[HTML][HTML] Unveiling the significance of rhizosphere: Implications for plant growth, stress response, and sustainable agriculture

W Solomon, T Janda, Z Molnár - Plant Physiology and Biochemistry, 2024 - Elsevier
In the rhizosphere, the activities within all processes and functions are primarily influenced
by plant roots, microorganisms present in the rhizosphere, and the interactions between …

Agricultural sustainability: microbial biofertilizers in rhizosphere management

OA Fasusi, C Cruz, OO Babalola - Agriculture, 2021 - mdpi.com
The world's human population continues to increase, posing a significant challenge in
ensuring food security, as soil nutrients and fertility are limited and decreasing with time …

[HTML][HTML] Soil salinity and drought tolerance: An evaluation of plant growth, productivity, microbial diversity, and amelioration strategies

M Muhammad, A Waheed, A Wahab, M Majeed… - Plant Stress, 2024 - Elsevier
Global climate change affects weather patterns, affecting soil salinity and drought tolerance.
Crop resilience and agriculture sustainability can be enhanced by exploring soil salinity …

Insights into the interactions among roots, rhizosphere, and rhizobacteria for improving plant growth and tolerance to abiotic stresses: a review

N Khan, S Ali, MA Shahid, A Mustafa, RZ Sayyed… - Cells, 2021 - mdpi.com
Abiotic stresses, such as drought, salinity, heavy metals, variations in temperature, and
ultraviolet (UV) radiation, are antagonistic to plant growth and development, resulting in an …

Coping with the challenges of abiotic stress in plants: New dimensions in the field application of nanoparticles

VD Rajput, T Minkina, A Kumari, Harish, VK Singh… - Plants, 2021 - mdpi.com
Abiotic stress in plants is a crucial issue worldwide, especially heavy-metal contaminants,
salinity, and drought. These stresses may raise a lot of issues such as the generation of …

Plant growth-promoting rhizobacteria (PGPR): A rampart against the adverse effects of drought stress

N Bouremani, H Cherif-Silini, A Silini, AC Bouket… - Water, 2023 - mdpi.com
Abiotic stress significantly limits plant growth and production. Drought, in particular, is a
severe constraint that affects growth and limits agricultural productivity on a global scale …

Unlocking the strength of plant growth promoting Pseudomonas in improving crop productivity in normal and challenging environments: a review

P Singh, RK Singh, Y Zhou, J Wang… - Journal of Plant …, 2022 - Taylor & Francis
The widespread use of biofertilizers, rather than chemical fertilizers, is significantly more
likely to accomplish sustainable agriculture production globally. Plant growth-promoting …

Nanoparticles as potential hallmarks of drought stress tolerance in plants

N Kandhol, M Jain, DK Tripathi - Physiologia Plantarum, 2022 - Wiley Online Library
Plants are inevitably exposed to drought stress limiting their growth and causing yield loss,
thus inciting food crises across the world. Nanoparticles (NPs) are regarded as effective and …

Mitigating abiotic stress: microbiome engineering for improving agricultural production and environmental sustainability

M Phour, SS Sindhu - Planta, 2022 - Springer
Abstract Main Conclusion The responses of plants to different abiotic stresses and
mechanisms involved in their mitigation are discussed. Production of osmoprotectants …

[PDF][PDF] Harish

VD Rajput, T Minkina, A Kumari - Singh, RK - researchgate.net
The stationary life of plants has led to the evolution of a complex gridded antioxidant
defence system constituting numerous enzymatic components, playing a crucial role in …