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Improving Nitrogen Use Efficiency in Crops for Sustainable Agriculture

机译:提高农作物可持续利用氮的效率

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In this review, we present the recent developments and future prospects of improving nitrogen use efficiency (NUE) in crops using various complementary approaches. These include conventional breeding and molecular genetics, in addition to alternative farming techniques based on no-till continuous cover cropping cultures and/or organic nitrogen (N) nutrition. Whatever the mode of N fertilization, an increased knowledge of the mechanisms controlling plant N economy is essential for improving NUE and for reducing excessive input of fertilizers, while maintaining an acceptable yield and sufficient profit margin for the farmers. Using plants grown under agronomic conditions, with different tillage conditions, in pure or associated cultures, at low and high N mineral fertilizer input, or using organic fertilization, it is now possible to develop further whole plant agronomic and physiological studies. These can be combined with gene, protein and metabolite profiling to build up a comprehensive picture depicting the different steps of N uptake, assimilation and recycling to produce either biomass in vegetative organs or proteins in storage organs. We provide a critical overview as to how our understanding of the agro-ecophysiological, physiological and molecular controls of N assimilation in crops, under varying environmental conditions, has been improved. We have used combined approaches, based on agronomic studies, whole plant physiology, quantitative genetics, forward and reverse genetics and the emerging systems biology. Long-term sustainability may require a gradual transition from synthetic N inputs to legume-based crop rotation, including continuous cover cropping systems, where these may be possible in certain areas of the world, depending on climatic conditions. Current knowledge and prospects for future agronomic development and application for breeding crops adapted to lower mineral fertilizer input and to alternative farming techniques are explored, whilst taking into account the constraints of both the current world economic situation and the environment.
机译:在这篇综述中,我们介绍了使用各种辅助方法提高作物氮素利用效率(NUE)的最新进展和未来前景。除了基于免耕连续覆盖作物栽培和/或有机氮(N)营养的替代耕作技术外,这些还包括常规育种和分子遗传学。无论采用何种氮肥方式,对于控制植物氮素经济的机制的认识增加,对于改善NUE和减少肥料的过量投入,同时保持农民可接受的产量和足够的利润率至关重要。现在,使用在不同耕作条件下,在纯净或相关培养条件下,低氮和高氮矿物肥料输入下,在农艺条件下生长的植物,或使用有机肥,可以进一步开展整株农艺和生理学研究。这些可以与基因,蛋白质和代谢产物谱图结合起来,以构成一幅全面的图景,描绘氮素吸收,同化和循环利用的不同步骤,以在营养器官中产生生物量或在储存器官中产生蛋白质。我们就如何改善在各种环境条件下对农作物中氮同化的农业生态生理,生理和分子控制的理解提供了重要的综述。基于农艺学研究,整株植物生理学,定量遗传学,正向和反向遗传学以及新兴系统生物学,我们采用了多种组合方法。长期可持续性可能需要从合成氮投入逐步过渡到以豆类为基础的作物轮作,包括连续地覆盖农作系统,根据气候条件,在世界某些地区可能有这些可能。在考虑到当前世界经济形势和环境的制约因素的情况下,探索了适合于降低矿物肥料投入和替代耕作技术的育种作物的未来农学发展和应用的当前知识和前景。

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