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枣椰树中硅的吸收与定位——与厚壁组织的独特关联

Silicon Uptake and Localisation in Date Palm () - A Unique Association With Sclerenchyma.

作者信息

Bokor Boris, Soukup Milan, Vaculík Marek, Vd'ačný Peter, Weidinger Marieluise, Lichtscheidl Irene, Vávrová Silvia, Šoltys Katarína, Sonah Humira, Deshmukh Rupesh, Bélanger Richard R, White Philip J, El-Serehy Hamed A, Lux Alexander

机构信息

Department of Plant Physiology, Faculty of Natural Sciences, Comenius University in Bratislava, Bratislava, Slovakia.

Comenius University Science Park, Bratislava, Slovakia.

出版信息

Front Plant Sci. 2019 Aug 13;10:988. doi: 10.3389/fpls.2019.00988. eCollection 2019.

Abstract

Date palm () can accumulate as much as 1% silicon (Si), but not much is known about the mechanisms inherent to this process. Here, we investigated in detail the uptake, accumulation and distribution of Si in date palms, and the phylogeny of Si transporter genes in plants. We characterized the PdNIP2 transporter following heterologous expression in oocytes and used qPCR to determine the relative expression of Si transporter genes. Silicon accumulation and distribution was investigated by light microscopy, scanning electron microscopy coupled with X-ray microanalysis and Raman microspectroscopy. We proved that codes for a functional Si-permeable protein and demonstrated that transporter genes were constitutively expressed in date palm. Silicon aggregates/phytoliths were found in specific stegmata cells present in roots, stems and leaves and their surfaces were composed of pure silica. Stegmata were organized on the outer surface of the sclerenchyma bundles or associated with the sclerenchyma of the vascular bundles. Phylogenetic analysis clustered NIP2 transporters of the Arecaceae in a sister position to those of the Poaceae. It is suggested, that Si uptake in date palm is mediated by a constitutively expressed Si influx transporter and accumulated as Si aggregates in stegmata cells abundant in the outer surface of the sclerenchyma bundles (fibers).

摘要

海枣()能够积累高达1%的硅(Si),但对于这一过程所固有的机制却知之甚少。在此,我们详细研究了海枣中硅的吸收、积累和分布,以及植物中硅转运蛋白基因的系统发育。我们在卵母细胞中进行异源表达后对PdNIP2转运蛋白进行了表征,并使用qPCR来确定硅转运蛋白基因的相对表达。通过光学显微镜、扫描电子显微镜结合X射线微分析和拉曼显微光谱研究了硅的积累和分布。我们证明了 编码一种功能性的硅通透蛋白,并表明 转运蛋白基因在海枣中组成性表达。在根、茎和叶中存在的特定硅质细胞中发现了硅聚集体/植硅体,其表面由纯二氧化硅组成。硅质细胞组织在厚壁组织束的外表面,或与维管束的厚壁组织相关。系统发育分析将棕榈科的NIP2转运蛋白聚类在与禾本科的NIP2转运蛋白的姐妹位置。有人认为,海枣对硅的吸收是由组成性表达的硅流入转运蛋白介导的,并作为硅聚集体积累在厚壁组织束(纤维)外表面丰富的硅质细胞中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff9f/6701203/6d8377d7747c/fpls-10-00988-g001.jpg

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