Impact of Mycorrhizal Fungi from Different Rhizospheric Soils on Fungal Colonization, Growth, and Chlorophyll Contents of Cenchrus ciliaris
Author:
Thind Sumaira, Chaudhary Muhammad Shafiq, Ditta AllahORCID, Hussain IqbalORCID, Parveen Abida, Ullah Naseer, Mahmood Qaisar, Al-Ashkar IbrahimORCID, El-Sabagh Ayman
Abstract
Mycorrhizae are symbiotic associations between fungi and plants and are primarily responsible for nutrient transfer and survival of both partners. The present study was conducted to explore the diversity of mycorrhizal fungi in the rhizospheric soil of perennial grass species (Saccharum spontaneum, Saccharum bengalense, Setaria verticillata, Cymbopogon jwarancusa, and Typha angustata) around the district Layyah. In the subsequent experiment, the rhizospheric soils were used as inoculants, and their impact on mycorrhizal colonization in the plant and soil, and growth and physiological attributes, of Cenchrus ciliaris were investigated. The maximum hyphal, vesicles, arbuscules, dark septate endophytic and ectomycorrhizal colonization, and spore percentage were observed in the case of R-S5, i.e., rhizospheric soil, collected from Saccharum bengalense. However, the maximum (0.9310) Simpson’s index of diversity was observed in the case of R-S4, i.e., rhizospheric soil collected from Setaria verticillata. Different mycorrhizal fungal morphotypes scattered over three genera, i.e., Acaulospora, Glomus, and Scutellospora, were recorded both from rhizosphere and trap cultures. The application of spores from rhizospheric soil collected from S. bengalense (R-S5) caused the maximum increase in plant height (19.5%), number of leaves plant−1 (17.6%), leaf area (108.0%), and chlorophyll contents (29.4%) of Cenchrus ciliaris, compared to other treatments. In conclusion, the inoculation of mycorrhizal fungi significantly improves the mycorrhizal characteristics of Cenchrus ciliaris and its rhizospheric soil and ultimately enhances the growth and physiological parameters of Cenchrus ciliaris.
Funder
King Saud University, Riyadh, Saudi Arabia
Subject
Agronomy and Crop Science
Reference67 articles.
1. Corcoz, L., Păcurar, F., Pop-Moldovan, V., Vaida, I., Stoian, V., and Vidican, R. (2021). Mycorrhizal patterns in the roots of dominant Festuca rubra in a high-natural-value grassland. Plants, 11. 2. Jing, M., Shi, Z., Zhang, M., Zhang, M., and Wang, X. (2022). Nitrogen and phosphorus of plants associated with arbuscular and ectomycorrhizas are differentially influenced by drought. Plants, 11. 3. Da Costa, L.S., Grazziotti, P.H., Fonseca, A.J., dos Santos Avelar, D.C., Rossi, M.J., de Barros Silva, E., da Costa, E.C.S., Grazziotti, D.C.F.S., and Ragonezi, C. (2022). Eucalyptus field growth, and colonization of clones pre-inoculated with ectomycorrhizal fungi. Agronomy, 12. 4. Root-associated fungi respond more strongly than rhizosphere soil fungi to N fertilization in a boreal forest;Sci. Total Environ.,2021 5. Vidal, C., González, F., Santander, C., Pérez, R., Gallardo, V., Santos, C., Aponte, H., Ruiz, A., and Cornejo, P. (2022). Management of rhizosphere microbiota and plant production under drought stress: A comprehensive review. Plants, 11.
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