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作物改良中根系的干旱适应性状

Roots' Drought Adaptive Traits in Crop Improvement.

作者信息

Shoaib Mirza, Banerjee Bikram P, Hayden Matthew, Kant Surya

机构信息

Agriculture Victoria, Grains Innovation Park, 110 Natimuk Road, Horsham, VIC 3400, Australia.

School of Applied Systems Biology, La Trobe University, Bundoora, Melbourne, VIC 3083, Australia.

出版信息

Plants (Basel). 2022 Aug 30;11(17):2256. doi: 10.3390/plants11172256.

Abstract

Drought is one of the biggest concerns in agriculture due to the projected reduction of global freshwater supply with a concurrent increase in global food demand. Roots can significantly contribute to improving drought adaptation and productivity. Plants increase water uptake by adjusting root architecture and cooperating with symbiotic soil microbes. Thus, emphasis has been given to root architectural responses and root-microbe relationships in drought-resilient crop development. However, root responses to drought adaptation are continuous and complex processes and involve additional root traits and interactions among themselves. This review comprehensively compiles and discusses several of these root traits such as structural, physiological, molecular, hydraulic, anatomical, and plasticity, which are important to consider together, with architectural changes, when developing drought resilient crop varieties. In addition, it describes the significance of root contribution in improving soil structure and water holding capacity and its implication on long-term resilience to drought. In addition, various drought adaptive root ideotypes of monocot and dicot crops are compared and proposed for given agroclimatic conditions. Overall, this review provides a broader perspective of understanding root structural, physiological, and molecular regulators, and describes the considerations for simultaneously integrating multiple traits for drought tolerance and crop improvement, under specific growing environments.

摘要

由于预计全球淡水资源供应减少,同时全球粮食需求增加,干旱是农业领域最令人担忧的问题之一。根系对提高作物的耐旱性和生产力具有重要作用。植物通过调整根系结构以及与共生土壤微生物合作来增加水分吸收。因此,在培育具有抗旱能力的作物时,人们重点关注根系结构的响应以及根际微生物关系。然而,根系对干旱适应的反应是一个持续且复杂的过程,还涉及其他根系特性以及它们之间的相互作用。本综述全面汇编并讨论了其中一些根系特性,如结构、生理、分子、水力、解剖学和可塑性等特性,在培育抗旱作物品种时,这些特性连同根系结构的变化一起综合考虑十分重要。此外,本文还阐述了根系在改善土壤结构和持水能力方面的作用及其对长期抗旱能力的影响。此外,还比较并针对特定农业气候条件提出了单子叶和双子叶作物的各种干旱适应性根系理想型。总体而言,本综述为理解根系结构、生理和分子调节因子提供了更广阔的视角,并描述了在特定生长环境下同时整合多种耐旱性状以实现作物改良的考量因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e2d0/9460784/387740b4f87a/plants-11-02256-g001.jpg

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