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The Moss Physcomitrium (Physcomitrella) patens: A Model Organism for Non-Seed Plants

机译:苔藓Physcomitrium(Physomcomitralla)的水分:非种子植物的模型生物体

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摘要

Physcomitrella patens by homologous recombination, this moss has been a premier model system to study evolutionary developmental biology questions, stem cell reprogramming, and the biology of nonvascular plants. P. patens was the first non-seed plant to have its genome sequenced. With this level of genomic information, together with increasing molecular genetic tools, a large number of reverse genetic studies have propelled the use of this model system. A number of technological advances have recently opened the door to forward genetics as well as extremely efficient and precise genome editing in P. patens. Additionally, careful phylogenetic studies with increased resolution have suggested that P. patens emerged from within Physcomitrium. Thus, rather than Physcomitrella patens, the species should be named Physcomitrium patens. Here we review these advances and describe the areas where P. patens has had the most impact on plant biology.
机译:Physcomitrella通过同源重组来蛋白,这款苔藓一直是学习进化发育生物学问题,干细胞重编程和非血管植物生物学的首屈一指的模型系统。 P. Patens是第一个有基因组测序的非种子植物。 随着这种水平的基因组信息,随着分子遗传工具的增加,大量反向遗传研究推动了这种模型系统的使用。 最近,许多技术进步最近开启了前往遗传学以及在P. Putens中的极其有效和精确的基因组编辑。 此外,具有增加的分辨率的仔细系统发育研究表明,P.在PhysComitulium内出现了P. 因此,而不是Physcomitrella Patens,物种应被命名为PhysComitulium patens。 在这里,我们审查了这些进展,并描述了P. Patens对植物生物学影响最大的领域。

著录项

  • 来源
    《The Plant Cell》 |2020年第5期|共16页
  • 作者单位

    Philipps Univ Marburg Fac Biol Plant Cell Biol D-35037 Marburg Hesse Germany;

    Univ Connecticut Dept Ecol &

    Evolutionary Biol Storrs CT 06269 USA;

    Philipps Univ Marburg Fac Biol Plant Cell Biol D-35037 Marburg Hesse Germany;

    Dartmouth Coll Dept Biol Sci Hanover NH 03755 USA;

    Dartmouth Coll Dept Biol Sci Hanover NH 03755 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物细胞学;
  • 关键词

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