...
首页> 外文期刊>Annals of Botany >Temporal dynamics in wheat grain zinc distribution: is sink limitation the key?
【24h】

Temporal dynamics in wheat grain zinc distribution: is sink limitation the key?

机译:小麦籽粒锌分布的时间动态:限制汇聚是关键吗?

获取原文
获取原文并翻译 | 示例
           

摘要

Enhancing the zinc (Zn) concentration in wheat (Triticum aestivum) grain is a breeding objective in order to improve human Zn nutrition. At enhanced plant Zn uptake, grain Zn levels do not increase proportionally and within the grain the endosperm Zn levels remain below grain Zn levels. This study analysed the temporal dynamics of Zn concentrations in grain tissues during grain filling to find major bottlenecks. Plants of two cultivars were grown at 1 and 5 mg Zn kg--1 soil. Individual panicles were harvested 7, 14, 24 or 34 d after their flowering or at maturity and seeds were dissected into constituting tissues, which were analysed for Zn and other minerals. The Zn concentration of the crease was found to increase five- to nine-fold between 7 and 34 d after anthesis, while that of the endosperm decreased by 7 and 45 % when grown at 1 or 5 mg Zn kg--1, respectively. The Zn turnover rate (d--1) in the crease tissues was either independent of the Zn application level or higher at the lower Zn application level, and the Zn concentration increased in the crease tissues with time during grain filling while the turnover rate gradually decreased. There is significant within-seed control over Zn entering the seed endosperm. While the seed crease Zn concentration can be raised to very high levels by increasing external Zn supply, the endosperm Zn concentrations will not increase correspondingly. The limited transfer of Zn beyond the crease requires more research to provide further insight into the rate-determining processes and their location along the pathway from crease to the deeper endosperm
机译:提高小麦(Zn)籽粒中锌(Zn)的含量是提高人类锌营养的育种目标。随着植物对锌的吸收增加,籽粒中的锌含量不会成比例地增加,并且在籽粒中胚乳锌的含量仍低于籽粒锌的含量。这项研究分析了谷物填充过程中谷物组织中锌浓度的时间动态,以发现主要瓶颈。在1和5 mg Zn kg -1 土壤上生长两个品种的植物。在开花或成熟后第7、14、24或34 d收获各个穗,然后将种子解剖成组成组织,分析其锌和其他矿物质。发现在开花后7至34 d之间,折痕的Zn浓度增加5至9倍,而以1或5 mg Zn kg sup --1生长时,胚乳的Zn浓度降低7%至45%。 。折痕组织中锌的周转率(d -1 )与锌的施用水平无关或在较低的Zn施用水平下较高,并且折痕组织中的Zn浓度随时间增加粮食充实的同时周转率逐渐下降。种子内胚乳对锌的控制非常有效。虽然可以通过增加外部锌的供应将种子折痕的Zn浓度提高到很高的水平,但胚乳中的Zn浓度不会相应增加。 Zn超出折痕的有限转移需要更多的研究,以进一步了解速率决定过程及其在从折痕到更深胚乳的路径中的位置

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