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冬油菜种子和萌发幼苗中离子组的动态变化及其分配。

Dynamics and partitioning of the ionome in seeds and germinating seedlings of winter oilseed rape.

机构信息

Molecular Plant Nutrition group, Department of Physiology and Cell Biology, Leibniz Institute of Plant Genetics and Crop Plant Research, Corrensstr. 3, 06466 Gatersleben, Germany.

出版信息

Metallomics. 2013 Sep;5(9):1316-25. doi: 10.1039/c3mt00109a.

Abstract

Germination and seedling establishment are among the most critical phases in the development of plants, and seed vigour has become an important trait for the selection of robust crop cultivars. Little is known about the potentially limiting role of mineral nutrients in early metabolic and developmental processes during germination. Therefore, we assessed the ionome and relative distribution of mineral elements in different seed and seedling tissues of oilseed rape (Brassica napus L.) and monitored the internal allocation of nutrients during germination. In seeds, cotyledons harboured the main pool of K, P, S, Mg, Fe, Mn and Zn, whereas the seed coat contained most of the Ca, Na, B, Cu and Mo. Although the early root and hypocotyl tissue expanded first, concentrations of most elements were initially low. Re-allocation of elements to the root/hypocotyl tissue from other pools set in two days after seed imbibition and was most rapid for K. Relative to the critical deficiency levels of vegetative tissues, seed tissues were particularly low in B, K and Fe. Further analyses of the ionome of seeds and seedlings, grouped according to their germination efficiency, indicated that in particular low S, Mg and Ca coincided with germination failure. This study documents highly dynamic changes in the ionome of seed and seedling tissues and provides evidence for potentially limiting elements during early germination and seedling establishment in rapeseed.

摘要

发芽和幼苗建立是植物发育过程中最关键的阶段之一,种子活力已成为选择健壮作物品种的重要特征。人们对矿物质营养在发芽过程中早期代谢和发育过程中可能起到的限制作用知之甚少。因此,我们评估了油菜(Brassica napus L.)不同种子和幼苗组织中的离子组和矿物质元素的相对分布,并监测了发芽过程中养分的内部分配。在种子中,子叶贮藏着 K、P、S、Mg、Fe、Mn 和 Zn 的主要库,而种皮则含有大部分 Ca、Na、B、Cu 和 Mo。尽管早期的根和下胚轴组织首先扩张,但大多数元素的浓度最初较低。在种子吸胀两天后,元素从其他库重新分配到根/下胚轴组织,其中钾的重新分配最快。相对于营养组织的临界缺乏水平,种子组织中 B、K 和 Fe 的含量特别低。根据发芽效率对种子和幼苗的离子组进行进一步分析表明,特别是低 S、Mg 和 Ca 与发芽失败有关。本研究记录了种子和幼苗组织离子组的高度动态变化,并为油菜早期发芽和幼苗建立过程中潜在的限制元素提供了证据。

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