Genome-wide association study for phosphate deficiency responsive root hair elongation in chickpea
Date
2020
Journal Title
Journal ISSN
Volume Title
Publisher
Springer Nature Publishing AG
Abstract
Root hairs (RHs) are single-celled elongated epidermal cells and play a vital role in nutrient absorption, particularly for immobile
minerals like phosphorus (P). As an adaptive response to P deficiency, an increase in RH length enhances root-soil contact and
absorptive area for P absorption. Genetic variations have been reported for RH length and its response to P deficiency in plants.
However, only a few association studies have been conducted to identify genes and genetic loci associated with RH length. Here,
we screened desi chickpea accessions for RH length and its plasticity under P deficiency. Further, the genome-wide association
study (GWAS) was conducted to identify the genetic loci associated with RH length in P deficient and sufficient conditions.
Although high variability was observed in terms of RH length in diverse genotypes, majority of the accessions showed typical
response of increase in RH length in low P. Genome-wide association mapping identified many SNPs with significant associations with RH length in P-sufficient and P-deficient conditions. A few candidate genes for RH length in P deficient (SIZ1-like
and HAD superfamily protein) and sufficient (RSL2-like and SMAP1-like) conditions
were identified which have known roles in RH development and P deficiency response or both. Highly associated loci and
candidate genes identified in this study would be useful for genomic-assisted breeding to develop P-efficient chickpea.
Description
Accepted date: 16 August 2020
Keywords
Root system architecture, Phosphate deficiency, Root hair, Legume, P-uptake, GWAS
Citation
Functional & Integrative Genomics, 20: 775–786
