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 …

Breeding strategies for adaptation of pearl millet and sorghum to climate variability and change in West Africa

BIG Haussmann, H Fred Rattunde… - Journal of Agronomy …, 2012 - Wiley Online Library
Semi‐arid and subhumid West Africa is characterized by high inter‐annual rainfall
variability, with variable onset of the rainy season, somewhat more predictable endings, and …

A draft genome sequence of the pulse crop chickpea (Cicer arietinum L.)

M Jain, G Misra, RK Patel, P Priya, S Jhanwar… - The Plant …, 2013 - Wiley Online Library
Cicer arietinum L.(chickpea) is the third most important food legume crop. We have
generated the draft sequence of a desi‐type chickpea genome using next‐generation …

Transcriptome analyses reveal genotype-and developmental stage-specific molecular responses to drought and salinity stresses in chickpea

R Garg, R Shankar, B Thakkar, H Kudapa… - Scientific reports, 2016 - nature.com
Drought and salinity are the major factors that limit chickpea production worldwide. We
performed whole transcriptome analyses of chickpea genotypes to investigate the molecular …

An advanced draft genome assembly of a desi type chickpea (Cicer arietinum L.)

S Parween, K Nawaz, R Roy, AK Pole… - Scientific reports, 2015 - nature.com
Chickpea (Cicer arietinum L.) is an important pulse legume crop. We previously reported a
draft genome assembly of the desi chickpea cultivar ICC 4958. Here we report an advanced …

Deep Transcriptome Sequencing of Wild Halophyte Rice, Porteresia coarctata, Provides Novel Insights into the Salinity and Submergence Tolerance Factors

R Garg, M Verma, S Agrawal, R Shankar… - DNA …, 2014 - academic.oup.com
Porteresia coarctata is a wild relative of rice with capability of high salinity and submergence
tolerance. The transcriptome analyses of Porteresia can lead to the identification of …

Fusarium wilt affecting chickpea crop

W Jendoubi, M Bouhadida, A Boukteb, M Béji… - Agriculture, 2017 - mdpi.com
Chickpea (Cicer arietinum L.) contributes 18% of the global production of grain legume and
serves as an important source of dietary protein. An important decrease in cropping area …

Genomewide discovery of DNA polymorphisms in rice cultivars with contrasting drought and salinity stress response and their functional relevance

M Jain, KC Moharana, R Shankar… - Plant Biotechnology …, 2014 - Wiley Online Library
Next‐generation sequencing technologies provide opportunities to understand the genetic
basis of phenotypic differences, such as abiotic stress response, even in the closely related …

Draft genome sequence of Cicer reticulatum L., the wild progenitor of chickpea provides a resource for agronomic trait improvement

S Gupta, K Nawaz, S Parween, R Roy, K Sahu… - DNA …, 2017 - academic.oup.com
Cicer reticulatum L. is the wild progenitor of the fourth most important legume crop chickpea
(C. arietinum L.). We assembled short-read sequences into 416 Mb draft genome of C …

Identification and characterization of wilt and salt stress-responsive microRNAs in chickpea through high-throughput sequencing

D Kohli, G Joshi, AA Deokar, AR Bhardwaj, M Agarwal… - PloS one, 2014 - journals.plos.org
Chickpea (Cicer arietinum) is the second most widely grown legume worldwide and is the
most important pulse crop in the Indian subcontinent. Chickpea productivity is adversely …