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内生真菌与本地丛枝菌根真菌复合体之间的协同相互作用提高了……的光合活性、生长和产量。

Synergistic Interaction Between Endophytic and Indigenous Arbuscular Mycorrhizal Fungi Complex Improves Photosynthetic Activity, Growth, and Yield of .

作者信息

Akhallaa Youne Mounia, Akhallaa Youne Oumnia, Bouskout Mohammed, Khan Yaseen, Khassali Hamza, Shah Sulaiman, Sujat Ahmed, Alahoui Hassan, Alfeddy Mohamed Najib, Mnasri Bacem, Ouahmane Lahcen

机构信息

Cadi Ayyad University, Faculty of Sciences-Semlalia, Laboratory of Water Sciences, Microbial Biotechnologies, and Natural Resources Sustainability, Unit of Microbial Biotechnologies, Agrosciences, and Environment-CNRST Labeled Research Unit N°4, P.O. Box 2390, Marrakesh 40000, Morocco.

Center for Eco-Environment Restoration Engineering of Hainan Province, School of Ecology, Hainan University, Haikou 570228, China.

出版信息

Plants (Basel). 2025 Jun 30;14(13):1991. doi: 10.3390/plants14131991.

Abstract

The demand for sustainable agriculture has prompted the exploration of alternative methods to boost crop growth and yield. Microbial biostimulants offer effective solutions to enhance plant performance and reduce reliance on chemical fertilizers. This study investigated the effects of (), applied individually and in combination with a mycorrhizal fungi complex, on the growth, yield, and photosynthetic activity of pea (). Pea seeds were grown in sterilized soil under four treatment conditions, including a non-inoculated control, inoculation with 2.5 mL of culture per seedling, inoculation with an indigenous mycorrhizal fungal complex, and a combined treatment of and the mycorrhizal complex. The biostimulant treatments significantly influenced all measured photosynthetic and growth parameters. The results showed that substantially promoted pea growth, leading to notable improvements in biomass, plant height, and photosynthetic efficiency. When combined with the mycorrhizal fungi complex, these growth-promoting effects were significantly amplified, resulting in a ~69.7% increase in shoot fresh weight, a ~72.7% rise in root dry weight, and a ~73.6% boost in flower production. Additionally, the chlorophyll content increased by ~180% and photosynthetic yield (F/F) improved by ~18.5%. The combined treatment also produced the highest SPAD index value, reflecting a ~57% increase. The synergistic interaction between and mycorrhizal fungi enhances photosynthetic efficiency and overall plant performance. The study highlights the potential of using these microbial inoculants as biostimulants to improve pea cultivation in agroecosystems, offering a sustainable alternative to chemical fertilizers.

摘要

对可持续农业的需求促使人们探索替代方法来促进作物生长和提高产量。微生物生物刺激剂为增强植物性能和减少对化肥的依赖提供了有效的解决方案。本研究调查了单独施用以及与菌根真菌复合体联合施用()对豌豆()生长、产量和光合活性的影响。豌豆种子在四种处理条件下种植于无菌土壤中,包括未接种的对照、每株幼苗接种2.5 mL 培养物、接种本地菌根真菌复合体以及 和菌根复合体的联合处理。生物刺激剂处理显著影响了所有测量的光合和生长参数。结果表明, 显著促进了豌豆生长,使生物量、株高和光合效率有显著提高。当与菌根真菌复合体联合使用时,这些促生长作用显著增强,导致地上部鲜重增加约69.7%,根干重增加约72.7%,花的产量增加约73.6%。此外,叶绿素含量增加了约180%,光合产量(F/F)提高了约18.5%。联合处理还产生了最高的SPAD指数值,反映出增加了约57%。 和菌根真菌之间的协同相互作用提高了光合效率和整体植物性能。该研究突出了使用这些微生物接种剂作为生物刺激剂来改善农业生态系统中豌豆种植的潜力,为化肥提供了一种可持续的替代品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2845/12252046/994c3ad52de2/plants-14-01991-g001.jpg

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