Physiological and biochemical changes in vegetable and field crops under drought, salinity and weeds stresses: control strategies and management

K Abdelaal, MS Alsubeie, Y Hafez, A Emeran… - Agriculture, 2022 - mdpi.com
Weeds are one of the most damaging biotic stresses in crop production, and drought and
salinity are considered the most serious abiotic stresses. These factors harmfully affect …

Improvement in physiobiochemical and yield characteristics of pea plants with nano silica and melatonin under salinity stress conditions

WB Al-Shammari, HR Altamimi, K Abdelaal - Horticulturae, 2023 - mdpi.com
The effect of nano silica (50 mL L− 1) and melatonin (75 µM) individually or in combination
in foliar applications on the morphophysiological, biochemical and yield properties of pea …

Alleviation of drought stress damages by melatonin and Bacillus thuringiensis associated with adjusting photosynthetic efficiency, antioxidative system, and …

WB Al-Shammari, AA Al-Huquil, K Alshammery, S Lotfi… - Heliyon, 2024 - cell.com
These experiments were performed to study the effect of exogenous treatment with
melatonin at 100 μM and seed treatment with Bacillus thuringiensis (10 6− 8 CFU/cm 3) on …

Biochemical and physiological responses of rice as influenced by Alternanthera paronychioides and Echinochloa colona under drought stress

D Sreekanth, DV Pawar, R Kumar, P Ratnakumar… - Plant Growth …, 2024 - Springer
Rice crops experience biotic (weeds) and abiotic stress (drought) at early in the season
when the plants are most susceptible to weed competition, which results in oxidative stress …

The effect of plant growth-promoting Rhizobacteria on soil properties and the physiological and anatomical characteristics of wheat under water-deficit stress …

AA Alaskar, HA AL-Shwaiman - Agriculture, 2023 - mdpi.com
This study aimed to evaluate the effects of plant growth-promoting Rhizobacteria (PGPR)
treatments, B1, Azosprillium lipoferum Sp2 and B2, A. lipoferum Sp2+ Pseudomonas sp …

Improvement of morphophysiological and anatomical attributes of plants under abiotic stress conditions using plant growth-promoting bacteria and safety treatments

WB Alshammari, K Alshammery, S Lotfi, H Altamimi… - PeerJ, 2024 - peerj.com
Drought and salinity are the major abiotic stress factors negatively affecting the
morphophysiological, biochemical, and anatomical characteristics of numerous plant …

Elucidating the interactive effects of drought, weeds, and herbicides on the physiological, biochemical, and yield characteristics of rice

D Sreekanth, DV Pawar, S Mahesh, CR Chethan… - Plant and Soil, 2024 - Springer
Aims Rice yields are significantly influenced by both biotic and abiotic factors, like drought
stress and weed infestation being prominent contributors to substantial crop losses …

Physiological Studies and Ultrastructure of Vigna sinensis L. and Helianthus annuus L. under Varying Levels of Nitrogen Supply

K Alharbi, SA Haroun, AM Kazamel, MA Abbas… - Plants, 2022 - mdpi.com
This experiment was conducted to investigate the effects of different nitrogen fertilizers
(potassium nitrate and/or urea) on shoot parameters, relative growth rate, net assimilation …

Alleviating the adverse effects of plant pathogens, drought and salinity stress factors using plant growth promoting bacteria

M REHAN, ALT Ahmad - Notulae Botanicae Horti …, 2022 - notulaebotanicae.ro
Climate change is one of the most important threats to agricultural production, therefore,
more attention must be paid to study the environmental stresses that affect plant production …

[PDF][PDF] Application of plant growth-promoting bacteria as an eco-friendly strategy for mitigating the harmful effects of abiotic stress on plants

AH Abdou, O Alkhateeb, HH Mansour, HS Ghazzawy… - Phyton, 2023 - cdn.techscience.cn
Plant growth-promoting bacteria (PGPB) play an important role in improving agricultural
production under several abiotic stress factors. PGPB can be used to increase crop growth …