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Chemosphere|September 24, 2019
Residual effects of biochar and phosphorus on growth and nutrient accumulation by maize (Zea mays L.) amended with microbes in texturally different soilsMazhar Rafique, Ibrahim Ortas, Muhammad Rizwan, et al.Biodegradation|February 12, 2026
Exploring the potential of indigenous coal mine isolates Pseudomonas aeruginosa (PM55) and Enterobacter cloacae (PM56) for Cr(VI) bioremediation and plant growth promotionNida Zainab, Fazal Ur Rehman, Amna Amna, et al.Environmental Science and Pollution Research International|October 24, 2014
Diazotrophs-assisted phytoremediation of heavy metals: a novel approachAbid Ullah, Hafsa Mushtaq, Hazrat Ali, et al.Molecular Biology Reports|September 18, 2021
Expression studies of stress responsive genes in cotton Gossypium hirsutum LMuhammad Naeem, Muhammad Iqbal, Sami Ul-Allah, et al.Molecular Biology Reports|March 17, 2022
Omics: a tool for resilient rice genetic improvement strategiesMuhammad Naeem, Zeeshan Ali, Anzal Khan, et al.Ecotoxicology and Environmental Safety|March 29, 2017
Cadmium spiked soil modulates root organic acids exudation and ionic contents of two differentially Cd tolerant maize (Zea mays L.) cultivarsM Tariq Javed, M Sohail Akram, Kashif Tanwir, et al.Cureus|October 1, 2019
Uremic Pruritus: Prevalence and Impact on Quality of Life and Depressive Symptoms in Hemodialysis PatientsMuhammad Zubair Satti, Danish Arshad, Hassan Javed, et al.Microbial Pathogenesis|April 20, 2025
Mitigating maize stalk rot disease: harnessing Bacillus subtilis PM57 and Bacillus cereus PM38 as biocontrol allies against ErwiniacarotovoraGhufran Ullah, Maleeha Nisar, Fazal Ur Rehman, et al.Ecotoxicology and Environmental Safety|January 5, 2021
Serratia sp. CP-13 alleviates Cd toxicity by morpho-physio-biochemical improvements, antioxidative potential and diminished Cd uptake in Zea mays L. cultivars differing in Cd toleranceKashif Tanwir, Muhammad Tariq Javed, Saghir Abbas, et al.Plants (Basel, Switzerland)|December 23, 2023
Controlled-Release Nitrogen Mixed with Common Nitrogen Fertilizer Can Maintain High Yield of Rapeseed and Improve Nitrogen Utilization EfficiencyYue Hu, Fangfang Zhang, Hafiz Hassan Javed, et al.Pageof 11