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玉米籽粒离子组中硅吸收、积累相关基因的表达及硅与其他元素的相关性

Expression of Genes for Si Uptake, Accumulation, and Correlation of Si with Other Elements in Ionome of Maize Kernel.

作者信息

Bokor Boris, Ondoš Slavomír, Vaculík Marek, Bokorová Silvia, Weidinger Marieluise, Lichtscheidl Irene, Turňa Ján, Lux Alexander

机构信息

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

Comenius University Science ParkBratislava, Slovakia.

出版信息

Front Plant Sci. 2017 Jun 19;8:1063. doi: 10.3389/fpls.2017.01063. eCollection 2017.

Abstract

The mineral composition of cells, tissues, and organs is decisive for the functioning of the organisms, and is at the same time an indicator for understanding of physiological processes. We measured the composition of the ionome in the different tissues of maize kernels by element microanalysis, with special emphasis on silicon (Si). We therefore also measured the expression levels of the Si transporter genes , and , responsible for Si uptake and accumulation. Two weeks after pollination and genes were expressed, and expression continued until the final developmental stage of the kernels, while was not expressed. These results suggest that exclusively ZmLsi1 and ZmLsi6 are responsible for Si transport in various stages of kernel development. Expression level of genes was consistent with Si accumulation within kernel tissues. Silicon was mainly accumulated in pericarp and embryo proper and the lowest Si content was detected in soft endosperm and the scutellum. Correlation linkages between the distribution of Si and some other elements (macroelements Mg, P, S, N, P, and Ca and microelements Cl, Zn, and Fe) were found. The relation of Si with Mg was detected in all kernel tissues. The Si linkage with other elements was rather specific and found only in certain kernel tissues of maize. These relations may have effect on nutrient uptake and accumulation.

摘要

细胞、组织和器官的矿物质组成对生物体的功能起着决定性作用,同时也是理解生理过程的一个指标。我们通过元素微量分析测定了玉米籽粒不同组织中的离子组组成,特别关注了硅(Si)。因此,我们还测定了负责硅吸收和积累的硅转运蛋白基因Zm Lsi1、Zm Lsi6和Zm Lsi2的表达水平。授粉两周后,Zm Lsi1和Zm Lsi6基因开始表达,并持续至籽粒发育的最后阶段,而Zm Lsi2未表达。这些结果表明,只有Zm Lsi1和Zm Lsi6负责籽粒发育各个阶段的硅转运。Zm Lsi基因的表达水平与籽粒组织中的硅积累一致。硅主要积累在果皮和胚中,而在软胚乳和盾片中检测到的硅含量最低。我们发现了硅与其他一些元素(大量元素镁、磷、硫、氮、钾和钙以及微量元素氯、锌和铁)分布之间的相关联系。在所有籽粒组织中都检测到了硅与镁的关系。硅与其他元素的联系具有相当的特异性,仅在玉米的某些籽粒组织中发现。这些关系可能会影响养分的吸收和积累。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b125/5474966/520406f22bce/fpls-08-01063-g001.jpg

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