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Breeding Annual Grain Legumes for Sustainable Agriculture: New Methods to Approach Complex Traits and Target New Cultivar Ideotypes

机译:为可持续农业培育年度豆科植物:应对复杂性状和针对新品种特异型的新方法

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摘要

Although yield and total biomass produced by annual legumes remain major objectives for breeders, other issues such as environment-friendly, resource use efficiency including symbiotic performance, resilient production in the context of climate change, adaptation to sustainable cropping systems (reducing leaching, greenhouse gas emissions and pesticide residues), adaptation to diverse uses (seeds for feed, food, non-food, forage or green manure) and finally new ecological services such as pollinator protection, imply the need for definition of new ideotypes and development of innovative genotypes to enhance their commercialization. Taken as a whole, this means more complex and integrated objectives for breeders. Several illustrations will be given of breeding such complex traits for different annual legume species. Genetic diversity for root development and for the ability to establish efficient symbioses with rhizobia and mycorrhiza can contribute to better resource management (N, P, water). Shoot architectures and phenologies can contribute to yield and biotic constraint protection (parasitic weeds, diseases or insects) reducing pesticide use. Variable maturity periods and tolerance to biotic and abiotic stresses are key features for the introduction of annual legumes to low input cropping systems and for enlarging cultivated area. Adaptation to intercropping requires adapted genotypes. Improved health and nutritional value for humans are key objectives for developing new markets. Modifying product composition often requires the development of specific cultivars and sometimes the need to break negative genetic correlations with yield. A holistic approach in legume breeding is important for defining objectives with farmers, processors and consumers. The cultivar structures are likely to be more complex, combining genotypes, plant species and associated symbionts. New tools to build and evaluate them are important if legumes are to deliver their exciting potential in terms of agricultural productivity and sustainability as well as for feed and food.
机译:尽管一年生豆类的产量和总生物量仍然是育种者的主要目标,但其他问题如环境友好,包括共生性能在内的资源利用效率,气候变化背景下的弹性生产,对可持续种植系统的适应性(减少淋滤,温室气体)排放和农药残留),适应多种用途(饲料,食品,非食品,饲料或绿肥的种子)以及最终新的生态服务(如传粉媒介保护)意味着需要定义新的表型和开发创新的基因型增强他们的商业化。总体而言,这意味着育种者的目标更加复杂和综合。对于不同的一年生豆科植物品种,这种复杂性状的繁殖将给出一些例证。根系发育的遗传多样性以及与根瘤菌和菌根建立有效共生的能力可以促进更好的资源管理(氮,磷,水)。枝条的构筑物和物候特性可有助于降低产量和生物约束保护(寄生杂草,疾病或昆虫),从而减少农药的使用。可变的成熟期以及对生物和非生物胁迫的耐受性是向低投入种植系统引入年度豆类和扩大耕地面积的关键特征。间作适应需要适应的基因型。改善人类的健康和营养价值是开发新市场的主要目标。改变产品组成通常需要开发特定的品种,有时还需要打破与产量的负遗传相关性。豆科植物育种的整体方法对于确定农民,加工者和消费者的目标很重要。结合基因型,植物种类和相关共生体,品种结构可能更复杂。如果豆类作物要在农业生产力和可持续性以及饲料和食品方面发挥其令人兴奋的潜力,那么构建和评估它们的新工具就非常重要。

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