Genome wide association studies on seven yield‐related traits of 183 rice varieties in Bangladesh

Author:

Roy Nilanjan12,Kabir Acramul Haque13ORCID,Zahan Nourin1,Mouna Shahba Tasmiya1,Chakravarty Sakshar45ORCID,Rahman Atif Hasan5,Bayzid Md. Shamsuzzoha5ORCID

Affiliation:

1. Department of Biomedical Engineering Military Institute of Science and Technology Dhaka Bangladesh

2. Molecular, Cellular, and Developmental Biology University of Kansas Lawrence Kansas USA

3. Department of Biomedical Engineering University of Utah Salt Lake City Utah USA

4. Department of Computer Science and Engineering University of California Riverside California USA

5. Department of Computer Science and Engineering Bangladesh University of Engineering and Technology Dhaka Bangladesh

Abstract

AbstractRice genetic diversity is regulated by multiple genes and is largely dependent on various environmental factors. Uncovering the genetic variations associated with the diversity in rice populations is the key to breed stable and high yielding rice varieties. We performed genome wide association studies (GWASs) on seven rice yielding traits (grain length, grain width, grain weight, panicle length, leaf length, leaf width, and leaf angle) based on a population of 183 rice landraces of Bangladesh. Our GWASs reveal various chromosomal regions and candidate genes that are associated with different traits in Bangladeshi rice varieties. Noteworthy was the recurrent implication of chromosome 10 in all three grain‐shape‐related traits (grain length, grain width, and grain weight), indicating its pivotal role in shaping rice grain morphology. Our study also underscores the involvement of transposon gene families across these three traits. For leaf related traits, chromosome 10 was found to harbor regions that are significantly associated with leaf length and leaf width. The results of these association studies support previous findings as well as provide additional insights into the genetic diversity of rice. This is the first known GWAS study on various yield‐related traits in the varieties of Oryza sativa available in Bangladesh—the fourth largest rice‐producing country. We believe this study will accelerate rice genetics research and breeding stable high‐yielding rice in Bangladesh.

Publisher

Wiley

Reference70 articles.

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