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Variation and Correlations among European and North American Orchardgrass Germplasm for Herbage Yield and Nutritive Value

机译:欧洲和北美果园种质资源对牧草产量和营养价值的变异和相关性

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Efforts to improve water-soluble carbohydrate (WSC) concentrations are common in perennial forage grass breeding. Perennial ryegrass ( Lolium perenne ) breeding has been very successful in developing new cultivars with high WSC and high agronomic performance. Breeding efforts are ongoing to improve the WSC of other perennial forage grasses, such as orchardgrass ( Dactylis glomerata ). The United States Department of Agriculture Forage and Range and Deutsche Saatveredelung orchardgrass breeding programs cooperated to characterize the expression and genotype by environment interaction (GEI) of water-soluble carbohydrates in a collection of orchardgrass populations from both breeding programs. Additionally, the effort characterized the relationship between water-soluble carbohydrates and other agronomic and nutritive value traits in these populations. Overall, the Deutsche Saatveredelung populations had higher herbage mass (15%), rust resistance (59%), and later maturity. The Forage and Range Research populations had higher water-soluble carbohydrates (4%), nutritive value, and earlier maturity. However, results were highly dependent on GEI. Differences were very pronounced at the French and German field locations, but less pronounced at the two US locations. Combining the germplasm from the Forage and Range Research and Deutsche Saatveredelung programs may be a way to develop an improved base germplasm source that could then be used separately in the EU and US for water-soluble carbohydrate and other trait improvement.
机译:多年生牧草的育种中普遍尝试提高水溶性碳水化合物(WSC)的浓度。多年生黑麦草(Lolium perenne)育种在开发具有高WSC和高农艺性能的新品种方面非常成功。育种工作正在进行,以改善其他多年生饲草的WSC,例如果园(Dactylis glomerata)。美国农业饲草与牧场部和德意志Saatveredelung果园繁殖计划合作,通过这两个繁殖计划的果园种群集合,通过环境相互作用(GEI)表征水溶性碳水化合物的表达和基因型。此外,这项工作还表征了这些人群中水溶性碳水化合物与其他农艺和营养价值特征之间的关系。总体而言,德意志Saatveredelung种群的牧草质量更高(15%),抗锈性(59%),且成熟度更高。牧草和范围研究种群具有较高的水溶性碳水化合物(4%),营养价值和较早的成熟度。但是,结果高度依赖于GEI。在法国和德国的现场位置差异非常明显,但在美国的两个位置差异较小。将来自牧草和牧场研究计划以及德国Deutsche Saatveredelung计划的种质相结合可能是开发改良的基础种质来源的一种方法,然后可以在欧盟和美国分别用于水溶性碳水化合物和其他性状改良。

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