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Impact of different on‐farm management practices on bread wheat quality: a case study in the Yaqui Valley

机译:不同农场管理实践对面包小麦品质的影响:以亚基河谷为例

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Abstract BACKGROUND Continuous development of new wheat varieties is necessary to satisfy the demands of farmers, industry, and consumers. The evaluation of candidate genotypes for commercial release under different on‐farm conditions is a strategy that has been strongly recommended to assess the performance and stability of new cultivars in heterogeneous environments and under different farming systems. The main objectives of this study were to evaluate the grain yield and quality performance of ten different genotypes across six contrasting farmers' field conditions with different irrigation and nitrogen fertilization levels, and to develop suggestions to aid breeding programs and farmers to use resources more efficiently. Genotype and genotype by environment (GGE) interaction biplot analyses were used to identify the genotypes with the strongest performance and greatest stability in the Yaqui Valley. RESULTS Analyses showed that some traits were mainly explained by the genotype effect, others by the field management conditions, and the rest by combined effects. The most representative and diverse field conditions in the Yaqui Valley were also identified, a useful strategy when breeders have limited resources. The independent effects of irrigation and nitrogen levels and their interaction were analyzed for each trait. The results showed that full irrigation was not always necessary to maximize grain yield in the Yaqui Valley. Other suggestions for more efficient use of resources are proposed. CONCLUSIONS The combination of on‐farm trials with GGE interaction analyses is an effective strategy to include in breeding programs to improve processes and resources. Identifying the most outstanding and stable genotypes under real on‐farm systems is key to the development of novel cultivars adapted to different management and environmental conditions. © 2023 Society of Chemical Industry.
机译:摘要 背景 为了满足农民、行业和消费者的需求,必须不断开发小麦新品种。在不同的农场条件下评估用于商业放行的候选基因型是一种强烈推荐的策略,用于评估新品种在异质环境和不同耕作系统下的性能和稳定性。本研究的主要目的是评估10种不同基因型在6个不同灌溉和氮肥水平的农田条件下的粮食产量和品质表现,并提出建议,以帮助育种计划和农民更有效地利用资源。采用基因型和环境基因型(GGE)交互作用双标图分析,鉴定了亚基河谷性能最强、稳定性最高的基因型。结果 分析表明,部分性状主要由基因型效应解释,其他性状主要由田间管理条件解释,其余则由综合效应解释。还确定了亚基河谷最具代表性和多样化的田间条件,当育种者资源有限时,这是一种有用的策略。分析了灌溉和氮水平的独立效应及其相互作用。结果表明,在亚基河谷,要最大限度地提高粮食产量,并不总是需要充分灌溉。还提出了关于更有效地利用资源的其他建议。结论 将农场试验与GGE相互作用分析相结合是一种有效的策略,可以纳入育种计划,以改善过程和资源。在真实的农场系统下确定最出色和最稳定的基因型是开发适应不同管理和环境条件的新型品种的关键。© 2023 化学工业学会.

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