...
首页> 外文期刊>Weed Science: Journal of the Weed Science Society of America >Distinctive potassium-accumulation capability of alligatorweed (Alternanthera philoxeroides) links to high-affinity potassium transport facilitated by K+-uptake systems.
【24h】

Distinctive potassium-accumulation capability of alligatorweed (Alternanthera philoxeroides) links to high-affinity potassium transport facilitated by K+-uptake systems.

机译:短吻鳄(Alternanthera philoxeroides)独特的钾积累能力与钾 + 吸收系统促进的高亲和性钾转运有关。

获取原文
获取原文并翻译 | 示例
           

摘要

Alligatorweed is well known for its potassium (K+)-accumulating capabilities and its strong resistance to undesired growth conditions. The results of this study revealed properties of K+ accumulation and its contribution to drought stress in alligatorweed. In addition, we attempted to characterize the molecular mechanisms of K+ accumulation in this plant. Alligatorweed plants showed a consistent increase in biomass in response to external K+ concentrations, ranging from micromolar levels up to 50 mmol L-1; K+ was also accumulated accordingly in the plants. The stem was the most K+-accumulating organ, accumulating up to 13% of the K+. Moreover, this K+ superaccumulation caused improved resistance to drought stress. The apparent K+ uptake by the roots showed a typical high-affinity property, and the Michaelis constant increased at higher rates of plant K+ in the starting materials. Furthermore, three putative, K+-uptake transporter complementary DNAs (cDNAs) were isolated from alligatorweed (ApKUP1, ApKUP2, and ApKUP3, respectively) using degenerated primers and rapid amplification of cDNA end techniques. The expression of ApKUP1 and ApKUP3 was predominately localized to the leaves, whereas ApKUP2 was expressed throughout the entire plant. The expression of ApKUP1 and ApKUP3 was stimulated in the stems and roots when K+ was depleted from the external medium. Moreover, ApKUP3 expression was enhanced in the stem in response to abscisic acid treatment and drought stress. In conclusion, our findings provide further insight into the mechanisms of K+ accumulation linked to K+ uptake in alligatorweed.
机译:扬子鳄以其钾(K + )积累能力和对不良生长条件的强抵抗力而闻名。研究结果揭示了扬子草中钾 + 的积累特性及其对干旱胁迫的贡献。另外,我们试图表征该植物中K + 积累的分子机制。鳄鱼草植物表现出对外部K + 浓度的响应,生物量持续增加,范围从微摩尔浓度到50 mmol L -1 。 K + 也相应地在植物中积累。茎是最多的K + 积累器官,最多积累K + 的13%。此外,这种K + 的超积累导致对干旱胁迫的抗性增强。根部对表观K + 的吸收表现出典型的高亲和力,并且在起始材料中,Michaelis常数随着植物K + 的增加而增加。此外,使用简并引物和cDNA末端快速扩增技术,从短吻鳄中分离出三个推定的K + 转运蛋白互补DNA(cDNA)(分别为ApKUP1,ApKUP2和ApKUP3)。 ApKUP1和ApKUP3的表达主要定位于叶片,而ApKUP2的表达则遍及整个植物。当K + 从外部培养基中耗尽时,会刺激茎和根中ApKUP1和ApKUP3的表达。此外,响应于脱落酸处理和干旱胁迫,ApKUP3表达在茎中得到增强。总之,我们的发现为进一步了解鳄草中K + 积累与K + 吸收相关的机理提供了进一步的见解。

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