蝎子(蛛形纲)端子形态与毒液腺体的共同进化。

IF 1.8 3区 医学 Q4 TOXICOLOGY
Wilson R Lourenço
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引用次数: 54

摘要

与之前对jvatid的贡献一样,本笔记的目的是提供一些关于蝎子生物学特定方面的一般信息。试图解释端子形态和毒腺可能的共同进化,这发生在几亿年间,特别是自从蝎子从水生环境迁移到陆地环境以来。与捕食和防御行为直接相关的因素有三个:(1)螯爪的形态和螯指颗粒的结构;(2)转移瘤的形态,特别是端子的形态;(3)被盖腺向不同类型毒腺的演化。由于一些最近的贡献已经处理了这些方面的一些,我将把我的评论限制在与毒腺进化有关的telson的可能进化上。与以前的文章一样,本文的内容主要针对研究蝎子的非专业人士,他们的研究涵盖了蝎子在几个领域的研究,如毒液毒素和公共卫生。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The coevolution between telson morphology and venom glands in scorpions (Arachnida).

The coevolution between telson morphology and venom glands in scorpions (Arachnida).

The coevolution between telson morphology and venom glands in scorpions (Arachnida).

The coevolution between telson morphology and venom glands in scorpions (Arachnida).

As in previous contributions to the JVATiTD, the aim of this note is to bring some general information on a particular aspect of the scorpion biology. An attempt is made to explain the possible coevolution of telson morphology and venom glands, which took place during several hundred million years and in particular since scorpions migrated from aquatic to terrestrial environments. Three components can be directly associated with predation and defensive behaviours: (1) morphology of the chelae and structure of the chelae fingers granulations; (2) morphology of the metasoma and in particular of the telson; (3) evolution of tegumentary glands in the telson toward different types of venom glands. Since a number of recent contributions already treated some of these aspects, I will limit my comments to the possible evolution of the telson in relation to the evolution of venom glands. As in previous contributions, the content of this article is basically addressed to non-specialists on scorpions whose research embraces scorpions in several fields such as venom toxins and public health.

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来源期刊
CiteScore
4.80
自引率
8.30%
发文量
39
审稿时长
6-12 weeks
期刊介绍: Journal of Venomous Animals and Toxins including Tropical Diseases (JVATiTD) is a non-commercial academic open access publication dedicated to research on all aspects of toxinology, venomous animals and tropical diseases. Its interdisciplinary content includes original scientific articles covering research on toxins derived from animals, plants and microorganisms. Topics of interest include, but are not limited to:systematics and morphology of venomous animals;physiology, biochemistry, pharmacology and immunology of toxins;epidemiology, clinical aspects and treatment of envenoming by different animals, plants and microorganisms;development and evaluation of antivenoms and toxin-derivative products;epidemiology, clinical aspects and treatment of tropical diseases (caused by virus, bacteria, algae, fungi and parasites) including the neglected tropical diseases (NTDs) defined by the World Health Organization.
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