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Developmental and physiological traits associated with high yield and stay-green phenotype in wheat

机译:小麦高产和保持绿色表型的发育和生理特性

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摘要

Water availability is a key limiting factor in wheat production in the northern grain belt of Australia. Varieties with improved adaptation to such conditions are actively sought. The CIMMYT wheat line SeriM82 has shown a significant yield advantage in multi-environment screening trials in this region. The objective of this study was to identify the physiological basis of the adaptive traits underpinning this advantage. Six detailed experiments were conducted to compare the growth, development, and yield of SeriM82 with that of the adapted cultivar, Hartog. The experiments were undertaken in field environments that represented the range of moisture availability conditions commonly encountered by winter crops grown on the deep Vertosol soils of this region. The yield of SeriM82 was 6–28% greater than that of Hartog, and SeriM82 exhibited a stay-green phenotype by maintaining green leaf area longer during the grain-filling period in all environments where yield was significantly greater than Hartog. However, where the availability of deep soil moisture was limited, SeriM82 failed to exhibit significantly greater yield or to express the stay-green phenotype. Thus, the stay-green phenotype was closely associated with the yield advantage of SeriM82. SeriM82 also exhibited higher mean grain mass than Hartog in all environments. It is suggested that small differences in water use before anthesis, or greater water extraction from depth after anthesis, could underlie the stay-green phenotype. The inability of SeriM82 to exhibit stay-green and higher yield where deep soil moisture was depleted indicates that extraction of deep soil moisture is important.
机译:可用水量是澳大利亚北部粮食带小麦生产的关键限制因素。积极寻求对这种条件适应性得到改善的品种。 CIMMYT小麦品系SeriM82在该地区的多环境筛选试验中显示出显着的产量优势。这项研究的目的是确定支撑这一优势的适应性状的生理基础。进行了六个详细的实验,以比较SeriM82与改良品种Hartog的生长,发育和产量。实验是在田间环境中进行的,该环境代表了该地区深层Vertosol土壤上生长的冬季作物通常遇到的水分利用条件的范围。 SeriM82的产量比Hartog高出6–28%,在所有产量明显高于Hartog的环境中,SeriM82通过在灌浆期保持更长的绿叶面积而表现出保持绿色的表型。但是,在深层土壤水分可利用性有限的地方,SeriM82不能表现出明显更高的产量或无法表现出保持绿色的表型。因此,保持绿色的表型与SeriM82的产量优势紧密相关。在所有环境中,SeriM82还表现出比Hartog更高的平均颗粒质量。建议在花期前用水量的较小差异,或在花期后从深度提取更多的水,可能是保持绿色表型的基础。在土壤深层水分枯竭的情况下,SeriM82无法表现出持久的绿色和较高的产量,这表明提取土壤深层水分很重要。

著录项

  • 来源
    《Crop and Pasture Science》 |2008年第4期|p.354-364|共11页
  • 作者单位

    A Queensland Department of Primary Industries and Fisheries, Leslie Research Centre, PO Box 2282,Toowoomba, Qld 4350, Australia. B Center for Development Research (ZEF), University of Bonn, 53113 Bonn, Germany. C Agricultural Production Systems Research Unit, School of Crop, Land and Food Sciences, The University of Queensland, Brisbane, Qld 4072, Australia. D Queensland Department of Primary Industries and Fisheries, Hermitage Research Station, MS 508,Warwick, Qld 4370, Australia. E Corresponding author. Email: jack.christopher@dpi.qld.gov.au;

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

    drought adaptation, SeriM82.;

    机译:干旱适应;SeriM82。;

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