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与真核生物中复杂多细胞性相关的分子和功能趋同

Molecular and Functional Convergences Associated with Complex Multicellularity in Eukarya.

作者信息

Pereira Lobo Francisco, Benjamim Dalbert Macedo, da Silva Thieres Tayroni Martins, de Oliveira Maycon Douglas

机构信息

Laboratório de Algoritmos em Biologia, Departamento de Genética, Ecologia e Evolução, Instituto de Ciências Biológicas, Universidade Federal de Minas Gerais, Belo Horizonte, Brazil.

出版信息

Mol Biol Evol. 2025 Feb 3;42(2). doi: 10.1093/molbev/msaf013.

Abstract

A key trait of Eukarya is the independent evolution of complex multicellularity in animals, land plants, fungi, brown algae, and red algae. This phenotype is characterized by the initial exaptation of cell-cell adhesion genes followed by the emergence of mechanisms for cell-cell communication, together with the expansion of transcription factor gene families responsible for cell and tissue identity. The number of cell types is commonly used as a quantitative proxy for biological complexity in comparative genomics studies. While expansions of individual gene families have been associated with variations in the number of cell types within individual complex multicellular lineages, the molecular and functional roles responsible for the independent evolution of complex multicellular across Eukarya remain poorly understood. We employed a phylogeny-aware strategy to conduct a genomic-scale search for associations between the number of cell types and the abundance of genomic components across a phylogenetically diverse set of 81 eukaryotic species, including species from all complex multicellular lineages. Our annotation schemas represent 2 complimentary aspects of genomic information: homology, represented by conserved sequences, and function, represented by Gene Ontology terms. We found many gene families sharing common biological themes that define complex multicellular to be independently expanded in 2 or more complex multicellular lineages, such as components of the extracellular matrix, cell-cell communication mechanisms, and developmental pathways. Additionally, we describe many previously unknown associations of biological themes and biological complexity, such as expansions of genes playing roles in wound response, immunity, cell migration, regulatory processes, and response to natural rhythms. Together, our findings unveil a set of functional and molecular convergences independently expanded in complex multicellular lineages likely due to the common selective pressures in their lifestyles.

摘要

真核生物的一个关键特征是动物、陆地植物、真菌、褐藻和红藻中复杂多细胞性的独立进化。这种表型的特征是细胞间粘附基因最初的适应性改变,随后出现细胞间通讯机制,以及负责细胞和组织身份的转录因子基因家族的扩张。在比较基因组学研究中,细胞类型的数量通常被用作生物复杂性的定量指标。虽然单个基因家族的扩张与单个复杂多细胞谱系中细胞类型数量的变化有关,但负责真核生物中复杂多细胞性独立进化的分子和功能作用仍知之甚少。我们采用了一种系统发育感知策略,在81种系统发育多样的真核生物物种(包括所有复杂多细胞谱系的物种)中,对细胞类型数量与基因组成分丰度之间的关联进行基因组规模的搜索。我们的注释模式代表了基因组信息的两个互补方面:由保守序列表示的同源性和由基因本体术语表示的功能。我们发现许多共享定义复杂多细胞性的共同生物学主题的基因家族在两个或更多复杂多细胞谱系中独立扩张,例如细胞外基质成分、细胞间通讯机制和发育途径。此外,我们描述了许多以前未知的生物学主题与生物复杂性的关联,例如在伤口反应、免疫、细胞迁移、调节过程和对自然节律反应中发挥作用的基因的扩张。总之,我们的发现揭示了一组在复杂多细胞谱系中可能由于其生活方式中的共同选择压力而独立扩张的功能和分子趋同现象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf37/11827588/95bb14484bc2/msaf013f1.jpg

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