普氏藻
生物
孢子体
苔藓植物
配子体
苔藓纲
基因
拟南芥
转录因子
转录组
拟南芥
进化发育生物学
进化生物学
遗传学
植物
基因表达
花粉
突变体
作者
Carlos Ortiz‐Ramírez,Marcela Hernández-Coronado,Anna Thamm,Bruno Catarino,Mingyi Wang,Liam Dolan,José A. Feijó,Jörg D. Becker
标识
DOI:10.1016/j.molp.2015.12.002
摘要
Identifying the genetic mechanisms that underpin the evolution of new organ and tissue systems is an aim of evolutionary developmental biology. Comparative functional genetic studies between angiosperms and bryophytes can define those genetic changes that were responsible for developmental innovations. Here, we report the generation of a transcriptome atlas covering most phases in the life cycle of the model bryophyte Physcomitrella patens, including detailed sporophyte developmental progression. We identified a comprehensive set of sporophyte-specific transcription factors, and found that many of these genes have homologs in angiosperms that function in developmental processes such as flowering and shoot branching. Deletion of the PpTCP5 transcription factor results in development of supernumerary sporangia attached to a single seta, suggesting that it negatively regulates branching in the moss sporophyte. Given that TCP genes repress branching in angiosperms, we suggest that this activity is ancient. Finally, comparison of P. patens and Arabidopsis thaliana transcriptomes led us to the identification of a conserved core of transcription factors expressed in tip-growing cells. We identified modifications in the expression patterns of these genes that could account for developmental differences between P. patens tip-growing cells and A. thaliana pollen tubes and root hairs.
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