[HTML][HTML] Molecular breeding and drought tolerance in chickpea
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 …
belongs to the Leguminosae family. Drought is the utmost common abiotic factor on plants …
Develo** climate-resilient chickpea involving physiological and molecular approaches with a focus on temperature and drought stresses
Chickpea is one of the most economically important food legumes, and a significant source
of proteins. It is cultivated in more than 50 countries across Asia, Africa, Europe, Australia …
of proteins. It is cultivated in more than 50 countries across Asia, Africa, Europe, Australia …
Integrating genomics for chickpea improvement: achievements and opportunities
Key message Integration of genomic technologies with breeding efforts have been used in
recent years for chickpea improvement. Modern breeding along with low cost genoty** …
recent years for chickpea improvement. Modern breeding along with low cost genoty** …
Introgression of “QTL‐hotspot” region enhances drought tolerance and grain yield in three elite chickpea cultivars
With an aim of enhancing drought tolerance using a marker‐assisted backcrossing (MABC)
approach, we introgressed the “QTL‐hotspot” region from ICC 4958 accession that harbors …
approach, we introgressed the “QTL‐hotspot” region from ICC 4958 accession that harbors …
Recent advancement in OMICS approaches to enhance abiotic stress tolerance in legumes
The world is facing rapid climate change and a fast-growing global population. It is believed
that the world population will be 9.7 billion in 2050. However, recent agriculture production …
that the world population will be 9.7 billion in 2050. However, recent agriculture production …
Chickpea: Its Origin, Distribution, Nutrition, Benefits, Breeding, and Symbiotic Relationship with Mesorhizobium Species
J Zhang, J Wang, C Zhu, RP Singh, W Chen - Plants, 2024 - mdpi.com
Chickpea (Cicer arietinum L.), encompassing the desi and kabuli varieties, is a beloved
pulse crop globally. Its cultivation spans over fifty countries, from the Indian subcontinent and …
pulse crop globally. Its cultivation spans over fifty countries, from the Indian subcontinent and …
[HTML][HTML] Genomic-Mediated Breeding Strategies for Global Warming in Chickpeas (Cicer arietinum L.)
Although chickpea (Cicer arietinum L.) has high yield potential, its seed yield is often low
and unstable due to the impact of abiotic stresses, such as drought and heat. As a result of …
and unstable due to the impact of abiotic stresses, such as drought and heat. As a result of …
[HTML][HTML] Breeding for abiotic stress adaptation in chickpea (Cicer arietinum L.): A comprehensive review
L Maphosa, MF Richards, SL Norton… - Crop Breeding, Genetics …, 2020 - hapres.com
Chickpea is an important legume crop, providing a protein rich diet for humans and animal
feed. Globally, chickpea is grown in over 56 countries, occupying a production area of …
feed. Globally, chickpea is grown in over 56 countries, occupying a production area of …
Integrated multi‐omics analysis reveals drought stress response mechanism in chickpea (Cicer arietinum L.)
Drought is one of the major constraints limiting chickpea productivity. To unravel complex
mechanisms regulating drought response in chickpea, we generated transcriptomics …
mechanisms regulating drought response in chickpea, we generated transcriptomics …
Unravelling the molecular mechanism underlying drought stress response in chickpea via integrated multi-omics analysis
Drought stress affects growth and productivity significantly in chickpea. An integrated multi-
omics analysis can provide a better molecular-level understanding of drought stress …
omics analysis can provide a better molecular-level understanding of drought stress …