根系性状的基因型差异设计抗旱大豆理想型

OCL Pub Date : 2022-01-01 DOI:10.1051/ocl/2022021
Elana Dayoub, J. Lamichhane, P. Debaeke, P. Maury
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引用次数: 2

摘要

大豆(甘氨酸max (l)))可能有助于欧洲种植系统的农业生态转型,但其生产力受到夏季干旱的严重影响。这种作物主要种植在欧洲南部和大陆地区,预计在不久的将来,这些地区的干旱和热浪会越来越多。农艺策略,如早播,要求品种在次优条件下具有增强的早期植物生长性状。此外,根系对水分的有效吸收延缓了脱水,促进了干旱的避免。一般来说,根形态和根构型的变化是植物适应水分胁迫的重要途径。本文综述了大豆品种间根系形态和结构性状的差异,特别是在生长早期。以前的研究报告了大豆根系性状的品种差异,但他们没有涉及到欧洲常见的品种,迄今为止关于这些品种的信息很少。可利用早期根系性状的基因型差异可作为设计大豆抗旱意识型的框架。为此,由数字方法和作物建模支持的高通量表型分析为探索涉及干旱避免的目标根系性状提供了新的途径。
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Genotypic differences in root traits to design drought-avoiding soybean ideotypes
Soybean (Glycine max (L.) Merr.) may contribute to the agro-ecological transition of cropping systems in Europe, but its productivity is severely affected by summer drought. The crop is mainly grown in southern and continental parts of Europe, whereby increasing drought and heat waves are expected in the near future. Agronomic strategies, such as early sowing, require cultivars with enhanced early plant growth traits under suboptimal conditions. Moreover, efficient water uptake by root delays dehydration and promotes drought avoidance. In general, changes in root morphology and root architecture are important pathways for plant adaptation to water stress conditions. This paper reviews the cultivar differences in soybean for root morphological and architectural traits especially during early growth stage. Previous works reported cultivar differences for root traits in soybean but they did not deal with cultivars commonly grown in Europe on which little information is available to date. Genotypic differences in available early-stage root traits can be used as a framework to design soybean ideotypes less vulnerable to drought. To this aim, high-throughput phenotyping supported by digital methods and crop modelling offer new avenues for the exploration of target root traits involved in drought avoidance.
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