Logo Lanfrica
  • Accueil
  • Atlas
  • Analyses
  • Documentation
  • Sign in

© 2026 Lanfrica. Tous droits réservés. Tous les droits d'auteur des ressources affichées sur le site Web Lanfrica appartiennent aux détenteurs de droits d'auteur d'origine, sauf indication contraire explicite.

Genetic dissection of root architecture in Ethiopian sorghum landraces

Domaine:

agriculture

Type de record:

dataset
Créateur:
KasTemAndEmm
Éditeur:
Spr
Hôte:
Abstract The root system architecture (RSA) of crop plants influences adaptation to water-limited conditions and determines the capacity of a plant to access soil water and nutrients. Four key root traits (number, angle, length and dry mass) were evaluated in a diversity panel of 1,171 Ethiopian sorghum landraces using purpose-built root chambers. Significant genetic variation was observed in all studied root traits, with nodal root angle ranging from 16.4° to 26.6°, with a high repeatability of 78.9%. Genome wide association studies (GWAS) identified a total of 22 genomic regions associated with root traits which were distributed on all chromosomes except chromosome SBI-10. Among the 22 root genomic regions, 15 co-located with RSA trait QTL previously identified in sorghum, with the remaining seven representing novel RSA QTL. The majority (85.7%) of identified root angle QTL also co-localized with QTL previously identified for stay-green in sorghum. This suggests that the stay-green phenotype might be associated with root architecture that enhances water extraction during water stress conditions. The results open avenues for manipulating root phenotypes to improve productivity in abiotic stress environments via marker-assisted selection.

Visit

doi.org

Languages

Amharic

Licenses

https://creativecommons.org/licenses/by/4.0/

Similaires

Assessing genetic, racial, and geographic diversity among Ethiopian sorghum landraces and implications for heterotic potential for hybrid sorghum breedingGenetic diversity of Ethiopian durum wheat landracesCombining ability study among key Ethiopian sorghum landraces collectionQTL analysis in multiple sorghum mapping populations facilitates dissection of the genetic control of agronomic and yield-related traits in sorghum [Sorghum bicolor (Moench)]A crossing block for determining heterotic pools among Ethiopian sorghum landracesGenome-wide association study reveals genomic loci influencing agronomic traits in Ethiopian sorghum (Sorghum bicolor (L.) Moench) landraces

Assessing genetic, racial, and geographic diversity among Ethiopian sorghum landraces and implications for heterotic potential for hybrid sorghum breeding

Genetic diversity of Ethiopian durum wheat landraces

Genetic diversity and population structure assessment in crops is essential for marker trait associa

Combining ability study among key Ethiopian sorghum landraces collection

Data on agronomic traits of maturity, sterility, plant height, grain yield and plant aspect score co

QTL analysis in multiple sorghum mapping populations facilitates dissection of the genetic control of agronomic and yield-related traits in sorghum [Sorghum bicolor (Moench)]

Abstract The genetic architectures of agronomic and yield-related traits are expected to i

A crossing block for determining heterotic pools among Ethiopian sorghum landraces

Crossing block for key landraces to being crossed to 6 elite lines (3 A and 3 ms3 R)

Genome-wide association study reveals genomic loci influencing agronomic traits in Ethiopian sorghum (Sorghum bicolor (L.) Moench) landraces