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两种阔叶树种中硅积累的层特异性定位。

Lamina-specific localization of silicon accumulation in two broadleaf tree species.

机构信息

Graduate School of Agriculture, Kyoto University, Kitashirakawa Oiwakecho, Sakyo-ku, Kyoto, 606-8502, Japan.

Graduate School of Life Science, Tohoku University, Aramakiji Aoba 6-3, Aoba-ku, Sendai, 980-8578, Japan.

出版信息

J Plant Res. 2023 Sep;136(5):659-663. doi: 10.1007/s10265-023-01467-3. Epub 2023 May 30.

Abstract

Silicon (Si) accumulation differs greatly among plant species, as revealed by an increasing number of studies reporting whole-leaf Si concentration for a wide range of land plants. Yet, we have limited knowledge about Si distribution across leaf parts (e.g., lamina vs. veins) within a leaf of eudicots. Here, we report how Si accumulation with leaf age differs among petiole, midrib, and lamina in two broad-leaved trees, Acer rufinerve and Ficus erecta. We marked a pair of neighboring leaves in each marked shoot and harvested one in May and the other in October to measure Si concentration. In both species, the lamina showed much higher Si concentration than the petiole and vein in both young and old leaves, and only the lamina showed clear increases in Si concentration from young to old leaves. Si accumulation rate correlated positively with shoot size and leaf production in F. erecta but not in A. rufinerve. These results strongly suggest that, in eudicot species, Si is deposited mostly in leaf lamina but in only a negligible amount in petioles and veins through which Si dissolved in water is transported. Future research on physiological regulations of Si accumulation in eudicot species should consider which specific cells in leaf lamina are responsible for such highly localized Si deposition.

摘要

硅(Si)在不同植物物种之间的积累差异很大,越来越多的研究报告表明,许多陆生植物的整叶 Si 浓度存在差异。然而,我们对于双子叶植物叶片内不同部位(例如,叶片和叶脉)的 Si 分布情况知之甚少。在这里,我们报告了两种阔叶树, Acer rufinerve 和 Ficus erecta,其叶柄、中脉和叶片随叶片年龄的 Si 积累差异。我们在每个标记的芽上标记了一对相邻的叶子,并在 5 月和 10 月收获一片叶子以测量 Si 浓度。在这两个物种中,叶片的 Si 浓度明显高于叶柄和叶脉,无论是在幼叶还是老叶中,并且只有叶片的 Si 浓度从幼叶到老叶明显增加。Si 积累率与 F. erecta 中的芽大小和叶片产量呈正相关,但在 A. rufinerve 中则没有。这些结果强烈表明,在双子叶植物中,Si 主要沉积在叶片中,但在叶柄和叶脉中沉积量可忽略不计,因为 Si 是在水中溶解后通过这些部位运输的。未来对双子叶植物 Si 积累的生理调节的研究应该考虑叶片中哪些特定细胞负责这种高度本地化的 Si 沉积。

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