成熟叶片通过将植物激素信号与 ATML1 介导的表皮规范结合起来,产生多层伤口外皮

Jung-Min Lee, Woo-Taek Jeon, Minsoo Han, Myung Kwon, Kyungyoon Kim, Hoon Jung, Geon Heo, Sujeong Je, Yasuyo Yamaoka, Yuree Lee
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引用次数: 0

摘要

植物的表皮是抵御各种压力的保护屏障,但表皮的破损是如何修复的还不十分清楚。在这里,我们研究了拟南芥成熟叶片的伤口愈合。我们发现了一种新型的伤口表皮,它由多层木质化屏障组成,表面覆盖着角质蜡,由采用表皮命运的叶肉细胞形成。位于伤口下方的保护层 1(P1)的中叶细胞转变为表皮细胞,后者通过沉积角质层来密封伤口。随着 P1 层细胞的死亡,位于 P1 层下面的保护层 2(P2)取代了 P1 层,并发生木质化。这种多层外皮涉及乙烯和茉莉酸信号与 ATML1(表皮规范的关键转录因子)的整合,以协调细胞层特异性功能。这种新型的伤口表皮也出现在烟草和帽状花的叶片中,表明这是一种普遍现象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mature leaves produce a multi-layered wound periderm by integrating phytohormone signaling with ATML1-mediated epidermal specification
The epidermis of plants forms a protective barrier against various stress, but how breaches in the epidermis are repaired is not well understood. Here, we investigated wound healing in the mature leaves of Arabidopsis. We discover a novel type of wound periderm comprising a multi-layered ligno-suberized barrier covered with cuticular wax, which is formed by mesophyll cells that adopt an epidermal fate. Mesophyll cells of protective layer 1 (P1), just beneath the wound, transition into epidermal cells, which seal the wound by depositing cuticle. As P1 undergoes cell death, protective layer 2 (P2), which underlies P1, takes the place of P1 and undergoes ligno-suberization. This multi-layered periderm involves integration of ethylene and jasmonic acid signaling with ATML1, a key transcription factor in epidermal specification, to coordinate cell layer-specific functions. This novel wound periderm also occurs in the leaves of tobacco and Capsella, suggesting it is a widespread phenomenon.
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