Chickpea (Cicer arietinum L.) production is highly susceptible to heat stress (day/night temperatures above 32/20 °C). Identifying the molecular mechanisms and potential candidate genes underlying heat stress response is important for increasing chickpea productivity. Here, we used an RNA-seq approach to investigate the transcriptome dynamics of 48 samples which include the leaf and root tissues of six contrasting heat stress responsive chickpea genotypes at the vegetative and reproductive stages of plant development. A total of 14,544 unique, differentially expressed genes (DEGs) were identified across different combinations studied. These DEGs were mainly involved in metabolic processes, cell wall remodeling, calcium signaling, and photos...
Drought and salinity are the major factors that limit chickpea production worldwide. We performed wh...
Understanding the molecular differences in plant genotypes contrasting for heat sensitivity can prov...
In the context of climate change, heat stress during the reproductive stages of chickpea (Cicer arie...
Chickpea (Cicer arietinum L.) production is highly susceptible to heat stress (day/night temperatur...
Chickpea (Cicer arietinum L.), an important legume crop, is adversely affected by abiotic stresses s...
Heat stress/high temperatures during flowering and pod development is increasingly becoming a major ...
Chickpea (Cicer arietinum L.), an important legume crop, is adversely affected by abiotic stresses ...
Drought is the most important constraint that effects chickpea production globally. RNA-Seq has grea...
BACKGROUND: Cultivated chickpea ( Cicer arietinum) has a narrow genetic base making it difficult for...
Chickpea (Cicer arietinum L.) is the second most important winter crop which is consumed globally du...
<div><p>Low temperature injury is one of the most significant causes of crop damage worldwide. Cold ...
In the context of climate change, heat stress during the reproductive stages of chickpea (Cicer arie...
In the context of climate change, heat stress during the reproductive stages of chickpea (Cicer arie...
In the context of climate change, heat stress during the reproductive stages of chickpea (Cicer arie...
Low temperature injury is one of the most significant causes of crop damage worldwide. Cold acclimat...
Drought and salinity are the major factors that limit chickpea production worldwide. We performed wh...
Understanding the molecular differences in plant genotypes contrasting for heat sensitivity can prov...
In the context of climate change, heat stress during the reproductive stages of chickpea (Cicer arie...
Chickpea (Cicer arietinum L.) production is highly susceptible to heat stress (day/night temperatur...
Chickpea (Cicer arietinum L.), an important legume crop, is adversely affected by abiotic stresses s...
Heat stress/high temperatures during flowering and pod development is increasingly becoming a major ...
Chickpea (Cicer arietinum L.), an important legume crop, is adversely affected by abiotic stresses ...
Drought is the most important constraint that effects chickpea production globally. RNA-Seq has grea...
BACKGROUND: Cultivated chickpea ( Cicer arietinum) has a narrow genetic base making it difficult for...
Chickpea (Cicer arietinum L.) is the second most important winter crop which is consumed globally du...
<div><p>Low temperature injury is one of the most significant causes of crop damage worldwide. Cold ...
In the context of climate change, heat stress during the reproductive stages of chickpea (Cicer arie...
In the context of climate change, heat stress during the reproductive stages of chickpea (Cicer arie...
In the context of climate change, heat stress during the reproductive stages of chickpea (Cicer arie...
Low temperature injury is one of the most significant causes of crop damage worldwide. Cold acclimat...
Drought and salinity are the major factors that limit chickpea production worldwide. We performed wh...
Understanding the molecular differences in plant genotypes contrasting for heat sensitivity can prov...
In the context of climate change, heat stress during the reproductive stages of chickpea (Cicer arie...