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在不同氮磷条件下,细菌生物固氮对小麦植株生长的农学优势。

Agronomic advantage of bacterial biological nitrogen fixation on wheat plant growth under contrasting nitrogen and phosphorus regimes.

作者信息

Aasfar Abderrahim, Meftah Kadmiri Issam, Azaroual Salah Eddine, Lemriss Sanaâ, Mernissi Najib El, Bargaz Adnane, Zeroual Youssef, Hilali Abderraouf

机构信息

Plant and Microbial Biotechnology Center, Moroccan Foundation for Advanced Science, Innovation and Research (MAScIR), Mohammed VI Polytechnic University, Ben Guerir, Morocco.

Laboratory of Health Sciences and Technologies, High Institute of Health Sciences, Hassan 1st University, Settat, Morocco.

出版信息

Front Plant Sci. 2024 May 8;15:1388775. doi: 10.3389/fpls.2024.1388775. eCollection 2024.

Abstract

INTRODUCTION

Given their remarkable capacity to convert atmospheric nitrogen into plant-accessible ammonia, nitrogen-fixing microbial species hold promise as a sustainable alternative to chemical nitrogen fertilizers, particularly in economically significant crops like wheat. This study aimed to identify strains with optimal attributes for promoting wheat growth sustainably, with a primary emphasis on reducing reliance on chemical nitrogen fertilizers.

METHODS

We isolated free nitrogen-fixing strains from diverse rhizospheric soils across Morocco. Subsequently, we conducted a rigorous screening process to evaluate their plant growth-promoting traits, including nitrogen fixation, phosphate solubilization, phytohormone production and their ability to enhance wheat plant growth under controlled conditions. Two specific strains, NF 516 and sp. NF 528, were selected for in-depth evaluation, with the focus on their ability to reduce the need for chemical nitrogen supply, particularly when used in conjunction with TSP fertilizer and natural rock phosphate. These two sources of phosphate were chosen to assess their agricultural effectiveness on wheat plants.

RESULTS AND DISCUSSION

Twenty-two nitrogen-fixing strains (+) were isolated from various Moroccan rhizospheric soils, representing sp., sp., sp., sp. and a yeast-like microorganism. These strains were carefully selected based on their potential to promote plant growth. The findings revealed that the application of NF 516 and sp. NF 528 individually or in combination, significantly improved wheat plant growth and enhanced nutrients (N and P) uptake under reduced nitrogen regimes. Notably, their effectiveness was evident in response to both natural rock phosphate and TSP, demonstrating their important role in wheat production under conditions of low nitrogen and complex phosphorus inputs. This research underscores the significant role of nitrogen-fixing microorganisms, particularly NF 516 and sp. NF 528, in wheat production under conditions of low nitrogen and complex phosphorus inputs. It showcases their potential to reduce chemical nitrogen fertilization requirements by up to 50% without compromising wheat plant yields. Our study emphasizes the importance of bacterial biological nitrogen fixation in meeting the remaining nitrogen requirements beyond this reduction. This underscores the vital role of microbial contributions in providing essential nitrogen for optimal plant growth and highlights the significance of biological nitrogen fixation in sustainable agriculture practices.

摘要

引言

固氮微生物具有将大气中的氮转化为植物可利用的氨的卓越能力,有望成为化学氮肥的可持续替代品,尤其是在小麦等经济作物中。本研究旨在鉴定具有促进小麦可持续生长最佳特性的菌株,主要重点是减少对化学氮肥的依赖。

方法

我们从摩洛哥各地不同的根际土壤中分离出自由固氮菌株。随后,我们进行了严格的筛选过程,以评估它们促进植物生长的特性,包括固氮、解磷、植物激素产生以及它们在受控条件下促进小麦植株生长的能力。选择了两个特定菌株,NF 516和NF 528菌株进行深入评估,重点是它们减少化学氮供应需求的能力,特别是与过磷酸钙肥料和天然磷矿粉一起使用时。选择这两种磷源来评估它们对小麦植株的农业有效性。

结果与讨论

从摩洛哥各种根际土壤中分离出22株固氮菌株(+),分别代表、、、和一种酵母样微生物。这些菌株是根据它们促进植物生长的潜力精心挑选的。研究结果表明,单独或组合施用NF 516和NF 528菌株,在减少氮素供应的情况下,显著改善了小麦植株的生长并提高了养分(氮和磷)吸收。值得注意的是,它们对天然磷矿粉和过磷酸钙的反应都很明显,表明它们在低氮和复杂磷输入条件下的小麦生产中发挥着重要作用。本研究强调了固氮微生物,特别是NF 516和NF 528菌株,在低氮和复杂磷输入条件下小麦生产中的重要作用。它展示了它们在不影响小麦植株产量的情况下将化学氮肥需求降低多达50%的潜力。我们的研究强调了细菌生物固氮在满足这一减少后剩余氮需求方面的重要性。这突出了微生物贡献在为植物最佳生长提供必需氮方面的关键作用,并强调了生物固氮在可持续农业实践中的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d5d/11109382/adbac5237bd8/fpls-15-1388775-g001.jpg

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