Area of research
Plant Science · Global and Planetary Change
Research interest
Research interests include Research in Cotton Cultivation, Plant Stress Responses and Tolerance, Plant Water Relations and Carbon Dynamics, and Plant responses to water stress.
Reshaping agricultural production systems: Trade-offs and implications for sustainable intensification and environment management
An overview of heat stress in Chickpea (Cicer arietinum L.): effects, mechanisms and diverse molecular breeding approaches for enhancing resilience and productivity
Smallholder farmers’ challenges and opportunities: Implications for agricultural production, environment and food security
Optimizing nitrogen application methods and frequency to increase cotton yield in summer direct sown condition
Genetics and Genomics of Fusarium Wilt of Chilies: A Review
Pollen development in cotton (<scp><i>Gossypium hirsutum</i></scp>) is highly sensitive to heat exposure during the tetrad stage
Planting Density Induced Changes in Cotton Biomass Yield, Fiber Quality, and Phosphorus Distribution under Beta Growth Model
Water-nutrient management enhances root morpho-physiological functioning, phosphorus absorption, transportation and utilization of cotton in arid region
Changes in Leaf Structural and Functional Characteristics when Changing Planting Density at Different Growth Stages Alters Cotton Lint Yield under a New Planting Model
Coping with drought: stress and adaptive mechanisms, and management through cultural and molecular alternatives in cotton as vital constituents for plant stress resilience and fitness
Impact of High Temperature and Drought Stresses on Chickpea Production
Biomass Accumulation, Photosynthetic Traits and Root Development of Cotton as Affected by Irrigation and Nitrogen-Fertilization
EFFECTS OF CULTURE MEDIA ON YIELD, GROWTH, PHOTOSYNTHETIC CAPACITY AND ANTIOXIDANT ENZYME OF DIFFERENT TOMATO (SOLANUM LYCOPERSICUM L.) VARIETIES
Planting density and sowing date strongly influence growth and lint yield of cotton crops
Nitrogen fertility and abiotic stresses management in cotton crop: a review
Nitrogen nutrition in cotton and control strategies for greenhouse gas emissions: a review
Rational Water and Nitrogen Management Improves Root Growth, Increases Yield and Maintains Water Use Efficiency of Cotton under Mulch Drip Irrigation
Leaf nitrogen determination using non-destructive techniques–A review
Consequences of waterlogging in cotton and opportunities for mitigation of yield losses
Field response of chickpea (Cicer arietinum L.) to high temperature
Effects of high-temperature episodes on wheat yields in New South Wales, Australia
Aminoethoxyvinylglycine (AVG) ameliorates waterlogging-induced damage in cotton by inhibiting ethylene synthesis and sustaining photosynthetic capacity
The relationship between cotton canopy temperature and yield, fibre quality and water-use efficiency
Effect of high temperature on the reproductive development of chickpea genotypes under controlled environments
Reproductive biology of chickpea response to heat stress in the field is associated with the performance in controlled environments
High temperature tolerance in chickpea and its implications for plant improvement