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Soybean breeding strategy for Pakistan: Genotype x environment interaction and stability for soybean yield.

机译:巴基斯坦的大豆育种策略:基因型x环境的相互作用和大豆产量的稳定性。

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摘要

The experimental material comprising of nine soybean cultivars were planted during two seasons (spring and autumn) at four locations for three years 1992–94. Cultural operations were done when needed. Variances due to genotypes, environments and genotypes x environment interaction were highly significant for days to flowering, days to maturity, plant height, first mature pod height, 100 seed weight, number of pods per plant, oil content and yield. Whereas analysis of variance for number of seeds per pod showed nonsignificant differences for genotypes, environment and their interaction, ‘NARC-III’, ‘NARC-IV’ and ‘Swat-84’ showed stability, in general, for days to flowering and ‘NARC-IV’ and ‘Swat-84’ showed stability in maturity. In plant height, ‘NARC-III’ and ‘NARC-IV’ performed better in good environmental conditions. ‘Harper’ showed stability for pod height, whereas ‘NARC-V’ was found stable for number of pods per plant while ‘Harper’, ‘Swat-84’ and ‘Williams-84 showed moderate stability for number of pods per plant. All genotypes showed differential response and stability for 100 seed weight. ‘NARC-III’ and ‘NARC-IV’ exhibited stability while ‘FS-85’ and ‘William-82’ showed stability for 100-seed weight. ‘Harper’ and ‘NARC-III’ had the highest oil content. ‘NARC-III’, ‘NARC-IV’ and ‘NARC-V’ were found stable and high yielding in low rainfall areas like Fatehjang and NARC. During spring, ‘NARC-III’ proved to be a better stable genotype for Gujranwala while ‘NARC-IV’ for Multan and ‘NARC-V’ for NARC are recommended due to their high yield potential. ‘NARC-V’ showed wider adaptability and hence it was identified as a stable genotype on overall basis. A plant breeding model has been described which will be very useful for the development of soybean cultivars as well as other commodities for different ecological zones in Pakistan.
机译:在1992-94年的三年中,在两个季节(春季和秋季)在四个地点播种了由9个大豆品种组成的实验材料。需要时进行文化操作。基因型,环境和基因型x环境相互作用引起的变异在开花天数,成熟天数,植物高度,初熟荚果高度,100种子重量,每株荚果数,含油量和产量方面都非常显着。对每个荚果种子数的方差分析显示,基因型,环境及其相互作用之间无显着差异,而'NARC-III','NARC-IV'和'Swat-84'总体而言在开花期和NARC-IV”和“ Swat-84”显示出成熟的稳定性。在植物高度上,“ NARC-III”和“ NARC-IV”在良好的环境条件下表现更好。 “ Harper”对豆荚高度显示稳定,而“ NARC-V”对每个植物的豆荚数量稳定,而“ Harper”,“ Swat-84”和“ Williams-84”对每个植物的豆荚数量表现出中等稳定性。所有基因型均表现出100粒重的差异反应和稳定性。 'NARC-III'和'NARC-IV'表现出稳定性,而'FS-85'和'William-82'表现出100种种子重量的稳定性。 “哈珀”和“ NARC-III”的含油量最高。在法塔江和NARC等低降雨地区,发现“ NARC-III”,“ NARC-IV”和“ NARC-V”稳定且高产。在春季,古吉兰瓦拉(Gijranwala)的'NARC-III'基因型被证明是更好的稳定基因型,而木兰(Multan)的'NARC-IV'和NARC的'NARC-V'因其高产潜力而被推荐。 “ NARC-V”具有更强的适应性,因此从整体上被认为是稳定的基因型。已经描述了一种植物育种模型,该模型将对巴基斯坦不同生态区的大豆品种以及其他商品的开发非常有用。

著录项

  • 作者

    Khan, Muhammad Aslam.;

  • 作者单位

    Michigan State University.;

  • 授予单位 Michigan State University.;
  • 学科 Agriculture Plant Culture.; Agriculture Agronomy.; Biology Genetics.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 p.2130
  • 总页数 160
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 作物生物学原理、栽培技术与方法;
  • 关键词

  • 入库时间 2022-08-17 11:46:28

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