Genome-Wide Meta-Analysis of QTLs Associated with Root Traits and Implications for Maize Breeding.

Published
April 14, 2023
Journal
International journal of molecular sciences
PICOID
af00901e
DOI
Citations
8
Keywords
GWAS, abiotic stress, candidate genes, expression analysis, meta-QTLs, root systemarchitecture
Copyright
Patients/Population/Participants

maize, sorghum, rice

Intervention

QTLs, marker-trait associations

Comparison

previous genome-wide association studies for root traits

Outcome

20 maize MQTLs syntenic to 27 rice MQTLs for root traits, 442 gene models with significant expression in various tissues

Abstract

P
I
C
O

Root system architecture (RSA), also known as root morphology, is critical in plant acquisition of soil resources, plant growth, and yield formation. Many QTLs associated with RSA or root traits in maize have been identified using several bi-parental populations, particularly in response to various environmental factors. In the present study, a meta-analysis of QTLs associated with root traits was performed in maize using 917 QTLs retrieved from 43 mapping studies published from 1998 to 2020. A total of 631 QTLs were projected onto a consensus map involving 19,714 markers, which led to the prediction of 68 meta-QTLs (MQTLs). Among these 68 MQTLs, 36 MQTLs were validated with the marker-trait associations available from previous genome-wide association studies for root traits. The use of comparative genomics approaches revealed several gene models conserved among the maize, sorghum, and rice genomes. Among the conserved genomic regions, the ortho-MQTL analysis uncovered 20 maize MQTLs syntenic to 27 rice MQTLs for root traits. Functional analysis of some high-confidence MQTL regions revealed 442 gene models, which were then subjected to in silico expression analysis, yielding 235 gene models with significant expression in various tissues. Furthermore, 16 known genes viz.,

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