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Title: | Zinc solubilization and organic acid production by the entomopathogenic fungus, Metarhizium pingshaense sheds light on its key ecological role in the environment. |
Other Titles: | Not Available |
Authors: | Senthil Kumar CM Sharon D'Silva Praveena R Anees K Athira Krishnan LR Balaji Rajkumar M Srinivasan V Dinesh R |
ICAR Data Use Licennce: | http://krishi.icar.gov.in/PDF/ICAR_Data_Use_Licence.pdf |
Author's Affiliated institute: | ICAR::Indian Institute of Spices Research |
Published/ Complete Date: | 2024-05-01 |
Project Code: | Not Available |
Keywords: | Entomopathogen Fungal ecology Nutrient solubilization Phytohormone Plant growth promotion Sustainable agriculture |
Publisher: | Elsevier |
Citation: | 1. Senthil Kumar CM, Sharon D'Silva, Praveena R, Anees Kaprakkaden, Athira Krishnan LR, Balaji Rajkumar M, Srinivasan V, Dinesh R. 2024. Zinc solubilization and organic acid production by the entomopathogenic fungus, Metarhizium pingshaense sheds light on its key ecological role in the environment. Science of The Total Environment, 923, 171348. https://doi.org/10.1016/j.scitotenv.2024.171348. |
Series/Report no.: | Not Available; |
Abstract/Description: | We report for the first-time higher zinc (Zn) solubilization efficiency and plant growth promotion by an entomopathogenic fungus (EPF), Metarhizium pingshaense IISR-EPF-14, which was earlier isolated from Conogethes punctiferalis, a pest of global importance. The Zn solubilizing efficiency of the fungus varied depending on the type of insoluble source of Zn used, which was observed to be 1.6 times higher in Zn3(PO4)2–amended media compared to ZnO media. In liquid media, there was a 6.2-fold increase in available Zn in ZnO–amended media, whereas a 20.2-fold increase in available Zn was recorded in Zn3(PO4)2 medium. We ascribe the production of various organic acids such as gluconic, keto-gluconic, oxalic, tartaric, malonic, succinic and formic acids, which in general, interact with insoluble Zn sources and make them soluble by forming metal cations and displacing anions as the major mechanism for Zn solubilization by M. pingshaense. However, the type and amount of organic acid produced in the media varied depending on the source of Zn used and the incubation period. Application of the fungus alone and in combination with insoluble Zn sources enhanced various plant growth parameters in rice and cardamom plants. Moreover, the uptake of Zn in rice plants was enhanced up to ~2.5-fold by fungal application. The fungus also exhibited various other plant growth-promoting traits, such as production of Indole-3-acetic acid, ammonia, siderophores, solubilization of mineral phosphate, and production of hydrolytic enzymes such as α-amylase, protease, and pectinase. Hence, apart from its use as a biological control agent, M. pingshaense has the potential to be used as a bio-fortifier to enhance the solubilization and uptake of Zn from nutrient poor soils under field conditions. Our findings shed light on the broader ecological role played by this fungus and widen its scope for utilization in sustainable agriculture. |
Description: | Not Available |
Type(s) of content: | Journal |
Sponsors: | Not Available |
Language: | English |
Name of Journal: | Science of The Total Environment |
Journal Type: | Included NAAS journal list |
NAAS Rating: | 15.8 |
Impact Factor: | 9.8 |
Volume No.: | 923 |
Page Number: | Not Available |
Name of the Division/Regional Station: | Not Available |
Source, DOI or any other URL: | https://doi.org/10.1016/j.scitotenv.2024.171348 |
URI: | https://doi.org/10.1016/j.scitotenv.2024.171348 http://krishi.icar.gov.in/jspui/handle/123456789/82012 |
Appears in Collections: | HS-IISR-Publication |
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