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Discovery of a Novel Induced Polymorphism in SD1 Gene Governing Semi-Dwarfism in Rice and Development of a Functional Marker for Marker-Assisted Selection

The semi-dwarfing allele, sd1-d, has been widely utilized in developing high-yielding rice cultivars across the world. Originally identified from the rice cultivar Dee-Geo-Woo-Gen (DGWG), sd1-d, derived from a spontaneous mutation, has a 383-bp deletion in the SD1 gene. To date, as many as seven all...

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Autores principales: Bhuvaneswari, Shivashankar, Gopala Krishnan, Subbaiyan, Ellur, Ranjith Kumar, Vinod, Kunnummal Kurungara, Bollinedi, Haritha, Bhowmick, Prolay Kumar, Bansal, Vijay Prakash, Nagarajan, Mariappan, Singh, Ashok Kumar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7570060/
https://www.ncbi.nlm.nih.gov/pubmed/32937792
http://dx.doi.org/10.3390/plants9091198
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author Bhuvaneswari, Shivashankar
Gopala Krishnan, Subbaiyan
Ellur, Ranjith Kumar
Vinod, Kunnummal Kurungara
Bollinedi, Haritha
Bhowmick, Prolay Kumar
Bansal, Vijay Prakash
Nagarajan, Mariappan
Singh, Ashok Kumar
author_facet Bhuvaneswari, Shivashankar
Gopala Krishnan, Subbaiyan
Ellur, Ranjith Kumar
Vinod, Kunnummal Kurungara
Bollinedi, Haritha
Bhowmick, Prolay Kumar
Bansal, Vijay Prakash
Nagarajan, Mariappan
Singh, Ashok Kumar
author_sort Bhuvaneswari, Shivashankar
collection PubMed
description The semi-dwarfing allele, sd1-d, has been widely utilized in developing high-yielding rice cultivars across the world. Originally identified from the rice cultivar Dee-Geo-Woo-Gen (DGWG), sd1-d, derived from a spontaneous mutation, has a 383-bp deletion in the SD1 gene. To date, as many as seven alleles of the SD1 gene have been identified and used in rice improvement, either with a functional single-nucleotide polymorphism (SNP), with insertion–deletions (InDels), or both. Here, we report discovery of a novel SNP in the SD1 gene from the rice genotype, Pusa 1652. Genetic analysis revealed that the inheritance of the semi-dwarfism in Pusa 1652 is monogenic and recessive, but it did not carry the sd1-d allele. However, response to exogenous gibberellic acid (GA(3)) application and the subsequent bulked segregant and linkage analyses confirmed that the SD1 gene is involved in the plant height reduction in Pusa 1652. Sequencing of the SD1 gene from Pusa 1652 revealed a novel transition in exon 3 (T/A) causing a nonsense mutation at the 300th codon. The stop codon leads to premature termination, resulting in a truncated protein of OsGA20ox2 obstructing the GA(3) biosynthesis pathway. This novel recessive allele, named sd1-bm, is derived from Bindli Mutant 34 (BM34), a γ-ray induced mutant of a short-grain aromatic landrace, Bindli. BM34 is the parent of an aromatic semi-dwarf cultivar, Pusa 1176, from which Pusa 1652 is derived. The semi-dwarfing allele, sd1-bm, was further validated by developing a derived cleaved amplified polymorphic sequence (dCAPS) marker, AKS-sd1. This allele provides an alternative to the most widely used sd1-d in rice improvement programs and the functional dCAPS marker will facilitate marker-assisted introgression of the semi-dwarf trait into tall genotypes.
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spelling pubmed-75700602020-10-29 Discovery of a Novel Induced Polymorphism in SD1 Gene Governing Semi-Dwarfism in Rice and Development of a Functional Marker for Marker-Assisted Selection Bhuvaneswari, Shivashankar Gopala Krishnan, Subbaiyan Ellur, Ranjith Kumar Vinod, Kunnummal Kurungara Bollinedi, Haritha Bhowmick, Prolay Kumar Bansal, Vijay Prakash Nagarajan, Mariappan Singh, Ashok Kumar Plants (Basel) Article The semi-dwarfing allele, sd1-d, has been widely utilized in developing high-yielding rice cultivars across the world. Originally identified from the rice cultivar Dee-Geo-Woo-Gen (DGWG), sd1-d, derived from a spontaneous mutation, has a 383-bp deletion in the SD1 gene. To date, as many as seven alleles of the SD1 gene have been identified and used in rice improvement, either with a functional single-nucleotide polymorphism (SNP), with insertion–deletions (InDels), or both. Here, we report discovery of a novel SNP in the SD1 gene from the rice genotype, Pusa 1652. Genetic analysis revealed that the inheritance of the semi-dwarfism in Pusa 1652 is monogenic and recessive, but it did not carry the sd1-d allele. However, response to exogenous gibberellic acid (GA(3)) application and the subsequent bulked segregant and linkage analyses confirmed that the SD1 gene is involved in the plant height reduction in Pusa 1652. Sequencing of the SD1 gene from Pusa 1652 revealed a novel transition in exon 3 (T/A) causing a nonsense mutation at the 300th codon. The stop codon leads to premature termination, resulting in a truncated protein of OsGA20ox2 obstructing the GA(3) biosynthesis pathway. This novel recessive allele, named sd1-bm, is derived from Bindli Mutant 34 (BM34), a γ-ray induced mutant of a short-grain aromatic landrace, Bindli. BM34 is the parent of an aromatic semi-dwarf cultivar, Pusa 1176, from which Pusa 1652 is derived. The semi-dwarfing allele, sd1-bm, was further validated by developing a derived cleaved amplified polymorphic sequence (dCAPS) marker, AKS-sd1. This allele provides an alternative to the most widely used sd1-d in rice improvement programs and the functional dCAPS marker will facilitate marker-assisted introgression of the semi-dwarf trait into tall genotypes. MDPI 2020-09-14 /pmc/articles/PMC7570060/ /pubmed/32937792 http://dx.doi.org/10.3390/plants9091198 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bhuvaneswari, Shivashankar
Gopala Krishnan, Subbaiyan
Ellur, Ranjith Kumar
Vinod, Kunnummal Kurungara
Bollinedi, Haritha
Bhowmick, Prolay Kumar
Bansal, Vijay Prakash
Nagarajan, Mariappan
Singh, Ashok Kumar
Discovery of a Novel Induced Polymorphism in SD1 Gene Governing Semi-Dwarfism in Rice and Development of a Functional Marker for Marker-Assisted Selection
title Discovery of a Novel Induced Polymorphism in SD1 Gene Governing Semi-Dwarfism in Rice and Development of a Functional Marker for Marker-Assisted Selection
title_full Discovery of a Novel Induced Polymorphism in SD1 Gene Governing Semi-Dwarfism in Rice and Development of a Functional Marker for Marker-Assisted Selection
title_fullStr Discovery of a Novel Induced Polymorphism in SD1 Gene Governing Semi-Dwarfism in Rice and Development of a Functional Marker for Marker-Assisted Selection
title_full_unstemmed Discovery of a Novel Induced Polymorphism in SD1 Gene Governing Semi-Dwarfism in Rice and Development of a Functional Marker for Marker-Assisted Selection
title_short Discovery of a Novel Induced Polymorphism in SD1 Gene Governing Semi-Dwarfism in Rice and Development of a Functional Marker for Marker-Assisted Selection
title_sort discovery of a novel induced polymorphism in sd1 gene governing semi-dwarfism in rice and development of a functional marker for marker-assisted selection
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7570060/
https://www.ncbi.nlm.nih.gov/pubmed/32937792
http://dx.doi.org/10.3390/plants9091198
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