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Increasing Hard Winter Wheat Yield Potential via Synthetic Wheat: I. Path-Coefficient Analysis of Yield and Its Components

机译:通过合成小麦提高硬小麦的单产潜力:I.单产及其组成的路径系数分析

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Synthetic hexaploid wheat, created from a cross between durum [Triticum turgidum L. (syn. Triticum durum Desf.)] and Aegilops tauschii Coss., is a good source of new genes for bread wheat (Triticum aestivum L.) improvement. The purpose of this research was to evaluate the potential and performance of synthetic wheat in Texas. Ten elite primary synthetics from the International Maize and Wheat Improvement Center (CIMMYT) were backcrossed to two Texas cultivars, TAM 111 and TAM 112. Populations were bulked and a€?modified bulkeda€? to advance generations. Yield-related agronomic traits were measured on the BCF4 and BCF5 populations across five Texas locations. Improvement was observed in South Texas and the Blacklands, which had more disease pressure and fewer intermittent dry spells than locations in the Texas Rolling and High Plains. Selected bulks were not superior to nonselected bulks. Head number per unit area had the highest correlation with yield. Similar to crosses with spring wheat, synthetics contributed to yield through an increase in seed weight. Synthetic populations that produced higher grain yield than both TAM 111 and TAM 112 maintained their large seed size and weight but had increased number of heads and grains per head. Poorer performance in environments with harsh winters could be because of a lack of winter-hardiness in the primary synthetics. Improved yield could result from selecting for increased number of heads per unit area and grains per head in lines derived from these populations.
机译:合成六倍体小麦是由硬质小麦(Triticum turgidum L.(syn。Triticum durum Desf。)]和Aegilops tauschii Coss。杂交而成,是面包小麦改良(Triticum aestivum L.)的新基因的良好来源。这项研究的目的是评估德克萨斯州合成小麦的潜力和表现。将来自国际玉米和小麦改良中心(CIMMYT)的十种主要原生合成物回交到两个得克萨斯品种TAM 111和TAM 112。进步一代。在得克萨斯州五个地点的BCF4和BCF5种群上测量了与产量相关的农艺性状。与得克萨斯州滚动和高平原地区相比,南得克萨斯州和黑地地区的病害压力更大,间歇性干旱少,情况有所改善。选择的批量不优于未选择的批量。每单位面积的头数与产量的相关性最高。类似于与春小麦杂交,合成物通过增加种子重量来提高产量。产量高于TAM 111和TAM 112的合成种群保持了较大的种子大小和重量,但每头的头数和谷粒数量增加。在恶劣的冬季环境中性能较差可能是由于主要合成材料缺乏耐寒性。通过选择从这些种群中获得的品系中每单位面积的头数和每头谷物的增加,可以提高产量。

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