Evolution and development of evolutionary novelties during anuran ontogenesis
Evolution and development of evolutionary novelties during anuran ontogenesis
批准号:
418528051
负责人:
Dr. Paul Lukas
金额:
$0.0万
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
2019
资助国家:
德国
项目状态:
已结题
起止时间:
2018-12-31 至 2022-12-31
中文摘要
进化新奇性是使生物体中的新功能或进一步专门化祖先功能的形态结构。这些创新是如何进化的,以及哪些机制导致了它们的发展,是发育生物学领域的基本问题。无尾目蝌蚪软骨骨骼的组成在脊椎动物中是独一无二的。蝌蚪的下颚由两个额外的软骨组成。上喙软骨是上颚的一部分,而下喙软骨是幼虫无尾两栖类下颚的一部分。 颈下软骨位于两个Meckel软骨的前尖之间。在喙下软骨和梅克尔软骨之间存在独特的下颌内关节。有几种无尾两栖动物进一步发展出额外的软骨。根据它们各自的位置,这些软骨被称为亚梅克尔,admandalian或adrostral软骨。遗传信号控制着生物体的个体发育,并确保其以某种方式发展,必须对进化和进化新奇事物的发展负责。非洲爪蟾的研究表明,nkx基因bapx 1和zax可能参与了下喙软骨和前喙软骨的进化。我们将研究三种不同青蛙的肌肉骨骼发育,以获得对无尾类个体发生的全面概述。本概述将提供有关肌肉骨骼发育顺序的信息,关于特定的食性对发育的影响,以及关于几种无尾类新奇动物的特定发育。此外,选择nkx基因的进化和发展的影响,这些novelities.We将研究肌肉骨骼形态发生使用经典的组织学和现代的方法,如免疫组织化学,共聚焦激光扫描显微镜和μ-计算机断层扫描。为了研究和操纵各种nkx基因的基因表达,将使用药理学物质和CRISPR/Cas9。本研究将利用整体原位杂交技术和定量PCR技术研究蛙肌骨骼发育过程中基因的时空表达,这将极大地拓宽我们对蛙肌骨骼发育的认识。此外,它将促进我们对进化新奇事物进化机制的理解。
英文摘要
Evolutionary novelties are morphological structures that enable new functions or further specialize ancestral functions in an organism. How such innovations evolved and which mechanisms led to their development are essential questions in the field of developmental biology.The composition of the cartilaginous skeleton of anuran tadpoles is unique among vertebrates. The jaw of tadpoles consists of two additional cartilages. The suprarostral cartilage is part of the upper jaw, whereas the infrarostral cartilage is part of the lower jaw of larval anurans. The infrarostral cartilage is situated between the anterior tips of the two Meckel´s cartilages. Between the infrarostral and Meckel´s cartilage the unique intramandibular joint is present. Several anurans exist which develop further additional cartilages. Depending on their respective position, these cartilages are called sub-meckelian, admandibular or adrostral cartilage. Genetic signaling, which controls ontogenesis of an organism and ensures that it develops in a certain way, must be responsible for the evolution and development of evolutionary novelties. Investigations in Xenopus laevis have shown that the the nkx-genes bapx1 and zax may have been involved in the evolution of the infrarostral and adrostral cartilage.We will investigate the musculoskeletal development of three different frogs to obtain a comprehensive overview on the ontogenesis of anurans. This overview will provide information about the sequence of the musculoskeletal development, about the influence of the specific feeding habit on the development and about the specific development of several anuran novelties. Additionally, the influence of selected nkx-genes on the evolution and development of these novelties will be investigated.We will study musculoskeletal morphogenesis using classic histology and modern approaches such as immunohistochemistry, confocal laser scanning microscopy and μ-computed tomography. To investigate and manipulate the gene expression of various nkx-genes, pharmacological substances and CRISPR/Cas9 will be used. Spatial and temporal gene expression will be studied using whole mount in situ hybridization and quantitative PCR.This project will significantly expand our knowledge of the musculoskeletal development of larval frogs. Furthermore, it will advance our understanding of the mechanisms responsible for the evolution of evolutionary novelties.
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Skeletal and dental development of larval batrachians: The influence of developmental processes on the evolution of novelties and the evolution of neobatrachian diversity.
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批准号:532830077
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项目类别:Research Grants
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资助金额:$0.0万
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财政年份:--
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负责人:Dr. Paul Lukas
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