Smart reprograming of plants against salinity stress using modern biotechnological tools

A Raza, J Tabassum, AZ Fakhar, R Sharif… - Critical Reviews in …, 2023 - Taylor & Francis
Climate change gives rise to numerous environmental stresses, including soil salinity.
Salinity/salt stress is the second biggest abiotic factor affecting agricultural productivity …

[HTML][HTML] Designing future crops: genomics-assisted breeding comes of age

RK Varshney, A Bohra, J Yu, A Graner, Q Zhang… - Trends in Plant …, 2021 - cell.com
Over the past decade, genomics-assisted breeding (GAB) has been instrumental in
harnessing the potential of modern genome resources and characterizing and exploiting …

[HTML][HTML] Role of phytohormones in regulating cold stress tolerance: physiological and molecular approaches for developing cold-smart crop plants

A Raza, S Charagh, S Najafi-Kakavand, S Abbas… - Plant Stress, 2023 - Elsevier
Global climate variations induce extreme temperatures and significantly decrease crop
production, leading to food insecurity worldwide. Temperature extremes (mainly cold stress …

[HTML][HTML] Drought stress in grain legumes: Effects, tolerance mechanisms and management

M Khatun, S Sarkar, FM Era, AKMM Islam, MP Anwar… - Agronomy, 2021 - mdpi.com
Grain legumes are important sources of proteins, essential micronutrients and vitamins and
for human nutrition. Climate change, including drought, is a severe threat to grain legume …

[HTML][HTML] Features and applications of haplotypes in crop breeding

JA Bhat, D Yu, A Bohra, SA Ganie… - Communications …, 2021 - nature.com
Climate change with altered pest-disease dynamics and rising abiotic stresses threatens
resource-constrained agricultural production systems worldwide. Genomics-assisted …

[HTML][HTML] Modern plant biotechnology as a strategy in addressing climate change and attaining food security

TIK Munaweera, NU Jayawardana… - Agriculture & Food …, 2022 - Springer
Global warming causes a range of negative impacts on plants especially due to rapid
changes in temperatures, alterations of rainfall patterns, floods or drought conditions, and …

[HTML][HTML] Molecular breeding and drought tolerance in chickpea

R Asati, MK Tripathi, S Tiwari, RK Yadav, N Tripathi - Life, 2022 - mdpi.com
Cicer arietinum L. is the third greatest widely planted imperative pulse crop worldwide, and it
belongs to the Leguminosae family. Drought is the utmost common abiotic factor on plants …

[HTML][HTML] 5Gs for crop genetic improvement

RK Varshney, P Sinha, VK Singh, A Kumar… - Current Opinion in Plant …, 2020 - Elsevier
Highlights•5G breeding approach brings precision and enhances efficiency in breeding
programs.•Genome, germplasm, gene function, genomic breeding and genome editing are …

[HTML][HTML] Low temperature stress tolerance: An insight into the omics approaches for legume crops

KA Bhat, R Mahajan, MM Pakhtoon, U Urwat… - Frontiers in Plant …, 2022 - frontiersin.org
The change in climatic conditions is the major cause for decline in crop production
worldwide. Decreasing crop productivity will further lead to increase in global hunger rate …

[HTML][HTML] Integrating genomics for chickpea improvement: achievements and opportunities

M Roorkiwal, C Bharadwaj, R Barmukh… - Theoretical and Applied …, 2020 - Springer
Key message Integration of genomic technologies with breeding efforts have been used in
recent years for chickpea improvement. Modern breeding along with low cost genotyping …