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鸭跖草科植物车前子种子黏液的积累、储存和释放的新特征。

The novel features of Plantago ovata seed mucilage accumulation, storage and release.

机构信息

Australian Research Council Centre of Excellence in Plant Cell Walls, School of Agriculture, Food and Wine, University of Adelaide, Waite Campus, Urrbrae, SA, 5064, Australia.

Australian Academy of Science, Ian Potter House, 9 Gordon St, Canberra, ACT, 2601, Australia.

出版信息

Sci Rep. 2020 Jul 16;10(1):11766. doi: 10.1038/s41598-020-68685-w.

Abstract

Seed mucilage polysaccharide production, storage and release in Plantago ovata is strikingly different to that of the model plant Arabidopsis. We have used microscopy techniques to track the development of mucilage secretory cells and demonstrate that mature P. ovata seeds do not have an outer intact cell layer within which the polysaccharides surround internal columellae. Instead, dehydrated mucilage is spread in a thin homogenous layer over the entire seed surface and upon wetting expands directly outwards, away from the seed. Observing mucilage expansion in real time combined with compositional analysis allowed mucilage layer definition and the roles they play in mucilage release and architecture upon hydration to be explored. The first emergent layer of hydrated mucilage is rich in pectin, extremely hydrophilic, and forms an expansion front that functions to 'jumpstart' hydration and swelling of the second layer. This next layer, comprising the bulk of the expanded seed mucilage, is predominantly composed of heteroxylan and appears to provide much of the structural integrity. Our results indicate that the synthesis, deposition, desiccation, and final storage position of mucilage polysaccharides must be carefully orchestrated, although many of these processes are not yet fully defined and vary widely between myxospermous plant species.

摘要

车前子种子粘液多糖的合成、储存和释放与模式植物拟南芥有显著的不同。我们利用显微镜技术追踪粘液分泌细胞的发育,并证明成熟的车前子种子没有完整的外层细胞层,多糖围绕着内部的柱状物。相反,脱水的粘液均匀地分布在整个种子表面的一层薄的同质层上,并且在湿润时直接向外扩展,远离种子。实时观察粘液的扩展并结合成分分析,允许定义粘液层,并探索它们在水合时释放和构建中的作用。第一层水合的粘液富含果胶,具有极强的亲水性,并形成一个扩展前沿,起到“启动”第二层的水合和膨胀的作用。接下来的这一层,构成了膨胀的种子粘液的大部分,主要由杂木聚糖组成,似乎提供了大部分的结构完整性。我们的结果表明,粘液多糖的合成、沉积、干燥和最终储存位置必须精心协调,尽管这些过程中的许多还没有完全定义,并且在粘液质植物物种之间差异很大。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cfdc/7366641/27eed3eb8f77/41598_2020_68685_Fig1_HTML.jpg

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