...
首页> 外文期刊>Field Crops Research >Genotypic consistency in the expression of leaf water potential in rice (Oryza sativa L.).
【24h】

Genotypic consistency in the expression of leaf water potential in rice (Oryza sativa L.).

机译:水稻(Oryza sativa L.)叶片水势表达的基因型一致性。

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

Early work has shown variation in the grain yield of rice cultivars grown under water stress conditions to be associated with the plant water status, mainly with the maintenance of high leaf water potential (LWP) at flowering and grain filling stage. Considerable variation for LWP among rice varieties has been recorded. The present work was designed to investigate genotypic consistency in water potential within the plant and under canopy manipulation to vary plant water requirement. In a glasshouse experiment, with six rice genotypes, a consistent water potential gradient from stem base to leaf tip has been observed. Leaf tip water potential has been found as the minimum LWP that can be recorded at any time of stress. Genotypes with similar canopy size could maintain different levels of LWP under stress conditions. In a field experiment, with four selected lines, four canopy sizes and two canopy mixture treatments were introduced prior to the imposition of control, mild and severe water stress conditions. It was found that the line differences in LWP and relative water content (RWC) were expressed under both mild and severe stress conditions, regardless of canopy size, tiller number and whether they were mixed with another line with different capacity to maintain LWP. Although there were some differences among canopy size treatments for radiation interception in three water conditions, canopy manipulation (plant size) within a line did not affect the expression of LWP and hence genotypic variation in LWP was maintained. Under both glasshouse and field conditions, lines that maintained high LWP had larger xylem diameter and stem areas than those that had low LWP. The results indicated that the size of the vascular bundles could influence the maintenance of plant water relations under water deficit..
机译:早期工作表明,在水分胁迫条件下生长的水稻品种的籽粒产量与植物的水分状况有关,主要与开花和灌浆期维持高叶水势(LWP)有关。水稻品种中LWP的变化很大。本工作旨在调查植物内以及在冠层操纵下改变植物需水量的水势的基因型一致性。在温室实验中,有六种水稻基因型,观察到从茎基到叶尖的水势梯度一致。已发现叶尖水势是在任何压力下均可记录的最小LWP。在胁迫条件下,具有相似冠层大小的基因型可以维持不同水平的LWP。在野外试验中,在施加控制,轻度和重度水分胁迫条件之前,先对四种选择的品系进行了介绍,介绍了四种冠层大小和两种冠层混合物处理方法。发现在轻度和重度胁迫条件下,LWP和相对含水量(RWC)的品系差异均表现出来,与冠层大小,分till数以及是否与具有不同能力的其他品系保持LWP无关。尽管在三种水条件下,遮盖大小处理之间在放射线截留方面存在一些差异,但在行内遮盖处理(植物大小)不会影响LWP的表达,因此LWP的基因型变异得以维持。在温室和野外条件下,维持高LWP的品系的木质部直径和茎面积要比保持低LWP的品系更大。结果表明,在缺水条件下,维管束的大小可能影响植物水分关系的维持。

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