Department of Biology, University of Kentucky, 101 Thomas Hunt Morgan Building, Lexington, KY, 40506, USA.
Department of Botany, University of British Columbia, 6270 University Boulevard, Vancouver, BC, V6T 1Z4, Canada.
Sci Rep. 2019 Jun 19;9(1):8722. doi: 10.1038/s41598-019-45039-9.
We present a draft genome assembly for the tropical liverwort, Marchantia inflexa, which adds to a growing body of genomic resources for bryophytes and provides an important perspective on the evolution and diversification of land plants. We specifically address questions related to sex chromosome evolution, sexual dimorphisms, and the genomic underpinnings of dehydration tolerance. This assembly leveraged the recently published genome of related liverwort, M. polymorpha, to improve scaffolding and annotation, aid in the identification of sex-linked sequences, and quantify patterns of sequence differentiation within Marchantia. We find that genes on sex chromosomes are under greater diversifying selection than autosomal and organellar genes. Interestingly, this is driven primarily by divergence of male-specific genes, while divergence of other sex-linked genes is similar to autosomal genes. Through analysis of sex-specific read coverage, we identify and validate genetic sex markers for M. inflexa, which will enable diagnosis of sex for non-reproductive individuals. To investigate dehydration tolerance, we capitalized on a difference between genetic lines, which allowed us to identify multiple dehydration associated genes two of which were sex-linked, suggesting that dehydration tolerance may be impacted by sex-specific genes.
我们呈现了热带苔类植物弯叶蔓绿绒的基因组草图组装,这为苔藓植物的基因组资源增添了新内容,并为陆地植物的进化和多样化提供了重要视角。我们特别关注与性染色体进化、性二态性以及脱水耐受性的基因组基础有关的问题。该组装利用了最近发表的相关苔类植物弯叶蔓绿绒的基因组,以改进支架和注释,帮助识别性连锁序列,并量化 Marchantia 内序列分化的模式。我们发现,性染色体上的基因比常染色体和细胞器基因受到更大的多样化选择压力。有趣的是,这主要是由雄性特异性基因的分歧驱动的,而其他性连锁基因的分歧与常染色体基因相似。通过对性特异性读段覆盖度的分析,我们确定并验证了弯叶蔓绿绒的遗传性别标记,这将使非繁殖个体的性别诊断成为可能。为了研究脱水耐受性,我们利用了遗传系之间的差异,这使我们能够识别多个与脱水相关的基因,其中两个是性连锁的,这表明脱水耐受性可能受到性别特异性基因的影响。