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Field high-throughput phenotyping: the new crop breeding frontier

机译:田间高通量表型分析:新的作物育种前沿

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摘要

Constraints in field phenotyping capability limit our ability to dissect the genetics of quantitative traits, particularly those related to yield and stress tolerance (e.g., yield potential as well as increased drought, heat tolerance, and nutrient efficiency, etc.). The development of effective field-based-high-throughput phenotyping platforms (HTPPs) remains a bottleneck for future breeding advances. However, progress in sensors, aeronautics, and high-performance computing are paving the way. Here, we review recent advances in field HTPPs, which should combine at an affordable cost, high capacity for data recording, scoring and processing, and non-invasive remote sensing methods, together with automated environmental data collection. Laboratory analyses of key plant parts may complement direct phenotyping under field conditions. Improvements in user-friendly data management together with a more powerful interpretation of results should increase the use of field HTPPs, therefore increasing the efficiency of crop genetic improvement to meet the needs of future generations.
机译:田间表型能力的限制限制了我们剖析数量性状遗传的能力,尤其是与产量和胁迫耐受性(例如产量潜力以及增加的干旱,耐热性和养分效率等)有关的数量性状。有效的基于田间的高通量表型平台(HTPPs)的开发仍然是未来育种进展的瓶颈。但是,传感器,航空航天和高性能计算的进步正在铺平道路。在这里,我们回顾了现场HTPP的最新进展,这些进展应以可承受的成本,高容量的数据记录,评分和处理能力以及无创遥感方法与自动环境数据收集相结合。对植物关键部位的实验室分析可以补充田间条件下的直接表型。改进用户友好数据管理以及对结果进行更有力的诠释,应增加田间HTPP的使用,从而提高作物遗传改良的效率,以满足子孙后代的需求。

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