High temperature perception in leaves promotes vascular regeneration and graft formation in distant tissues

Phanu T. Serivichyaswat, K. Bartusch, Martina Leso, Constance Musseau, Akira Iwase, Yu Chen, K. Sugimoto, M. Quint, Charles W. Melnyk
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引用次数: 10

Abstract

ABSTRACT Cellular regeneration in response to wounding is fundamental to maintain tissue integrity. Various internal factors including hormones and transcription factors mediate healing, but little is known about the role of external factors. To understand how the environment affects regeneration, we investigated the effects of temperature upon the horticulturally relevant process of plant grafting. We found that elevated temperatures accelerated vascular regeneration in Arabidopsis thaliana and tomato grafts. Leaves were crucial for this effect, as blocking auxin transport or mutating PHYTOCHROME INTERACTING FACTOR 4 (PIF4) or YUCCA2/5/8/9 in the cotyledons abolished the temperature enhancement. However, these perturbations did not affect grafting at ambient temperatures, and temperature enhancement of callus formation and tissue adhesion did not require PIF4, suggesting leaf-derived auxin specifically enhanced vascular regeneration in response to elevated temperatures. We also found that elevated temperatures accelerated the formation of inter-plant vascular connections between the parasitic plant Phtheirospermum japonicum and host Arabidopsis, and this effect required shoot-derived auxin from the parasite. Taken together, our results identify a pathway whereby local temperature perception mediates long distance auxin signaling to modify regeneration, grafting and parasitism. This article has an associated ‘The people behind the papers’ interview.
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叶片的高温感知促进远处组织的维管再生和移植物形成
损伤后的细胞再生是维持组织完整性的基础。包括激素和转录因子在内的多种内部因素介导愈合,但对外部因素的作用知之甚少。为了了解环境对植物再生的影响,我们研究了温度对植物嫁接园艺相关过程的影响。我们发现,升高的温度加速了拟南芥和番茄移植物的血管再生。叶片对这种效应至关重要,因为阻断生长素运输或子叶中光敏色素相互作用因子4 (PIF4)或YUCCA2/5/8/9的突变会消除温度增强。然而,这些扰动并不影响在室温下的嫁接,并且愈伤组织形成和组织粘附的温度增强不需要PIF4,这表明叶片来源的生长素特异性地增强了响应高温的血管再生。我们还发现,升高的温度加速了寄生植物Phtheirospermum japonicum和寄主拟南芥(Arabidopsis)之间植物间维管连接的形成,而这种作用需要来自寄生植物的茎源生长素。综上所述,我们的研究结果确定了一种途径,即局部温度感知介导长距离生长素信号,从而改变再生、嫁接和寄生。这篇文章有一个相关的“报纸背后的人”采访。
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