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Plant Cell Reports|March 18, 2026
Bacillus amyloliquefaciens induces autophagy-mediated defense, phytohormonal modulation, and metabolic reprogramming in Oryza sativa to counteract Rhizoctonia solani sheath blightMohd Mogees Ansari, Nikita Bisht, Tanya Singh, et al.Current Microbiology|August 24, 2023
Ochrobactrum sp. NBRISH6 Inoculation Enhances Zea mays Productivity, Mitigating Soil Alkalinity and Plant Immune ResponseShashank Kumar Mishra, Sankalp Misra, Vijay Kant Dixit, et al.Plant Cell Reports|February 1, 2024
Paenibacillus lentimorbus alleviates nutrient deficiency-induced stress in Zea mays by modulating root system architecture, auxin signaling, and metabolic pathwaysTanya Singh, Nikita Bisht, Mohd Mogees Ansari, et al.Canadian Journal of Microbiology|January 27, 2015
Root nodule bacteria from Clitoria ternatea L. are putative invasive nonrhizobial endophytesAbhinav Aeron, Puneet Singh Chauhan, Ramesh Chand Dubey, et al.International Journal of Food Sciences and Nutrition|January 10, 2019
3-Methyl-3-buten-1-ol (isoprenol) confers longevity and stress tolerance in Caenorhabditis elegansSwapnil Pandey, Suresh Chandra Phulara, Anubhuti Jha, et al.World Journal of Microbiology & Biotechnology|February 18, 2026
Harnessing endophytes and Multi-Omics for sustainable Colchicine biosynthesisPradeep Semwal, Basudev Majhi, Radha Shivhare, et al.Current Microbiology|December 20, 2023
Endophytic Alkalotolerant Plant Growth-Promoting Bacteria Render Maize (Zea mays L.) Growth Under Alkaline StressSrishti Kar, Shashank Kumar Mishra, Sankalp Misra, et al.The Science of the Total Environment|January 1, 2021
Potential risk assessment of soil salinity to agroecosystem sustainability: Current status and management strategiesSinha Sahab, Ibha Suhani, Vaibhav Srivastava, et al.Geroscience|July 30, 2020
Hemiterpene compound, 3,3-dimethylallyl alcohol promotes longevity and neuroprotection in Caenorhabditis elegansSuresh Chandra Phulara, Swapnil Pandey, Anubhuti Jha, et al.Journal of Environmental Management|January 4, 2019
Tree growth rate regulate the influence of elevated CO2 on soil biochemical responses under tropical conditionAshutosh Kumar Singh, Apurva Rai, Meenakshi Kushwaha, et al.Pageof 9