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或亚基功能丧失导致拟南芥根毛对蔗糖和脱落酸的肿胀。

Loss-of-function of or subunits causes the swelling of root hairs in response to sucrose and abscisic acid in Arabidopsis.

机构信息

Facultad de Químico Farmacobiología, Universidad Michoacana de San Nicolás de Hidalgo, Morelia, Michoacán, México.

Instituto de Investigaciones Químico Biológicas, Universidad Michoacana de San Nicolás de Hidalgo, Morelia, México.

出版信息

Plant Signal Behav. 2023 Dec 31;18(1):2191460. doi: 10.1080/15592324.2023.2191460.

Abstract

Root hairs are epidermal cell extensions that increase the root surface for water and nutrient acquisition. Thus, both the initiation and elongation of root hairs are critical for soil exploration and plant adaptation to ever changing growth conditions. Here, we describe the critical roles of two subunits of the Mediator complex, MED12 and MED13, in root hair growth in response to sucrose and abscisic acid, which are tightly linked to abiotic stress resistance. When compared to the WT, and mutants showed increased sensitivity to sucrose and ABA treatments on root meristem and elongation zones that were accompanied with alterations in root hair length and morphology, leading to the isodiametric growth of these structures. The swollen root hair phenotype appeared to be specific, since or mutants did not develop rounded hairs when supplied with 4.8% sucrose. Under standard growth medium, MED12 and MED13 were mainly expressed in root vascular tissues and cotyledons, and their expression was repressed by sucrose or ABA. Interestingly, and mutants manifested exacerbated levels of nitric oxide under normal growth conditions, and upon sucrose supplementation in trichoblast cells, which coincided with root hair deformation. Our results indicate that MED12 and MED13 play non-redundant functions for maintenance of root hair integrity in response to sucrose and ABA and involve nitric oxide as a cellular messenger in .

摘要

根毛是表皮细胞的延伸部分,可增加根的表面,以获取水分和养分。因此,根毛的起始和伸长对于土壤探索和植物适应不断变化的生长条件都至关重要。在这里,我们描述了 Mediator 复合物的两个亚基 MED12 和 MED13 在蔗糖和脱落酸响应中的关键作用,这两者与非生物胁迫抗性紧密相关。与 WT 相比, 和 突变体对根分生组织和伸长区的蔗糖和 ABA 处理更为敏感,伴随着根毛长度和形态的改变,导致这些结构呈等径生长。肿胀的根毛表型似乎是特异性的,因为 或 突变体在供应 4.8%蔗糖时不会发育成圆形毛。在标准生长培养基中,MED12 和 MED13 主要在根维管束组织和子叶中表达,并受到蔗糖或 ABA 的抑制。有趣的是, 和 突变体在正常生长条件下表现出增强的一氧化氮水平,并且在三梭形细胞中补充蔗糖时,根毛变形。我们的结果表明,MED12 和 MED13 在蔗糖和 ABA 响应中发挥非冗余的功能来维持根毛完整性,并涉及一氧化氮作为细胞信使在 中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/69f2/10038024/54bfb0ee8e42/KPSB_A_2191460_F0001_OC.jpg

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