...
首页> 外文期刊>Metallomics. integrated biometal science >Endosperm prevents toxic amounts of Zn from accumulating in the seed embryo - an adaptation to metalliferous sites in metal-tolerant Biscutella laevigata
【24h】

Endosperm prevents toxic amounts of Zn from accumulating in the seed embryo - an adaptation to metalliferous sites in metal-tolerant Biscutella laevigata

机译:胚乳防止Zn积聚在种子胚胎中的毒性 - 一种适应金属耐受性Biscutella Laevata的金属位点

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Seed germination represents the first crucial stage in the life cycle of a plant, and the seed must contain all necessary transition elements for the development and successful establishment of the seedling. Problematically, seed development and germination are often hampered by elevated metal(loid) concentrations in industrially polluted soils, making their revegetation a challenging task. Biscutella laevigata L. (Brassicaceae) is a rare perennial pseudometallophyte that can tolerate high concentrations of trace metal elements. Yet, the strategies of this and other plant species to ensure reproductive success at metalliferous sites are poorly understood. Here we characterized several parameters of germination and used synchrotron X-ray fluorescence microscopy to investigate the spatial distribution and concentration of elements within B. laevigata seeds from two metallicolous and two non-metallicolous populations. We find that average germination time was shorter and the seed weight was lower in the metallicolous compared to the non-metallicolous populations. By allowing for at least two generations within one growth season, relatively fast germination at metalliferous sites accelerates microevolutionary processes and likely enhances the potential of metallicolous accessions to adapt to environmental stress. We also identified different strategies of elemental accumulation within seed tissues between populations. Particularly interesting patterns were observed for zinc, which was found in 6-fold higher concentrations in the endosperm of metallicolous compared to non-metallicolous populations. This indicates that the endosperm protects the seed embryo from accumulating toxic concentrations of metal(loid)s, which likely improves reproductive success. Hence, we conclude that elemental uptake regulation by the seed endosperm is associated with enhanced metal tolerance and adaptation to metalliferous environments in B. laevigata.
机译:种子萌发代表了植物生命周期中的第一个关键阶段,种子必须含有所有必要的过渡元素,用于开发和成功建立幼苗。有问题的是,种子发育和萌发经常受到在工业上污染的土壤中的升高(懒惰)浓度的阻碍,使其恢复成为一个具有挑战性的任务。 Biscutella Laevigata L.(Brassicaceae)是一种罕见的多年生假素,可耐受高浓度的痕量金属元素。然而,这种和其他植物物种的策略,以确保在算命地点的生殖成功都很清楚。在这里,我们特征在于萌发和使用同步X射线荧光显微镜的几个参数,以研究来自两种金属色和两个非金属色种群的B. Laevigata种子内的空间分布和浓度。我们发现平均萌发时间较短,与非金属色群相比,金属溶血中的种子重量较低。通过允许在一个生长季节内至少两代,冶金部位的相对较快的萌发加速了微型方差工艺,并且可能增强了金属溶解的潜力,以适应环境压力。我们还确定了种群之间种子组织内的不同策略。对于锌,观察到特别有趣的图案,其与非金属色群相比,在金属粒子的胚乳中的6倍浓度中被发现。这表明胚乳保护种子胚累积累积金属毒性浓度(懒惰),这可能提高了生殖成功。因此,我们得出结论,种子胚乳的元素摄取调节与B. Laevigata的B. Laevigata中的金属环境增强,适应性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号