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An Integrated Molecular and Conventional Breeding Scheme for Enhancing Genetic Gain in Maize in Africa

机译:一种综合分子与常规育种方案,用于提高非洲玉米遗传增益

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摘要

Maize production in West and Central Africa (WCA) is constrained by a wide range of interacting stresses that keep productivity below potential yields. Among the many problems afflicting maize production in WCA, drought, foliar diseases, and parasitic weeds are the most critical. Several decades of efforts devoted to the genetic improvement of maize have resulted in remarkable genetic gain, leading to increased yields of maize on farmers’ fields. The revolution unfolding in the areas of genomics, bioinformatics, and phenomics is generating innovative tools, resources, and technologies for transforming crop breeding programs. It is envisaged that such tools will be integrated within maize breeding programs, thereby advancing these programs and addressing current and future challenges. Accordingly, the maize improvement program within International Institute of Tropical Agriculture (IITA) is undergoing a process of modernization through the introduction of innovative tools and new schemes that are expected to enhance genetic gains and impact on smallholder farmers in the region. Genomic tools enable genetic dissections of complex traits and promote an understanding of the physiological basis of key agronomic and nutritional quality traits. Marker-aided selection and genome-wide selection schemes are being implemented to accelerate genetic gain relating to yield, resilience, and nutritional quality. Therefore, strategies that effectively combine genotypic information with data from field phenotyping and laboratory-based analysis are currently being optimized. Molecular breeding, guided by methodically defined product profiles tailored to different agroecological zones and conditions of climate change, supported by state-of-the-art decision-making tools, is pivotal for the advancement of modern, genomics-aided maize improvement programs. Accelerated genetic gain, in turn, catalyzes a faster variety replacement rate. It is critical to forge and strengthen partnerships for enhancing the impacts of breeding products on farmers’ livelihood. IITA has well-established channels for delivering its research products/technologies to partner organizations for further testing, multiplication, and dissemination across various countries within the subregion. Capacity building of national agricultural research system (NARS) will facilitate the smooth transfer of technologies and best practices from IITA and its partners.
机译:西非和中非(WCA)的玉米产量受到广泛的相互作用胁迫,使生产率低于潜在的产量。在WCA,干旱,叶面疾病和寄生杂草中占据玉米产量的许多问题是最关键的。几十年致力于玉米遗传改善的努力导致了显着的遗传利益,导致农民领域的玉米产量增加。在基因组学,生物信息学和表情和表达的领域展开的革命正在为转变作物育种计划产生创新的工具,资源和技术。设想这些工具将集成在玉米育种计划中,从而推进这些计划并解决当前和未来的挑战。因此,国际热带农业研究所(IITA)内的玉米改善计划通过引入创新的工具和预期增强该地区小农农民的遗传收益和影响的新计划来进行现代化的过程。基因组工具使复杂性状的遗传解剖能够促进对关键农艺和营养质量特征的生理基础的理解。正在实施标记辅助选择和基因组选择方案以加速与产量,弹性和营养质量有关的遗传增益。因此,目前正在优化有效地将基因型信息与来自现场表型和实验室的分析的数据合并基因型信息的策略。分子育种,由有条不紊地定义的产品型材定制为不同的农业生态区和气候变化条件,由最先进的决策工具支持,是近代,基因组学辅助玉米改善计划的推进的关键。反过来加速遗传增益,催化较快的品种更换率。这对促进和加强伙伴关系至关重要,以加强育种产品对农民生计的影响。 IITA拥有良好的渠道,用于将其研究产品/技术提供给合作组织,以进一步测试,乘法和传播各个国家内的各个国家。国家农业研究系统(NARS)的能力建设将促进IITA及其合作伙伴的技术和最佳实践的顺利转移。

著录项

  • 作者

    Melaku Gedil; Abebe Menkir;

  • 作者单位
  • 年度 2019
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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