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The Rise of Evolutionary Molecular Plant-Microbe Interactions (EvoMPMI).
Plant & Cell Physiology ( IF 4.9 ) Pub Date : 2020-02-15 , DOI: 10.1093/pcp/pcaa007
Shigeyuki Betsuyaku 1, 2
Affiliation  

With the elucidation of the Marchantia polymorpha genome sequence, this liverwort established a strong position as the latest novel model system in plants (Bowman et al. 2017). In addition to its unique phylogenetic placement, its relatively low genetic redundancy in many regulatory processes has attracted the attention of plant biologists interested in using Marchantia as a promising model system for various evolutionary studies of land plants. In particular, the phytohormone signaling pathways involving auxins, jasmonates, abscisic acid and cytokinins, which regulate various developmental processes in Marchantia, have been intensively studied and compared with knowledge obtained from other model plant systems such as Arabidopsis thaliana (Flores-Sandoval et al. 2015, Kato et al. 2015, Eklund et al. 2018, Monte et al. 2018, Aki et al. 2019). These evolutionary developmental biology studies have contributed considerably to understanding the origin and evolution of phytohormone signaling pathways in land plants. Moreover, comparative studies using Marchantia are not only limited to investigating plant developmental biology but also being expanded to understand evolutionary molecular plant–microbe interactions (EvoMPMI) (Upson et al. 2018). However, the establishment of novel Marchantia pathosystems for use in such EvoMPMI studies is a highly laborious process.

中文翻译:

进化分子植物-微生物相互作用(EvoMPMI)的兴起。

通过阐明多形Marcantia多态性基因组序列,该艾蒿已作为植物中最新的新型模型系统确立了强大的地位(Bowman et al.2017)。除了其独特的系统发育位置外,其在许多调控过程中的相对较低的遗传冗余还吸引了有兴趣将Marchantia用作陆地植物各种进化研究的有前途的模型系统的植物生物学家的关注。特别是,已经深入研究了调节生长发育过程中涉及生长素,茉莉酸,脱落酸和细胞分裂素的植物激素信号通路,并将其与从拟南芥等其他模型植物系统获得的知识进行了比较(Flores-Sandoval等。 2015,Kato等人2015,Eklund等人2018,Monte等人2018,Aki等人2019)。这些进化发育生物学研究为理解陆地植物中植物激素信号传导途径的起源和进化做出了巨大贡献。此外,使用Marchantia进行的比较研究不仅限于研究植物发育生物学,而且还扩展了对进化分子植物与微生物相互作用(EvoMPMI)的了解(Upson等人2018)。但是,建立用于这种EvoMPMI研究的新颖的Marchantia病理系统是一个非常费力的过程。使用Marchantia进行的比较研究不仅限于研究植物发育生物学,而且还被扩展为了解进化分子植物与微生物的相互作用(EvoMPMI)(Upson等人2018)。但是,建立用于这种EvoMPMI研究的新颖的Marchantia病理系统是一个非常费力的过程。使用Marchantia进行的比较研究不仅限于研究植物发育生物学,而且还被扩展为了解进化分子植物与微生物的相互作用(EvoMPMI)(Upson等人2018)。但是,建立用于这种EvoMPMI研究的新颖的Marchantia病理系统是一个非常费力的过程。
更新日期:2020-02-28
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