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首页> 外文期刊>Crop and Pasture Science >Yield and components of seed yield of indeterminate narrow-leafed lupin (Lupinus angustifolius L.) subjected to transient water deficit
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Yield and components of seed yield of indeterminate narrow-leafed lupin (Lupinus angustifolius L.) subjected to transient water deficit

机译:短暂水分亏缺的不确定性阔叶羽扇豆羽扇豆(Lupinus angustifolius L.)的产量和种子产量组成

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摘要

The effect of transient water deficits on seed yield and components of seed yield of narrow-leafed lupin was measured in plants grown in a controlled environment under simulated field conditions. Lupins were grown in large columns of soil and transient water deficits were induced at pod set on the mainstem and first-order apical branches by withholding water for a 5-day period. Soil water content, leaf water potential, turgor pressure, and leaf conductance declined similarly during each period of transient water deficit. Differences in these parameters were apparent 2 days after water was withheld, and over the 5-day period, leaf water potential declined to −1.3 MPa and leaf conductance fell to 44% of the well-watered controls. Total dry matter per plant was reduced by the transient water deficit treatments. The reduction resulted from less accumulation of dry matter on the first, second, and third order apical branches. Leaf area on these branches was also reduced by abscission of the leaves after the water deficit was released. Seed yield per plant after each period of transient water deficit was reduced by 30–33%, relative to the well-watered controls. The reduction was largely due to a reduction in seed yield on the branches, mainly because they had fewer pods and seeds per pod. Seed dry weight and harvest index were not significantly affected by each period of transient water deficit. We conclude that differences in final seed yield between the well- watered controls and the transient water deficit treatments resulted from differences in pod number and seeds per pod. Low dry matter accumulation and reduction in leaf area on the first- and second-order apical branches under the transient water deficit were associated with the differences. Whereas the differences in pod number generated differences in the size of the reproductive sink, the differences in leaf area generated differences in the source capacity for assimilates for pod set and pod-filling.
机译:在模拟田间条件下,在受控环境中生长的植物中,测量了短暂水分亏缺对窄叶羽扇豆种子产量和种子产量组成的影响。羽扇豆生长在大块土壤中,并通过禁水5天,在主干和一级顶端分支的荚果上引起短暂的水分亏缺。在每个短暂的缺水时期,土壤含水量,叶片水势,膨胀压力和叶片电导率都类似地下降。这些参数的差异在停水2天后就很明显,并且在5天的时间内,叶片水势下降至-1.3 MPa,叶片电导率下降至灌溉良好的对照组的44%。瞬时缺水处理减少了每株植物的总干物质。减少的原因是干物质在第一,第二和第三阶顶端分支上的积聚较少。水分缺乏后,叶片的脱落也减少了这些树枝上的叶面积。相对于灌溉良好的对照,每个短暂缺水期后每株种子的产量降低了30–33%。减少的主要原因是树枝上的种子产量减少,主要是因为它们的豆荚和每个豆荚的种子较少。种子的干重和收获指数不受短暂缺水的每个时期的显着影响。我们得出的结论是,浇水良好的对照和瞬时缺水处理之间最终种子产量的差异是由于豆荚数量和每个豆荚种子的差异所致。干物质的低积累和瞬时水分亏缺下一,二阶根尖叶面积的减少与差异有关。豆荚数量的差异会导致生殖池大小的差异,而叶面积的差异会导致豆荚集和豆荚填充同化物的来源能力差异。

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  • 来源
    《Crop and Pasture Science》 |1999年第7期|p.1225-1232|共8页
  • 作者单位

    ACSIRO Plant Industry, Centre for Mediterranean Agricultural Research, Private Bag, PO Wembley,WA 6014, Australia.B Cooperative Research Centre for Legumes in Mediterranean Agriculture, University of Western Australia, Nedlands, WA 6907, Australia.C Institute of Soil and Water, Agricultural Research Organization, The Volcani Center, PO Box 6, Bet Dagan, Israel.D Corresponding author;

    email: j.palta@ccmar.csiro.au;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    water stress, grain legume, water potential, seed filling.;

    机译:水分胁迫;豆类作物;水势;种子填充。;

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