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拟南芥种皮木栓化需要ATP结合盒G23。

ATP-binding cassette G23 is required for Arabidopsis seed coat suberization.

作者信息

Kim Ryeo Jin, Zhang Yuyang, Suh Mi Chung

机构信息

Department of Life Science, Sogang University, Seoul 04107, Republic of Korea.

Department of Life Science, Sogang University, Seoul 04107, Republic of Korea.

出版信息

Plant Sci. 2025 Mar;352:112361. doi: 10.1016/j.plantsci.2024.112361. Epub 2024 Dec 17.

Abstract

Suberin is an extracellular hydrophobic polymer deposited in seed coats that acts as a barrier to regulate the movement of ions, water, and gases, and protects seeds against pathogens. However, the molecular mechanisms underlying suberin deposition in the seed coat remain unknown. In this study, the in planta role of ATP-binding cassette G23 (ABCG23) was investigated in the Arabidopsis seed coat. ABCG23 transcripts were predominantly expressed in the outer integument1 (oi1) of seed coats and the endodermal cells of roots. The fluorescence of the eYFP:ABCG23 construct was observed in the plasma membranes of the tobacco epidermis, seed coat oi1, and root endodermal cells. Seed coats of abcg23-1 and abcg23-2 mutants exhibited reduced autofluorescence under UV light and increased permeability to tetrazolium salts. Total suberin loads and major suberin components, C24 ω-hydroxy fatty acids and 1, ω-dicarboxylic acids were significantly decreased in the mutant seed coats. The ratio of seed germination and seedling establishment of abcg23-1 and abcg23-2 was significantly reduced compared to the WT under salt and osmotic stress conditions. The bimolecular fluorescence complementation assay showed homodimeric interactions of ABCG-2, -6, -20, and -23 and heterodimeric interactions between ABCG23 and ABCG-2, -6, -11, or -20. Our findings indicate that ABCG23 contributes to the transport of suberin monomers in the Arabidopsis seed coats.

摘要

木栓质是一种沉积在种皮中的细胞外疏水聚合物,它作为一种屏障来调节离子、水和气体的移动,并保护种子免受病原体侵害。然而,种皮中木栓质沉积的分子机制仍然未知。在本研究中,对拟南芥种皮中ATP结合盒G23(ABCG23)在植物体内的作用进行了研究。ABCG23转录本主要在种皮的外珠被1(oi1)和根的内皮层细胞中表达。在烟草表皮、种皮oi1和根内皮层细胞的质膜中观察到eYFP:ABCG23构建体的荧光。abcg23-1和abcg23-2突变体的种皮在紫外光下表现出降低的自发荧光,并且对四唑盐的通透性增加。突变体种皮中的总木栓质含量以及主要木栓质成分C24 ω-羟基脂肪酸和1, ω-二羧酸显著降低。在盐胁迫和渗透胁迫条件下,与野生型相比,abcg23-1和abcg23-2的种子萌发率和幼苗成活率显著降低。双分子荧光互补分析显示ABCG-2、-6、-20和-23之间存在同二聚体相互作用,以及ABCG23与ABCG-2、-6、-11或-20之间存在异二聚体相互作用。我们的研究结果表明,ABCG23有助于拟南芥种皮中木栓质单体的运输。

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