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通过菌根真菌和内生真菌相互作用促进陆稻黑米中健康促进化合物的积累

Accumulation of Health-Promoting Compounds in Upland Black Rice by Interacting Mycorrhizal and Endophytic Fungi.

作者信息

Nacoon Sabaiporn, Seemakram Wasan, Gateta Thanawan, Theerakulpisut Piyada, Sanitchon Jirawat, Kuyper Thomas W, Boonlue Sophon

机构信息

Department of Microbiology, Faculty of Science, Khon Kaen University, Khon Kaen 40002, Thailand.

Department of Biology, Faculty of Science, Khon Kaen University, Khon Kaen 40002, Thailand.

出版信息

J Fungi (Basel). 2023 Nov 29;9(12):1152. doi: 10.3390/jof9121152.

Abstract

There is an increasing interest in finding eco-friendly and safe approaches to increase agricultural productivity and deliver healthy foods. Arbuscular mycorrhizal fungi (AMF) and endophytic fungi (EPF) are important components of sustainable agriculture in view of their ability to increase productivity and various plant secondary metabolites with health-promoting effects. In a pot experiment, our main research question was to evaluate the additive and synergistic effects of an AMF and four root-endophytic fungi on plant performance and on the accumulation of health-promoting secondary compounds. Plant growth varied between the treatments with both single inoculants and co-inoculation of an AMF and four EPF strains. We found that inoculation with a single EPF positively affected the growth and biomass production of most of the plant-endophyte consortia examined. The introduction of AMF into this experiment (dual inoculation) had a beneficial effect on plant growth and yield. AMF, KS-02 co-inoculated with EPF, PBMP16 increased the highest biomass, exceeding the growth rate of non-inoculated plants. Co-inoculated KS-02 and PBMP16 had significantly greater beneficial effects on almost all aspects of plant growth, photosynthesis-related parameters, and yield. It also promoted root growth quality and plant nutrient uptake. The phenolic compounds, anthocyanin, and antioxidant capacity in rice seeds harvested from plants co-inoculated with AMF and EPF were dramatically increased compared with those from non-inoculated plants. In conclusion, our results indicated that EPF and AMF contributed to symbiosis in Maled Phai cultivar and were coordinately involved in promoting plant growth performance under a pot trial.

摘要

人们越来越关注寻找环保且安全的方法来提高农业生产力并提供健康食品。丛枝菌根真菌(AMF)和内生真菌(EPF)因其提高生产力以及产生具有促进健康作用的各种植物次生代谢产物的能力,而成为可持续农业的重要组成部分。在一项盆栽试验中,我们的主要研究问题是评估一种AMF和四种根内生真菌对植物性能以及对促进健康的次生化合物积累的加性和协同效应。单一接种剂处理以及AMF与四种EPF菌株共同接种处理之间的植物生长情况各不相同。我们发现,接种单一EPF对所检测的大多数植物 - 内生菌组合的生长和生物量生产有积极影响。在该实验中引入AMF(双重接种)对植物生长和产量有有益影响。与EPF共同接种的AMF KS - 02和PBMP16使生物量增加最多,超过了未接种植物的生长速率。共同接种KS - 02和PBMP16对植物生长、光合作用相关参数和产量的几乎所有方面都有显著更大的有益影响。它还促进了根系生长质量和植物养分吸收。与未接种植物相比,接种AMF和EPF的植物收获的水稻种子中的酚类化合物、花青素和抗氧化能力显著增加。总之,我们的结果表明,EPF和AMF有助于Maled Phai品种的共生,并在盆栽试验中协同参与促进植物生长性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff43/10744396/3b4d7d0591bf/jof-09-01152-g001.jpg

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