Genome-wide association study and genomic selection for soybean chlorophyll content associated with soybean cyst nematode tolerance

Abstract Background Soybean cyst nematode (SCN), Heterodera glycines Ichinohe, has been one of the most devastating pathogens affecting soybean production. In the United States alone, SCN damage accounted for more than $1 billion loss annually. With a narrow genetic background of the currently avail...

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Main Authors: Waltram Second Ravelombola, Jun Qin, Ainong Shi, Liana Nice, Yong Bao, Aaron Lorenz, James H. Orf, Nevin D. Young, Senyu Chen
Format: Article
Language:English
Published: BMC 2019-11-01
Series:BMC Genomics
Subjects:
Online Access:http://link.springer.com/article/10.1186/s12864-019-6275-z
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spelling doaj-0a3f222ee4ff4f939395a3b7122722762020-11-25T01:08:43ZengBMCBMC Genomics1471-21642019-11-0120111810.1186/s12864-019-6275-zGenome-wide association study and genomic selection for soybean chlorophyll content associated with soybean cyst nematode toleranceWaltram Second Ravelombola0Jun Qin1Ainong Shi2Liana Nice3Yong Bao4Aaron Lorenz5James H. Orf6Nevin D. Young7Senyu Chen8Department of Horticulture, PTSC316, University of ArkansasDepartment of Horticulture, PTSC316, University of ArkansasDepartment of Horticulture, PTSC316, University of ArkansasSouthern Research & Outreach Center, University of MinnesotaSouthern Research & Outreach Center, University of MinnesotaSouthern Research & Outreach Center, University of MinnesotaSouthern Research & Outreach Center, University of MinnesotaDepartment of Plant Pathology, University of MinnesotaSouthern Research & Outreach Center, University of MinnesotaAbstract Background Soybean cyst nematode (SCN), Heterodera glycines Ichinohe, has been one of the most devastating pathogens affecting soybean production. In the United States alone, SCN damage accounted for more than $1 billion loss annually. With a narrow genetic background of the currently available SCN-resistant commercial cultivars, high risk of resistance breakdown can occur. The objectives of this study were to conduct a genome-wide association study (GWAS) to identify QTL, SNP markers, and candidate genes associated with soybean leaf chlorophyll content tolerance to SCN infection, and to carry out a genomic selection (GS) study for the chlorophyll content tolerance. Results A total of 172 soybean genotypes were evaluated for the effect of SCN HG Type 1.2.3.5.6.7 (race 4) on soybean leaf chlorophyll. The soybean lines were genotyped using a total of 4089 filtered and high-quality SNPs. Results showed that (1) a large variation in SCN tolerance based on leaf chlorophyll content indices (CCI); (2) a total of 22, 14, and 16 SNPs associated with CCI of non-SCN-infected plants, SCN-infected plants, and reduction of CCI SCN, respectively; (3) a new locus of chlorophyll content tolerance to SCN mapped on chromosome 3; (4) candidate genes encoding for Leucine-rich repeat protein, plant hormone signaling molecules, and biomolecule transporters; and (5) an average GS accuracy ranging from 0.31 to 0.46 with all SNPs and varying from 0.55 to 0.76 when GWAS-derived SNP markers were used across five models. This study demonstrated the potential of using genome-wide selection to breed chlorophyll-content-tolerant soybean for managing SCN. Conclusions In this study, soybean accessions with higher CCI under SCN infestation, and molecular markers associated with chlorophyll content related to SCN were identified. In addition, a total of 15 candidate genes associated with chlorophyll content tolerance to SCN in soybean were also identified. These candidate genes will lead to a better understanding of the molecular mechanisms that control chlorophyll content tolerance to SCN in soybean. Genomic selection analysis of chlorophyll content tolerance to SCN showed that using significant SNPs obtained from GWAS could provide better GS accuracy.http://link.springer.com/article/10.1186/s12864-019-6275-zGenome-wide association study (GWAS)Soybean cyst nematode (SCN)Leaf chlorophyll contentSingle nucleotide polymorphism (SNP)Genomic selection (GS)
collection DOAJ
language English
format Article
sources DOAJ
author Waltram Second Ravelombola
Jun Qin
Ainong Shi
Liana Nice
Yong Bao
Aaron Lorenz
James H. Orf
Nevin D. Young
Senyu Chen
spellingShingle Waltram Second Ravelombola
Jun Qin
Ainong Shi
Liana Nice
Yong Bao
Aaron Lorenz
James H. Orf
Nevin D. Young
Senyu Chen
Genome-wide association study and genomic selection for soybean chlorophyll content associated with soybean cyst nematode tolerance
BMC Genomics
Genome-wide association study (GWAS)
Soybean cyst nematode (SCN)
Leaf chlorophyll content
Single nucleotide polymorphism (SNP)
Genomic selection (GS)
author_facet Waltram Second Ravelombola
Jun Qin
Ainong Shi
Liana Nice
Yong Bao
Aaron Lorenz
James H. Orf
Nevin D. Young
Senyu Chen
author_sort Waltram Second Ravelombola
title Genome-wide association study and genomic selection for soybean chlorophyll content associated with soybean cyst nematode tolerance
title_short Genome-wide association study and genomic selection for soybean chlorophyll content associated with soybean cyst nematode tolerance
title_full Genome-wide association study and genomic selection for soybean chlorophyll content associated with soybean cyst nematode tolerance
title_fullStr Genome-wide association study and genomic selection for soybean chlorophyll content associated with soybean cyst nematode tolerance
title_full_unstemmed Genome-wide association study and genomic selection for soybean chlorophyll content associated with soybean cyst nematode tolerance
title_sort genome-wide association study and genomic selection for soybean chlorophyll content associated with soybean cyst nematode tolerance
publisher BMC
series BMC Genomics
issn 1471-2164
publishDate 2019-11-01
description Abstract Background Soybean cyst nematode (SCN), Heterodera glycines Ichinohe, has been one of the most devastating pathogens affecting soybean production. In the United States alone, SCN damage accounted for more than $1 billion loss annually. With a narrow genetic background of the currently available SCN-resistant commercial cultivars, high risk of resistance breakdown can occur. The objectives of this study were to conduct a genome-wide association study (GWAS) to identify QTL, SNP markers, and candidate genes associated with soybean leaf chlorophyll content tolerance to SCN infection, and to carry out a genomic selection (GS) study for the chlorophyll content tolerance. Results A total of 172 soybean genotypes were evaluated for the effect of SCN HG Type 1.2.3.5.6.7 (race 4) on soybean leaf chlorophyll. The soybean lines were genotyped using a total of 4089 filtered and high-quality SNPs. Results showed that (1) a large variation in SCN tolerance based on leaf chlorophyll content indices (CCI); (2) a total of 22, 14, and 16 SNPs associated with CCI of non-SCN-infected plants, SCN-infected plants, and reduction of CCI SCN, respectively; (3) a new locus of chlorophyll content tolerance to SCN mapped on chromosome 3; (4) candidate genes encoding for Leucine-rich repeat protein, plant hormone signaling molecules, and biomolecule transporters; and (5) an average GS accuracy ranging from 0.31 to 0.46 with all SNPs and varying from 0.55 to 0.76 when GWAS-derived SNP markers were used across five models. This study demonstrated the potential of using genome-wide selection to breed chlorophyll-content-tolerant soybean for managing SCN. Conclusions In this study, soybean accessions with higher CCI under SCN infestation, and molecular markers associated with chlorophyll content related to SCN were identified. In addition, a total of 15 candidate genes associated with chlorophyll content tolerance to SCN in soybean were also identified. These candidate genes will lead to a better understanding of the molecular mechanisms that control chlorophyll content tolerance to SCN in soybean. Genomic selection analysis of chlorophyll content tolerance to SCN showed that using significant SNPs obtained from GWAS could provide better GS accuracy.
topic Genome-wide association study (GWAS)
Soybean cyst nematode (SCN)
Leaf chlorophyll content
Single nucleotide polymorphism (SNP)
Genomic selection (GS)
url http://link.springer.com/article/10.1186/s12864-019-6275-z
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