Improved pearl millet genomes representing the global heterotic pool offer a framework for molecular breeding applications

Author:

Ramu PunnaORCID,Srivastava Rakesh K.ORCID,Sanyal Abhijit,Fengler Kevin,Cao Jun,Zhang YunORCID,Nimkar Mitali,Gerke Justin,Shreedharan Sriram,Llaca VictorORCID,May Gregory,Peterson-Burch BrookeORCID,Lin Haining,King Matthew,Das Sayan,Bhupesh Vaid,Mandaokar Ajin,Maruthachalam KarunakaranORCID,Krishnamurthy Pobbathi,Gandhi HarishORCID,Rathore AbhishekORCID,Gupta Rajeev,Chitikineni Annapurna,Bajaj Prasad,Gupta S. K.ORCID,Satyavathi C. Tara,Pandravada Anand,Varshney Rajeev K.ORCID,Babu RamanORCID

Abstract

AbstractHigh-quality reference genome assemblies, representative of global heterotic patterns, offer an ideal platform to accurately characterize and utilize genetic variation in the primary gene pool of hybrid crops. Here we report three platinum grade de-novo, near gap-free, chromosome-level reference genome assemblies from the active breeding germplasm in pearl millet with a high degree of contiguity, completeness, and accuracy. An improved Tift genome (Tift23D2B1-P1-P5) assembly has a contig N50 ~ 7,000-fold (126 Mb) compared to the previous version and better alignment in centromeric regions. Comparative genome analyses of these three lines clearly demonstrate a high level of collinearity and multiple structural variations, including inversions greater than 1 Mb. Differential genes in improved Tift genome are enriched for serine O-acetyltransferase and glycerol-3-phosphate metabolic process which play an important role in improving the nutritional quality of seed protein and disease resistance in plants, respectively. Multiple marker-trait associations are identified for a range of agronomic traits, including grain yield through genome-wide association study. Improved genome assemblies and marker resources developed in this study provide a comprehensive framework/platform for future applications such as marker-assisted selection of mono/oligogenic traits as well as whole-genome prediction and haplotype-based breeding of complex traits.

Publisher

Springer Science and Business Media LLC

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,Medicine (miscellaneous)

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