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Genetic Trends in Winter Wheat Grain Quality with Dual-Purpose and Grain-Only Management Systems

机译:双重目的和仅谷物管理系统的冬小麦籽粒品质遗传趋势

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Hard winter wheat (Triticum aestivum L.) grain harvested from a dual-purpose (forage plus grain) crop is often perceived by users to have inferior end-use quality compared with that of a grain-only crop. In this paper, we determine if that perception has a scientific basis and if long-term genetic changes in grain quality are equally expressed under two management systems commonly practiced in the southern Great Plains. Uniform trials were established under grain-only and dual purpose management systems, each featuring whole-plot treatments of a foliar fungicide and split-plot treatments of 12 hard red winter (HRW) wheat cultivars spanning nearly 80 yr of genetic improvement. The study was conducted for 4 yr at the Wheat Pasture Research Center near Marshall, OK. Dual-purpose experiments were grazed from November through late February or early March of each year. Variables measured were kernel hardness, grain protein, flour yield, mixing time and tolerance, large-kernel fraction, kernel weight, and kernel diameter. The effect of fungicide treatment was not significant. Cultivar ?— system interactions were generally absent, and the correlation between management systems varied from r = 0.74 to 0.99 (P 0.01), indicating a high level of consistency in quality between systems. Kernel weight in the dual-purpose system did not reach the same level as in the grain-only system for some cultivars, though kernel diameter was not negatively affected. Grain protein and dough strength, measured by mixing time and tolerance, were unaffected by management system. Significant genetic progress was observed in both systems for only the physical quality attributes (kernel weight and diameter, and percent large kernels). With exception of kernel weight, we detected no detrimental effect of the dual-purpose management system on cultivar performance, or on cultivar differences associated with breeding, for several characteristics commonly used to estimate bread wheat quality.
机译:与双谷物作物相比,从双用途(牧草加谷物)作物中收获的硬冬小麦(Triticum aestivum L.)谷物的最终使用质量通常较差。在本文中,我们确定这种认识是否具有科学依据,以及是否在大平原南部通常实行的两种管理制度下平等地表达了谷物品质的长期遗传变化。在仅谷物和双重用途管理系统下建立了统一试验,每项试验均采用叶面杀菌剂的全田处理和12个跨越近80年遗传改良的硬红冬小麦(HRW)品种的分田处理。该研究在俄克拉荷马州马歇尔附近的小麦牧场研究中心进行了4年。每年11月至2月下旬或3月初放牧进行双重用途的实验。所测量的变量包括籽粒硬度,谷物蛋白,面粉产量,混合时间和耐受性,大籽粒分数,籽粒重量和籽粒直径。杀菌剂处理的效果不明显。通常不存在品种-系统交互作用,管理系统之间的相关性从r = 0.74到0.99(P <0.01)不等,表明系统之间质量的高度一致性。对于某些品种,两用系统中的籽粒重量未达到与仅谷物系统中相同的水平,尽管籽粒直径没有受到负面影响。通过混合时间和耐受性测得的谷物蛋白质和面团强度不受管理系统的影响。在两个系统中,仅物理质量属性(籽粒重量和直径以及大籽粒百分比)观察到了显着的遗传进展。除籽粒重量外,对于通常用于估算面包小麦品质的几个特征,我们没有发现双重用途管理系统对品种性能或与育种相关的品种差异没有有害影响。

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