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首页> 外文期刊>Agronomy for Sustainable Development >Crop-specific and single-species mycorrhizal inoculation is the best approach to improve crop growth in controlled environments
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Crop-specific and single-species mycorrhizal inoculation is the best approach to improve crop growth in controlled environments

机译:特定作物和单种菌根接种是在受控环境中改善作物生长的最佳方法

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Arbuscular mycorrhizal fungi are root symbionts that play a key role in crop growth. A systematic quantitative analysis of the response of crops to arbuscular mycorrhizal inoculation, however, remains to be done. Additionally, little is known regarding the role of mycorrhizal specificity and the diversity of the inoculum on crop growth. Therefore, we collected data from 115 inoculation studies, including 435 experiments. We then used meta-analysis to examine the effect of crop identity, arbuscular mycorrhizal fungus identity, and mycorrhizal diversity on crop biomass increase, following inoculation. Our results show that total crop biomass was on average 34.9 % higher in inoculated versus non-inoculated plants. We found that specific combinations of arbuscular mycorrhizal fungus genera and host plant families were more beneficial for growth promotion as compared to other combinations. Moreover, a single-species inoculum increased crop growth response on average by 41.2 % compared to a multi-species inoculum. Overall, our findings show that a broad range of crops highly benefit from the inoculation with arbuscular mycorrhizal fungi. They also strongly suggest that selecting specific arbuscular mycorrhizal taxa for specific crops is the most promising approach to enhance crop growth. There is no "one-size-fits-all" arbuscular mycorrhizal fungus. Finally, and at least in stable and controlled environments, inoculation with a single arbuscular mycorrhizal species is more effective, compared to inoculation with a mixture of different arbuscular mycorrhizal taxa. This may be explained by fungi superior in extraradical growth, but less beneficial to the host, that outcompete the more mutualistic fungi. Therefore, it may be beneficial to maintain a high dominance of one beneficial arbuscular mycorrhizal taxon in simplified agricultural systems.
机译:丛枝菌根真菌是在农作物生长中起关键作用的根部共生菌。但是,仍需要对农作物对丛枝菌根接种的反应进行系统的定量分析。此外,关于菌根特异性的作用和接种物的多样性对作物生长的作用还知之甚少。因此,我们从115个接种研究中收集了数据,包括435个实验。然后,我们使用荟萃分析来检查接种后作物身份,丛枝菌根真菌身份和菌根多样性对作物生物量增加的影响。我们的结果表明,与未接种植物相比,接种后植物的农作物总生物量平均高出34.9%。我们发现,与其他组合相比,丛枝菌根真菌属和寄主植物科的特定组合更有利于促进生长。此外,单品种接种物比多品种接种物平均使作物生长响应提高了41.2%。总体而言,我们的研究结果表明,接种丛枝菌根真菌可以使多种作物受益匪浅。他们还强烈建议为特定作物选择特定的丛枝菌根菌种是提高作物生长的最有前途的方法。没有“一刀切”的丛枝菌根真菌。最后,至少在稳定和受控的环境中,与接种不同丛枝菌根类群的混合物相比,接种单个丛枝菌根种类更有效。这可能是由于真菌在自由基外生长方面表现出优势,但对宿主的益处较弱,但胜过了更多的互惠真菌。因此,在简化的农业系统中,保持一种有益的丛枝菌根类群的高度优势可能是有益的。

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