生物
江蓠
基因组
藻类
红藻
内共生
比较基因组学
基因组学
进化生物学
植物
生态学
质体
基因
遗传学
叶绿体
作者
Agnieszka P. Lipinska,Stacy A. Krueger‐Hadfield,Olivier Godfroy,Simon M. Dittami,Lígia Ayres-Ostrock,Guido Bonthond,Loraine Brillet-Guéguen,Susana M. Coelho,Erwan Corre,Guillaume Cossard,Christophe Destombe,Paul Epperlein,Sylvain Faugeron,Elizabeth Ficko‐Blean,Jessica Beltrán,Emma Lavaut,Arthur Le Bars,Fabiana Marchi,Stéphane Mauger,Gurvan Michel
摘要
Abstract Macroalgal (seaweed) genomic resources are generally lacking as compared with other eukaryotic taxa, and this is particularly true in the red algae (Rhodophyta). Understanding red algal genomes is critical to understanding eukaryotic evolution given that red algal genes are spread across eukaryotic lineages from secondary endosymbiosis and red algae diverged early in the Archaeplastids. The Gracilariales is a highly diverse and widely distributed order including species that can serve as ecosystem engineers in intertidal habitats and several notorious introduced species. The genus Gracilaria is cultivated worldwide, in part for its production of agar and other bioactive compounds with downstream pharmaceutical and industrial applications. This genus is also emerging as a model for algal evolutionary ecology. Here, we report new whole-genome assemblies for two species (Gracilaria chilensis and Gracilaria gracilis), a draft genome assembly of Gracilaria caudata, and genome annotation of the previously published Gracilaria vermiculophylla genome. To facilitate accessibility and comparative analysis, we integrated these data in a newly created web-based portal dedicated to red algal genomics (https://rhodoexplorer.sb-roscoff.fr). These genomes will provide a resource for understanding algal biology and, more broadly, eukaryotic evolution.
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