The Mechanisms of Cadmium Stress Mitigation by Fungal Endophytes from Maize Grains
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Published:2024-08-16
Issue:8
Volume:10
Page:581
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ISSN:2309-608X
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Container-title:Journal of Fungi
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language:en
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Short-container-title:JoF
Author:
Awais Muhammad1, Xiang Yingying2, Yang Dian1, Lai Yibin1, Cai Fenglian1, Shah Naila3, Khan Majid4, Li Haiyan1ORCID
Affiliation:
1. Faculty of Environmental Science and Engineering, Medical School, Kunming University of Science and Technology, Kunming 650500, China 2. The Affiliated Yanan Hospital of Kunming Medical University, Kunming 650051, China 3. Department of Botany, Gardan Campus, Abdul Wali Khan University Mardan, Mardan 23200, Pakistan 4. Institute of Cotton Research, Chinese Academy of Agriculture Sciences, Anyang 455000, China
Abstract
Maize is a crucial staple crop that ensures global food security by supplying essential nutrients. However, heavy metal (HM) contamination inhibits maize growth, reduces output, and affects food security. Some endophytic fungi (EFs) in maize seeds have the potential to enhance growth and increase dry biomass, offering a solution to mitigate the negative effect of HM contamination. Using these functional EFs could help maintain crop production and ensure food safety in HM-contaminated areas. In the present study, the diversity of EFs in corn grains from various HM-contaminated areas in China was studied through culture-dependent and culture-independent methods. We tested the plant growth-promoting (PGP) traits of several dominant culturable isolates and evaluated the growth-promoting effects of these twenty-one isolates through pot experiments. Both studies showed that HM contamination increased the diversity and richness of corn grain EFs and affected the most dominant endophytes. Nigrospora and Fusarium were the most prevalent culturable endophytes in HM-contaminated areas. Conversely, Cladosporium spp. were the most isolated endophytes in non-contaminated areas. Different from this, Saccharomycopsis and Fusarium were the dominant EFs in HM-contaminated sites, while Neofusicoccum and Sarocladium were dominant in non-contaminated sites, according to a culture-independent analysis. PGP trait tests indicated that 70% of the tested isolates (forty-two) exhibited phosphorus solubilization, IAA production, or siderophore production activity. Specifically, 90% of the tested isolates from HM-contaminated sites showed better PGP results than 45% of the isolates from non-contaminated sites. The benefit of the twenty-one isolates on host plant growth was further studied through pot experiments, which showed that all the isolates could improve host plant growth. Among them, strains derived from HM-contaminated sites, including AK18 (Nigrospora), AK32 (Beauveria), SD93 (Gibberellia), and SD64 (Fusarium), had notable effects on enhancing the dry biomass of shoots and roots of maize under Cd stress. We speculate that the higher ratio of PGP EFs in corn grains from HM-contaminated areas may explain their competitiveness in such extreme environments. Fusarium and Cladosporium isolates show high PGP properties, but they can also be phytopathogenic. Therefore, it is essential to evaluate their pathogenic properties and safety for crops before considering their practical use in agriculture.
Funder
Kunming University of Science and Technology Plan Project National Natural Science Foundation of China State Key Laboratory of Environmental Geochemistry
Reference70 articles.
1. Global maize production, consumption and trade: Trends and R&D implications;Erenstein;Food Secur.,2022 2. Shahzad, A., Siddique, A., Ferdous, S., Amin, M.A., Qin, M., Aslam, U., Naeem, M., Bashir, T., and Shakoor, A. (2023). Heavy metals mitigation and growth promoting effect of endophytic Agrococcus terreus (MW 979614) in maize plants under zinc and nickel contaminated soil. Front. Microbiol., 14. 3. Albahri, G., Alyamani, A.A., Badran, A., Hijazi, A., Nasser, M., Maresca, M., and Baydoun, E. (2023). Enhancing essential grains yield for sustainable food security and bio-safe agriculture through latest innovative approaches. Agronomy, 13. 4. The relative impact of toxic heavy metals (THMs)(arsenic (As), cadmium (Cd), chromium (Cr)(VI), mercury (Hg), and lead (Pb)) on the total environment: An overview;Rahman;Environ. Monit. Assess.,2019 5. Rashid, A., Schutte, B.J., Ulery, A., Deyholos, M.K., Sanogo, S., Lehnhoff, E.A., and Beck, L. (2023). Heavy metal contamination in agricultural soil: Environmental pollutants affecting crop health. Agronomy, 13.
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