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Genotypic Difference in Silicon Uptake and Expression of Silicon Transporter Genes in Rice

机译:水稻吸收硅的基因型差异和水稻转运蛋白基因的表达

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摘要

Rice (Oryza sativa) is a highly silicon (Si)-accumulating species that shows genotypic differences in Si accumulation. We investigated the physiological and molecular mechanisms involved in the genotypic difference in Si uptake between the japonica var. Nipponbare and the indica var. Kasalath. Both the Si concentration in the shoot and the Si uptake per root dry weight were higher in Nipponbare than in Kasalath grown in either soil or nutrient solution. The Si uptake by a single root was also higher in Nipponbare than in Kasalath. A kinetics study showed that Nipponbare and Kasalath had a similar Km value, whereas the Vmax was higher in Nipponbare. The expression of two Si transporter genes (Low silicon rice 1 [Lsi1] and Lsi2) investigated using real-time reverse transcription polymerase chain reaction revealed higher expression of both genes in Nipponbare than in Kasalath. Immunostaining with Lsi1 and Lsi2 antibodies revealed a similar pattern of subcellular localization of these two Si transporters in both varieties; Lsi1 and Lsi2 were localized at the distal and proximal sides, respectively, of both exodermis and endodermis of the roots. These results revealed that the genotypic difference in the Si accumulation results from the difference in abundance of Si transporters in rice roots.
机译:水稻(Oryza sativa)是高度硅(Si)积累的物种,显示出Si积累的基因型差异。我们调查了粳稻之间硅吸收的基因型差异所涉及的生理和分子机制。 Nipponbare和in变种。卡萨拉斯。在Nipponbare中,芽中的Si浓度和每根干重的Si吸收均高于在土壤或营养液中生长的Kasalath。 Nipponbare中单根对Si的吸收也高于Kasalath。动力学研究表明,Nipponbare和Kasalath具有相似的Km值,而Vmax在Nipponbare中更高。使用实时逆转录聚合酶链反应研究的两个硅转运蛋白基因(低硅水稻1 [Lsi1]和Lsi2)的表达揭示了两个基因在日本晴中的表达均高于在Kasalath中。用Lsi1和Lsi2抗体进行的免疫染色显示了这两个Si转运蛋白在两个变种中的亚细胞定位模式相似。 Lsi1和Lsi2分别位于根的真皮层和真皮层的远端和近端。这些结果表明,硅累积量的基因型差异是由水稻根中硅转运体丰度的差异引起的。

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