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提高蚕豆(L.)生物固氮的最新进展及未来潜在方向。

Recent progress and potential future directions to enhance biological nitrogen fixation in faba bean ( L.).

作者信息

Jithesh Tamanna, James Euan K, Iannetta Pietro P M, Howard Becky, Dickin Edward, Monaghan James M

机构信息

Centre for Crop and Environmental Science Harper Adams University Edgmond, Shropshire UK.

The James Hutton Institute Dundee UK.

出版信息

Plant Environ Interact. 2024 May 21;5(3):e10145. doi: 10.1002/pei3.10145. eCollection 2024 Jun.

Abstract

The necessity for sustainable agricultural practices has propelled a renewed interest in legumes such as faba bean ( L.) as agents to help deliver increased diversity to cropped systems and provide an organic source of nitrogen (N). However, the increased cultivation of faba beans has proven recalcitrant worldwide as a result of low yields. So, it is hoped that increased and more stable yields would improve the commercial success of the crop and so the likelihood of cultivation. Enhancing biological N fixation (BNF) in faba beans holds promise not only to enhance and stabilize yields but also to increase residual N available to subsequent cereal crops grown on the same field. In this review, we cover recent progress in enhancing BNF in faba beans. Specifically, rhizobial inoculation and the optimization of fertilizer input and cropping systems have received the greatest attention in the literature. We also suggest directions for future research on the subject. In the short term, modification of crop management practices such as fertilizer and biochar input may offer the benefits of enhanced BNF. In the long term, natural variation in rhizobial strains and faba bean genotypes can be harnessed. Strategies must be optimized on a local scale to realize the greatest benefits. Future research must measure the most useful parameters and consider the economic cost of strategies alongside the advantages of enhanced BNF.

摘要

可持续农业实践的必要性促使人们重新关注诸如蚕豆(Vicia faba L.)等豆类,将其作为有助于增加种植系统多样性并提供有机氮源的作物。然而,由于产量低,蚕豆在全球范围内的种植面积增加一直面临困难。因此,人们希望提高产量并使其更稳定,从而提高该作物的商业成功率以及种植的可能性。增强蚕豆的生物固氮作用不仅有望提高和稳定产量,还能增加同一块土地上后续种植的谷类作物可利用的残留氮。在这篇综述中,我们涵盖了增强蚕豆生物固氮作用的最新进展。具体而言,根瘤菌接种以及肥料投入和种植系统的优化在文献中受到了最多关注。我们还提出了该主题未来研究的方向。短期内,改变作物管理措施,如肥料和生物炭投入,可能会带来增强生物固氮作用的益处。从长远来看,可以利用根瘤菌菌株和蚕豆基因型的自然变异。必须在地方层面优化策略以实现最大效益。未来的研究必须衡量最有用的参数,并在考虑增强生物固氮作用优势的同时,兼顾策略的经济成本。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4050/11109504/9a26d099358e/PEI3-5-e10145-g002.jpg

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