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Stress-resilient maize for climate-vulnerable ecologies in the Asian tropics

机译:亚洲热带地区气候脆弱生态的压力 - 弹性玉米

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Most parts of the Asian tropics are hotspots of climate change effects and associated weather variabilities.One of the major challenges with climate change is the uncertainty and inter-annual variability in weather conditions as crops are frequently exposed to different weather extremes within the same season.Therefore, agricultural research must strive to develop new crop varieties with inbuilt resilience towards variable weather conditions rather than merely tolerance to individual stresses in a specific situation and/or at a specific crop stage.C4 crops are known for their wider adaptation to range of climatic conditions.However, recent climatic trends and associated variabilities seem to be challenging the threshold limit of wider adaptability of even C4 crops like maize.In collaboration with national programs and private sector partners in the region, CIMMYT-Asia maize program initiated research for development (R4D) projects largely focusing on saving achievable yields across range of variable environments by incorporating reasonable levels of tolerance/resistance to major abiotic and biotic stresses without compromising on grain yields under optimal growing conditions.By integrating novel breeding tools like - genomics, double haploid (DH) technology, precision phenotyping and reducing genotype × environment interaction effects, a new generation of maize germplasm with multiple stress tolerance that can grow well across variable weather conditions were developed.The new maize germplasm were targeted for stress-prone environments where maize is invariability exposed to a range of sub-optimal growing conditions, such as drought, heat, waterlogging and various virulent diseases.The overarching goal of the stress-resilient maize program has been to achieve yield potential with a downside risk reduction.
机译:亚洲热带地区的大多数部分是气候变化的热点,以及相关的天气可变性。气候变化的主要挑战是天气条件下的不确定性和年间变异性,因为农作物经常暴露于同一季节内的不同天气极端。因此,农业研究必须努力开发新的作物品种,内置的作物品种对可变天气条件,而不是仅仅对特定情况和/或特定作物中的个体应力的耐受性,而且在其更广泛适应范围的过程中,众所周知条件。然而,最近的气候趋势和相关的可变性似乎挑战了甚至如玉米等C4作物的更广泛适应性的阈值限制。在与该地区的国家计划和私营部门合作伙伴合作,CIMMYT-ASIA玉米计划发起了发展研究( R4D)项目在很大程度上专注于省略持续的可实现的收益率通过将合理的耐受性/抗性水平纳入主要的非生物和生物应力的可变环境,而不会损害最佳生长条件下的谷物产量。相结合新型育种工具 - 基因组学,双倍单倍体(DH)技术,精密表型化和减少基因型×环境互动效应,开发了一种新一代具有多种胁迫性的玉米种质,这些玉米种质可以在可变天气条件下种植良好。新的玉米种质是针对应力 - 易发的环境,玉米是暴露于一系列次优不变性的条件的态度(如干旱,热,涝和毒性疾病)。压力 - 弹性玉米计划的总体目标是实现了降低风险降低的产量潜力。
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