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基因组时代的红色大型藻类。

Red macroalgae in the genomic era.

机构信息

Department of Algal Development and Evolution, Max Planck Institute for Biology, 72076, Tübingen, Germany.

Department of Biology, The University of Alabama at Birmingham, Birmingham, AL, 35294, USA.

出版信息

New Phytol. 2023 Oct;240(2):471-488. doi: 10.1111/nph.19211. Epub 2023 Aug 30.

Abstract

Rhodophyta (or red algae) are a diverse and species-rich group that forms one of three major lineages in the Archaeplastida, a eukaryotic supergroup whose plastids arose from a single primary endosymbiosis. Red algae are united by several features, such as relatively small intron-poor genomes and a lack of cytoskeletal structures associated with motility like flagella and centrioles, as well as a highly efficient photosynthetic capacity. Multicellular red algae (or macroalgae) are one of the earliest diverging eukaryotic lineages to have evolved complex multicellularity, yet despite their ecological, evolutionary, and commercial importance, they have remained a largely understudied group of organisms. Considering the increasing availability of red algal genome sequences, we present a broad overview of fundamental aspects of red macroalgal biology and posit on how this is expected to accelerate research in many domains of red algal biology in the coming years.

摘要

红藻(或红藻)是一个多样化和丰富的物种群体,形成了古生菌门的三个主要谱系之一,古生菌门是一个真核超级群,其质体起源于单一的初级内共生。红藻有几个共同特征,例如相对较小的内含子缺乏基因组和缺乏与运动相关的细胞骨架结构,如鞭毛和中心粒,以及高效的光合作用能力。多细胞红藻(或大型藻类)是最早进化出复杂多细胞性的真核谱系之一,但尽管它们具有生态、进化和商业重要性,它们仍然是一个在很大程度上被低估的生物群体。考虑到红藻基因组序列的日益普及,我们对红藻生物学的基本方面进行了广泛的概述,并提出了在未来几年内,这将如何加速红藻生物学许多领域的研究。

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