Optimistic contributions of plant growth-promoting bacteria for sustainable agriculture and climate stress alleviation

M Cao, M Narayanan, X Shi, X Chen, Z Li, Y Ma - Environmental Research, 2023 - Elsevier
Global climate change is the major cause of abiotic and biotic stresses that have adverse
effects on agricultural productivity to an irreversible level, thus threatening to limit gains in …

[HTML][HTML] Potential use of Bacillus spp. as an effective biostimulant against abiotic stresses in crops—A review

H Etesami, BR Jeong, BR Glick - Current Research in Biotechnology, 2023 - Elsevier
Environmental (abiotic) stresses significantly threaten the worldwide crop production and
food security. Rapid, drastic changes in the global climate have exacerbated such stresses …

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 …

Bacterial ACC deaminase: Insights into enzymology, biochemistry, genetics, and potential role in amelioration of environmental stress in crop plants

M Shahid, UB Singh, MS Khan, P Singh… - Frontiers in …, 2023 - frontiersin.org
Growth and productivity of crop plants worldwide are often adversely affected by
anthropogenic and natural stresses. Both biotic and abiotic stresses may impact future food …

Drought Stress Amelioration in Maize (Zea mays L.) by Inoculation of Bacillus spp. Strains under Sterile Soil Conditions

M Azeem, MZ Haider, S Javed, MH Saleem, A Alatawi - Agriculture, 2022 - mdpi.com
The aim of the present study was to promote plant growth characteristics including mineral
uptake and various phytohormone production by indigenously isolated Bacillus spp. strains …

Recent advances in PGPR-mediated resilience toward interactive effects of drought and salt stress in plants

A Al-Turki, M Murali, AF Omar, M Rehan… - Frontiers in …, 2023 - frontiersin.org
The present crisis at hand revolves around the need to enhance plant resilience to various
environmental stresses, including abiotic and biotic stresses, to ensure sustainable …

Recent advances in PGPR and molecular mechanisms involved in drought stress resistance

D Sati, V Pande, SC Pandey, M Samant - Journal of Soil Science and Plant …, 2023 - Springer
Increased severity of droughts, due to anthropogenic activities and global warming, has
imposed a severe threat on agricultural productivity. This has escalated the need for …

Plant growth promoting bacteria (PGPR) induce antioxidant tolerance against salinity stress through biochemical and physiological mechanisms

M Neshat, A Abbasi, A Hosseinzadeh… - … and Molecular Biology …, 2022 - Springer
Salinity is one of the most severe abiotic stress in the world. Also, the irrigated lands have
been treated with second salinity. Canola is one of the most important industrial crops for oil …

Enhancement of drought tolerance in diverse Vicia faba cultivars by inoculation with plant growth-promoting rhizobacteria under newly reclaimed soil conditions

E Mansour, HAM Mahgoub, SA Mahgoub… - Scientific Reports, 2021 - nature.com
Water deficit has devastating impacts on legume production, particularly with the current
abrupt climate changes in arid environments. The application of plant growth-promoting …

Ameliorative effects of plant growth promoting bacteria, zinc oxide nanoparticles and oxalic acid on Luffa acutangula grown on arsenic enriched soil

Y Tanveer, H Yasmin, A Nosheen, S Ali… - Environmental Pollution, 2022 - Elsevier
Arsenic (As) contamination and bioaccumulation are a serious threat to agricultural plants.
To address this issue, we checked the efficacy of As tolerant plant growth promoting bacteria …