日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Biochar-microbe synergy enhances auxin-mediated soil-plant interactions for canola productivity in alkaline calcareous soil

生物炭-微生物协同作用增强了碱性钙质土壤中油菜籽产量的生长素介导的土壤-植物相互作用

Mustafa, Adnan; Saeed, Qudsia; Naveed, Muhammad; Abid, Iqra; Ghafoor, Abdul; Bano, Faiza; Brtnicky, Martin; Munir, Muhammad; Ahmad, Zulfiqar; Mahmood, Mohsin; Mehran, Muhammad; Maqsood, Nimra; Lu, Xiankai

Rhizosphere Bacteria in Plant Growth Promotion, Biocontrol, and Bioremediation of Contaminated Sites: A Comprehensive Review of Effects and Mechanisms.

根际细菌在促进植物生长、生物防治和污染场地生物修复中的作用:效应和机制的综合综述

Saeed Qudsia, Xiukang Wang, Haider Fasih Ullah, Kučerik Jiří, Mumtaz Muhammad Zahid, Holatko Jiri, Naseem Munaza, Kintl Antonin, Ejaz Mukkaram, Naveed Muhammad, Brtnicky Martin, Mustafa Adnan

Co-composted Biochar Enhances Growth, Physiological, and Phytostabilization Efficiency of Brassica napus and Reduces Associated Health Risks Under Chromium Stress

共堆肥生物炭可提高甘蓝型油菜的生长、生理和植物稳定效率,并降低铬胁迫下的相关健康风险

Naveed, Muhammad; Tanvir, Bisma; Xiukang, Wang; Brtnicky, Martin; Ditta, Allah; Kucerik, Jiri; Subhani, Zinayyera; Nazir, Muhammad Zubair; Radziemska, Maja; Saeed, Qudsia; Mustafa, Adnan

Co-Application of Biochar and Arbuscular mycorrhizal Fungi Improves Salinity Tolerance, Growth and Lipid Metabolism of Maize (Zea mays L.) in an Alkaline Soil

生物炭与丛枝菌根真菌的共施用可提高玉米(Zea mays L.)在碱性土壤中的耐盐性、生长和脂质代谢。

Ndiate, Ndiaye Ibra; Saeed, Qudsia; Haider, Fasih Ullah; Liqun, Cai; Nkoh, Jackson Nkoh; Mustafa, Adnan

Enhancing Cadmium Tolerance and Pea Plant Health through Enterobacter sp. MN17 Inoculation Together with Biochar and Gravel Sand

通过接种肠杆菌MN17菌株并结合生物炭和砾石砂,提高豌豆对镉的耐受性和植株健康。

Naveed, Muhammad; Mustafa, Adnan; Majeed, Samar; Naseem, Zainab; Saeed, Qudsia; Khan, Abdulhameed; Nawaz, Ahmad; Baig, Khurram Shehzad; Chen, Jen-Tsung