg

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