生物
分生组织
卷柏属
转录组
拟南芥
原基
生长素
植物进化
基因组
血管组织
维管植物
植物
拟南芥
细胞生物学
进化生物学
基因
遗传学
基因表达
古生物学
突变体
物种丰富度
作者
Wu Liu,Gui Cai,Ning Zhai,Hua Wang,Tengfei Tang,Yuyun Zhang,Zhiyao Zhang,Lijun Sun,Yijing Zhang,Tom Beeckman,Lin Xu
出处
期刊:Current Biology
[Elsevier BV]
日期:2023-09-15
卷期号:33 (19): 4085-4097.e5
被引量:6
标识
DOI:10.1016/j.cub.2023.08.061
摘要
The evolution of roots allowed vascular plants to adapt to land environments. Fossil evidence indicates that roots evolved independently in euphyllophytes (ferns and seed plants) and lycophytes, the two lineages of extant vascular plants. Based on a high-quality genome assembly, mRNA sequencing (mRNA-seq) data, and single-cell RNA-seq data for the lycophyte Selaginella kraussiana, we show that the two root origin events in lycophytes and euphyllophytes adopted partially similar molecular modules in the regulation of root apical meristem (RAM) development. In S. kraussiana, the RAM initiates from the rhizophore primordium guided by auxin and duplicates itself by dichotomous branching. The auxin signaling pathway directly upregulates euAINTEGUMENTAb (SkeuANTb), and then SkeuANTb directly promotes the expression of SkeuANTa and the WUSCHEL-RELATED HOMEOBOX13b (SkWOX13b) for RAM maintenance, partially similar to the molecular pathway involving the euANT-branch PLETHORA (AtPLT) genes and AtWOX5 in root initiation in the seed plant Arabidopsis thaliana. Other molecular modules, e.g., SHORT-ROOT and SCARECROW, also have partially similar expression patterns in the RAMs of S. kraussiana and A. thaliana. Overall, our study not only provides genome and transcriptome tools of S. kraussiana but also indicates the employment of some common molecular modules in RAMs during root origins in lycophytes and euphyllophytes.
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