首页> 美国卫生研究院文献>Plant Physiology >Altered Zn Compartmentation in the Root Symplasm and Stimulated Zn Absorption into the Leaf as Mechanisms Involved in Zn Hyperaccumulation in Thlaspi caerulescens
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Altered Zn Compartmentation in the Root Symplasm and Stimulated Zn Absorption into the Leaf as Mechanisms Involved in Zn Hyperaccumulation in Thlaspi caerulescens

机译:根同质体中锌间隔区的改变和刺激 锌参与锌吸收的机制 拟南芥中的过度积累

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摘要

We investigated Zn compartmentation in the root, Zn transport into the xylem, and Zn absorption into leaf cells in Thlaspi caerulescens, a Zn-hyperaccumulator species, and compared them with those of a related nonaccumulator species, Thlaspi arvense. 65Zn-compartmental analysis conducted with roots of the two species indicated that a significant fraction of symplasmic Zn was stored in the root vacuole of T. arvense, and presumably became unavailable for loading into the xylem and subsequent translocation to the shoot. In T. caerulescens, however, a smaller fraction of the absorbed Zn was stored in the root vacuole and was readily transported back into the cytoplasm. We conclude that in T. caerulescens, Zn absorbed by roots is readily available for loading into the xylem. This is supported by analysis of xylem exudate collected from detopped Thlaspi species seedlings. When seedlings of the two species were grown on either low (1 μm) or high (50 μm) Zn, xylem sap of T. caerulescens contained approximately 5-fold more Zn than that of T. arvense. This increase was not correlated with a stimulated production of any particular organic or amino acid. The capacity of Thlaspi species cells to absorb 65Zn was studied in leaf sections and leaf protoplasts. At low external Zn levels (10 and 100 μm), there was no difference in leaf Zn uptake between the two Thlaspi species. However, at 1 mm Zn2+, 2.2-fold more Zn accumulated in leaf sections of T. caerulescens. These findings indicate that altered tonoplast Zn transport in root cells and stimulated Zn uptake in leaf cells play a role in the dramatic Zn hyperaccumulation expressed in T. caerulescens.
机译:我们调查了锌超富集种Thlaspi caerulescens根中的锌区隔,锌转运到木质部和锌吸收到叶细胞中,并将它们与相关的非蓄积种Thlaspi arvense进行了比较。对这两个物种的根进行的 65 Zn室分析表明,大量同质的Zn储存在T. arvense的根液泡中,大概无法装载到木质部中并随后移位拍摄。然而,在青枯菌中,吸收的Zn的较小部分存储在根液泡中,并易于转运回细胞质中。我们得出的结论是,在淡色锥虫中,被根吸收的锌很容易被装载到木质部中。这是通过分析从已灭绝的Thlaspi物种幼苗中收集到的木质部分泌物来支持的。当两个物种的幼苗在低(1μm)或高(50μm)Zn上生长时,木质部树液 蓝藻T.caerulescens含锌量约高5倍 比丁香这个增加不是 与任何特定有机物或 氨基酸。 Thlaspi物种细胞的能力 在叶片和叶片中研究了 65 Zn的吸收 原生质体。在较低的外部锌水平(10和100μm)下, 两者之间的叶片锌吸收没有差异 Thlaspi种。但是,在1毫米处 Zn 2 + ,锌在叶片中积累的2.2倍多 T. caerulescens。这些发现表明, 液泡膜锌在根细胞中的运输和叶中锌的吸收 细胞在大量的锌表达中起作用。 T. caerulescens。

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