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Exploring the differences between organic and conventional breeding in early vigour traits of winter wheat

机译:冬小麦早期活力特征探索有机与常规育种的差异

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Breeding for organic systems may be done as pure line or population breeding. Early vigour, critical to organic systems, was compared for different winter wheat breeding origins in a hydroponic system, as well as in the field. Entries were: the F-15 of composite cross populations (CCP5), based on high yielding (Y), high quality (Q) or Y*Q varietal intercrosses after 11 generations evolving under organic management; four organically bred; four conventionally bred baking quality varieties; a hybrid bread wheat and a high yielding variety. Hydroponic traits corresponded well with ground cover and plant height measured in the field. The organically evolved Q and YQ CCP5, organic varieties 'Poesie', 'Butaro' and 'Tobias' and the conventional 'Capo' were best suited for organic conditions. Compared to most modern varieties, CCPs had fewer seminal roots, their roots tended to be thicker and their root systems heavier, suggesting specific adaptation to penetration into deeper soil zones. Conventionally bred 'Capo' exhibits a diverse combination of root traits adaptive to a variable range of soil and environmental conditions, which may contribute to higher nutrient-use efficiency. Average root diameter of conventional E-varieties (0.28 mm) was significantly lower compared to organic varieties or the Q/YQ CCPs (both 0.30 mm). Specific root length of conventional E-varieties (17.5 cm mg(-1)) was significantly higher than for organic varieties (15.9 cm mg(-1)) and both differed from the Q and YQ CCPs (14.3 cm mg(-1)). Seminal root length and shoot length were identified as reasonable non-destructive predictors for direct selection within segregating materials and populations.
机译:有机系统的育种可以作为纯线或种群育种。对有机系统至关重要的早期活力,对水培系统中的不同冬小麦繁殖起源以及领域进行了比较。参赛作品是:复合交叉群的F-15(CCP5),基于高产(Y),高质量(Q)或Y * Q品种交互,后11代在有机管理下不断发展;四个有机繁殖;四个常规繁殖的烘焙质量品种;杂交面包小麦和高产品种。水培状量对应良好的地面盖和植物高度在该领域测量。有机进展的Q和YQ CCP5,有机品种的“Poesie”,'Butaro'和'Tobias'和传统的“Capo”最适合有机条件。与大多数现代品种相比,CCP具有更少的精体根,其根部往往较厚,根系系统较重,表明对渗透到深层土壤区域的特殊适应。传统上繁殖的'capo'表现出自适应的根部特征的不同组合,适应可变的土壤和环境条件,这可能导致营养利用效率更高。与有机品种或Q / YQ CCP(0.30mm)相比,常规E-品种的平均直径(0.28mm)明显低得多。常规E-品种的特异性根长度(17.5cmmg(-1))显着高于有机品种(15.9cmmg(-1)),两者都不同于Q和YQ CCP(14.3cmmg(-1) )。结晶根长度和枝条长度被识别为合理的非破坏性预测因子,用于在隔离材料和群体内直接选择。

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