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A Field-Based Analysis of Genetic Improvement for Grain Yield in Winter Wheat Cultivars Developed in the US Central Plains from 1992 to 2014

机译:1992-2014年美国中部平原地区开发的冬小麦品种籽粒产量遗传改良的田间实地分析

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Progress in plant breeding programs is the result of creating and selecting new lines with novel allele combinations that perform better than their parents. This year-on-year improvement is known as genetic gain and is a function of genetic diversity, selection accuracy, selection intensity, and selection cycle time. To estimate the gain in wheat (Triticum aestivum L.) breeding in the US Central Plains, lines that were submitted to the collaborative Southern Regional Performance Nursery (SRPN) between 1992 and 2014 were grown in a common nursery for 3 yr at two locations in a single-replicate augmented block design. Moderate to high broad-sense heritability was observed for plant height (Hsup2/sup = 0.88), heading date (Hsup2/sup = 0.79), and grain yield (Hsup2/sup = 0.41). From the common grow-out, genetic gain for yield over the time period was estimated at 1.1% yrsup?1/sup, whereas individual breeding program genetic gain varied between 0.3 and 1.9% yrsup?1/sup. Increases in Kansas state on-farm yields during the same period showed a nonsignificant trend of 0.13% yrsup?1/sup with large year-to-year variation. These results suggest that although progress is being made in US Central Plains breeding programs, a yield gap remains that could be attributable to genetic progress not being realized in on-farm production.
机译:植物育种计划的进步是使用新的等位基因组合创建和选择新品系的结果,这些新的等位基因组合的表现优于其亲本。这种逐年提高的情况称为遗传增益,是遗传多样性,选择准确性,选择强度和选择周期的函数。为了估算美国中部平原上小麦(Triticum aestivum L.)育种的收益,在1992年至2014年之间提交给合作的南部区域性能苗圃(SRPN)的品系在一个普通苗圃中的两个地方种植了3年。单复制增强块设计。观察到株高(H 2 = 0.88),抽穗期(H 2 = 0.79)和谷物产量(H 2 = 0.41)。从共同的成年期来看,该时期的产量遗传增益估计为1.1%yr ?1 ,而单个育种程序的遗传增益在0.3%和1.9%yr ?1 < / sup>。同期堪萨斯州农作物单产的增加显示0.13%yr ?1 的趋势不显着,且年际差异很大。这些结果表明,尽管美国中原育种计划正在取得进展,但单产差距仍然可能归因于农场生产中未实现的遗传进步。

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