Chickpea has a profound nutritional and economic value in vegetarian society. Continuous decline in chickpea productivity is attributed to insufficient genetic variability and different environmental stresses. Chickpea like several other legumes is highly susceptible to terminal drought stress. Multiple genes control drought tolerance and ASR gene plays a key role in regulating different plant stresses. The present study describes the molecular characterization and functional role of Abscissic acid and stress ripening (ASR) gene from chickpea (Cicer arietinum) and the gene sequence identified was submitted to NCBI Genbank (MK937569). Molecular analysis using MUSCLE software proved that the ASR nucleotide sequences in different legumes show ...
Background Chickpea (Cicer arietinum L.) is an important grain-legume crop that is mainly grown i...
Identifying potential molecular tags for drought tolerance is essential for achieving higher crop pr...
In plants, the Nuclear Factor-Y (NF-Y) transcription factors (TFs), which include three distinct typ...
Abstract Background Chickpea (C. arietinum L.) ranks third in food legume crop production in the wor...
Chickpea (Cicer arietinum L.) is the second most important winter crop which is consumed globally du...
Drought is the most important constraint that effects chickpea production globally. RNA-Seq has grea...
Background: Chickpea (C. arietinum L.) ranks third in food legume crop production in the world. Howe...
Chickpea (Cicer arietinum L.) is an important food legume crop, particularly for the arid regions in...
Drought is the most important constraint that effects chickpea production globally. RNA-Seq has grea...
Drought stress has been one of the serious constraints affecting chickpea productivity to a great ex...
Drought stress has been one of the serious constraints affecting chickpea productivity to a great ex...
Chickpea is an important food legume crop for the semi-arid regions, however, its productivity is ad...
BACKGROUND: Cultivated chickpea ( Cicer arietinum) has a narrow genetic base making it difficult for...
Background Chickpea (Cicer arietinum L.), an important grain legume crop of the world is seriousl...
Identifying potential molecular tags for drought tolerance is essential for achieving higher crop pr...
Background Chickpea (Cicer arietinum L.) is an important grain-legume crop that is mainly grown i...
Identifying potential molecular tags for drought tolerance is essential for achieving higher crop pr...
In plants, the Nuclear Factor-Y (NF-Y) transcription factors (TFs), which include three distinct typ...
Abstract Background Chickpea (C. arietinum L.) ranks third in food legume crop production in the wor...
Chickpea (Cicer arietinum L.) is the second most important winter crop which is consumed globally du...
Drought is the most important constraint that effects chickpea production globally. RNA-Seq has grea...
Background: Chickpea (C. arietinum L.) ranks third in food legume crop production in the world. Howe...
Chickpea (Cicer arietinum L.) is an important food legume crop, particularly for the arid regions in...
Drought is the most important constraint that effects chickpea production globally. RNA-Seq has grea...
Drought stress has been one of the serious constraints affecting chickpea productivity to a great ex...
Drought stress has been one of the serious constraints affecting chickpea productivity to a great ex...
Chickpea is an important food legume crop for the semi-arid regions, however, its productivity is ad...
BACKGROUND: Cultivated chickpea ( Cicer arietinum) has a narrow genetic base making it difficult for...
Background Chickpea (Cicer arietinum L.), an important grain legume crop of the world is seriousl...
Identifying potential molecular tags for drought tolerance is essential for achieving higher crop pr...
Background Chickpea (Cicer arietinum L.) is an important grain-legume crop that is mainly grown i...
Identifying potential molecular tags for drought tolerance is essential for achieving higher crop pr...
In plants, the Nuclear Factor-Y (NF-Y) transcription factors (TFs), which include three distinct typ...