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通过精氨酸对苔藓小立碗藓配子体茎形成的代谢调控

Metabolic Control of Gametophore Shoot Formation through Arginine in the Moss Physcomitrium patens.

作者信息

Kawade Kensuke, Horiguchi Gorou, Hirose Yuu, Oikawa Akira, Hirai Masami Yokota, Saito Kazuki, Fujita Tomomichi, Tsukaya Hirokazu

机构信息

Exploratory Research Center on Life and Living Systems (ExCELLS), 5-1, Higashiyama, Myodaiji, Okazaki, Aichi 444-8787, Japan; National Institute for Basic Biology, 38 Nishigonaka, Myodaiji, Okazaki, Aichi 444-8585, Japan; Department of Basic Biology, School of Life Science, Graduate University for Advanced Studies (SOKENDAI), 38 Nishigonaka, Myodaiji, Okazaki, Aichi 444-8585, Japan; RIKEN Center for Sustainable Resource Science (CSRS), 1-7-22, Suehiro, Tsurumi, Yokohama, Kanagawa 230-0045, Japan.

Department of Life Science, College of Science, Rikkyo University, 3-34-1 Nishi-Ikebukuro, Toshima-ku, Tokyo 171-8501, Japan; Research Center for Life Science, Rikkyo University, 3-34-1 Nishi-Ikebukuro, Toshima-ku, Tokyo 171-8501, Japan.

出版信息

Cell Rep. 2020 Sep 8;32(10):108127. doi: 10.1016/j.celrep.2020.108127.

Abstract

Shoot formation is accompanied by active cell proliferation and expansion, requiring that metabolic state adapts to developmental control. Despite the importance of such metabolic reprogramming, it remains unclear how development and metabolism are integrated. Here, we show that disruption of ANGUSTIFOLIA3 orthologs (PpAN3s) compromises gametophore shoot formation in the moss Physcomitrium patens due to defective cell proliferation and expansion. Trans-omics analysis reveals that the downstream activity of PpAN3 is linked to arginine metabolism. Elevating arginine level by chemical treatment leads to stunted gametophores and causes Ppan3 mutant-like transcriptional changes in the wild-type plant. Furthermore, ectopic expression of AtAN3 from Arabidopsis thaliana ameliorates the defective arginine metabolism and promotes gametophore formation in Ppan3 mutants. Together, these findings indicate that arginine metabolism is a key pathway associated with gametophore formation and provide evolutionary insights into the establishment of the shoot system in land plants through the integration of developmental and metabolic processes.

摘要

芽的形成伴随着活跃的细胞增殖和扩展,这要求代谢状态适应发育控制。尽管这种代谢重编程很重要,但发育与代谢如何整合仍不清楚。在这里,我们表明,由于细胞增殖和扩展存在缺陷,小立碗藓中狭叶基因3直系同源物(PpAN3s)的破坏会损害配子体芽的形成。转录组学分析表明,PpAN3的下游活性与精氨酸代谢有关。通过化学处理提高精氨酸水平会导致配子体发育不良,并在野生型植物中引起类似Ppan3突变体的转录变化。此外,拟南芥AtAN3的异位表达改善了精氨酸代谢缺陷,并促进了Ppan3突变体中配子体的形成。总之,这些发现表明精氨酸代谢是与配子体形成相关的关键途径,并通过发育和代谢过程的整合,为陆地植物芽系统的建立提供了进化见解。

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