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Seeding Rate and Genotype Effect on Agronomic Performance and End-Use Quality of Winter Wheat

机译:播种量和基因型对冬小麦农艺性能和最终利用品质的影响

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Few experiments have studied how seeding rates affect agronomic performance and end-use quality of modern wheat (Triticum aestivum L.) genotypes in the Great Plains. Higher grain yield and better quality grain production requires the use of appropriate seeding rates. During the 1997 and 1998 crop seasons, 20 winter wheat genotypes and experimental lines were evaluated at two locations (four environments) to assess seeding rate and genotype effects on agronomic performance and end-use quality of wheat. Significant differences among environments, seeding rates, and genotypes, and some of their interactions were identified. Lower seeding rates decreased plant population (by 62.3%), grain yield (by 0.8 Mg haa?’1), kernel weight (by 1.3 mg kernela?’1), flour yield (by 0.8 g/100 g grain), mixing time (by 0.7 min), caused later flowering (by 2 d), and increased flour protein content (by 15 mg ga?’1) and mixing tolerance (1 unit). Environment ?— genotype interactions were significant for all the traits except plant population and mixing tolerance. On the basis of the four environments, the seeding rate ?— genotype interactions were nonsignificant for all traits except plant height. These results provide evidence that agronomic performance and end-use quality traits are greatly influenced by the environmental conditions and less so by seeding rates. Seeding rate affected plant population, days to flowering, plant height, grain yield, kernel weight, flour yield, flour protein, and mixing time and tolerance of wheat; therefore, seeding rate should be considered as a factor in obtaining higher grain yields with good end-use quality.
机译:很少有实验研究播种率如何影响大平原现代小麦(Triticum aestivum L.)基因型的农艺性能和最终利用质量。更高的谷物产量和更好的谷物产量需要使用适当的播种量。在1997年和1998年的作物季节,在两个地点(四个环境)评估了20个冬小麦基因型和试验品系,以评估播种率和基因型对小麦农艺性状和最终利用质量的影响。确定了环境,播种率和基因型之间的显着差异,以及它们之间的某些相互作用。较低的播种率降低了植物种群(减少了62.3%),谷物产量(减少了0.8 Mg haa''1),谷粒重量(减少了1.3 mg玉米粒'1),面粉产量(减少了0.8 g / 100 g谷物),混合时间(0.7分钟),导致以后开花(2天),面粉蛋白含量增加(15 mg ga?'1)和混合耐受性(1个单位)。除植物种群和混合耐性外,环境-基因型相互作用对所有性状均具有重要意义。在这四个环境的基础上,除植物高度外,所有性状的播种率α-基因型相互作用均不显着。这些结果提供了证据,证明农艺性能和最终使用质量性状受环境条件的影响很大,而受播种率的影响则较小。播种率影响植物种群,开花天数,株高,籽粒产量,籽粒重量,面粉产量,面粉蛋白质以及小麦的混合时间和耐受性;因此,应考虑将播种量作为获得较高谷物产量和良好最终使用质量的一个因素。

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