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培育适应干旱环境和提高气候适应力的作物。

Breeding crops for drought-affected environments and improved climate resilience.

机构信息

Queensland Alliance for Agriculture and Food Innovation (QAAFI), The University of Queensland, Brisbane, Queensland 4072, Australia.

ARC Centre of Excellence for Plant Success in Nature and Agriculture, The University of Queensland, Brisbane, Queensland 4072, Australia.

出版信息

Plant Cell. 2023 Jan 2;35(1):162-186. doi: 10.1093/plcell/koac321.

Abstract

Breeding climate-resilient crops with improved levels of abiotic and biotic stress resistance as a response to climate change presents both opportunities and challenges. Applying the framework of the "breeder's equation," which is used to predict the response to selection for a breeding program cycle, we review methodologies and strategies that have been used to successfully breed crops with improved levels of drought resistance, where the target population of environments (TPEs) is a spatially and temporally heterogeneous mixture of drought-affected and favorable (water-sufficient) environments. Long-term improvement of temperate maize for the US corn belt is used as a case study and compared with progress for other crops and geographies. Integration of trait information across scales, from genomes to ecosystems, is needed to accurately predict yield outcomes for genotypes within the current and future TPEs. This will require transdisciplinary teams to explore, identify, and exploit novel opportunities to accelerate breeding program outcomes; both improved germplasm resources and improved products (cultivars, hybrids, clones, and populations) that outperform and replace the products in use by farmers, in combination with modified agronomic management strategies suited to their local environments.

摘要

培育具有更高抗非生物和生物胁迫水平的抗逆性作物,以应对气候变化,既带来了机遇,也带来了挑战。我们应用“育种者方程”的框架,该框架用于预测一个育种计划周期中对选择的响应,来回顾已经成功用于培育具有更高抗旱性作物的方法和策略,其中目标环境群体(TPE)是受干旱影响和有利(水分充足)环境的时空异质混合物。以美国玉米带的温带玉米的长期改良为例,并与其他作物和地理区域的进展进行比较。需要跨尺度整合特征信息,从基因组到生态系统,以准确预测当前和未来 TPE 中基因型的产量结果。这将需要跨学科团队探索、识别和利用新的机会来加速育种计划的结果;既要改良种质资源,又要改良产品(品种、杂交种、克隆和群体),这些产品要优于并取代农民正在使用的产品,并结合适合当地环境的改良农艺管理策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1076/9806606/3c625b5058de/koac321f1.jpg

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