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玉米发育中的气孔复合体中细胞壁基质材料的时空多样化

Spatio-temporal diversification of the cell wall matrix materials in the developing stomatal complexes of Zea mays.

作者信息

Giannoutsou E, Apostolakos P, Galatis B

机构信息

Section of Botany, Department of Biology, National and Kapodistrian University of Athens, 15784, Athens, Greece.

出版信息

Planta. 2016 Nov;244(5):1125-1143. doi: 10.1007/s00425-016-2574-7. Epub 2016 Jul 26.

DOI:10.1007/s00425-016-2574-7
PMID:27460945
Abstract

The matrix cell wall materials, in developing Zea mays stomatal complexes are asymmetrically distributed, a phenomenon appearing related to the local cell wall expansion and deformation, the establishment of cell polarity, and determination of the cell division plane. In cells of developing Zea mays stomatal complexes, definite cell wall regions expand determinately and become locally deformed. This differential cell wall behavior is obvious in the guard cell mother cells (GMCs) and the subsidiary cell mother cells (SMCs) that locally protrude towards the adjacent GMCs. The latter, emitting a morphogenetic stimulus, induce polarization/asymmetrical division in SMCs. Examination of immunolabeled specimens revealed that homogalacturonans (HGAs) with a high degree of de-esterification (2F4- and JIM5-HGA epitopes) and arabinogalactan proteins are selectively distributed in the extending and deformed cell wall regions, while their margins are enriched with rhamnogalacturonans (RGAs) containing highly branched arabinans (LM6-RGA epitope). In SMCs, the local cell wall matrix differentiation constitutes the first structural event, indicating the establishment of cell polarity. Moreover, in the premitotic GMCs and SMCs, non-esterified HGAs (2F4-HGA epitope) are preferentially localized in the cell wall areas outlining the cytoplasm where the preprophase band is formed. In these areas, the forthcoming cell plate fuses with the parent cell walls. These data suggest that the described heterogeneity in matrix cell wall materials is probably involved in: (a) local cell wall expansion and deformation, (b) the transduction of the inductive GMC stimulus, and

摘要

在发育中的玉米气孔复合体中,基质细胞壁物质呈不对称分布,这一现象似乎与局部细胞壁的扩张和变形、细胞极性的建立以及细胞分裂平面的确定有关。在发育中的玉米气孔复合体细胞中,特定的细胞壁区域会有确定的扩张并发生局部变形。这种细胞壁的差异行为在保卫细胞母细胞(GMCs)和向相邻GMCs局部突出的副卫细胞母细胞(SMCs)中很明显。后者发出形态发生刺激,诱导SMCs极化/不对称分裂。对免疫标记标本的检查显示,高度去酯化的同型半乳糖醛酸聚糖(HGAs,2F4-和JIM5-HGA表位)和阿拉伯半乳聚糖蛋白选择性地分布在延伸和变形的细胞壁区域,而其边缘富含含有高度分支阿拉伯聚糖的鼠李半乳糖醛酸聚糖(RGAs,LM6-RGA表位)。在SMCs中,局部细胞壁基质分化是第一个结构事件,表明细胞极性的建立。此外,在有丝分裂前的GMCs和SMCs中,未酯化的HGAs(2F4-HGA表位)优先定位在勾勒出形成前期带的细胞质的细胞壁区域。在这些区域,即将形成的细胞板与母细胞壁融合。这些数据表明,所描述的基质细胞壁物质的异质性可能参与:(a)局部细胞壁的扩张和变形,(b)诱导性GMC刺激的转导,以及

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