Exploring Identity-By-Descent Segments and Putative Functions Using Different Foundation Parents in Maize.

Maize foundation parents (FPs) play no-alternative roles in hybrid breeding because they were widely used in the development of new lines and hybrids. The combination of different identity-by-descent (IBD) segments and genes could account for the formation patterns of different FPs, and knowledge of...

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Main Authors: Xun Wu, Yongxiang Li, Junjie Fu, Xin Li, Chunhui Li, Dengfeng Zhang, Yunsu Shi, Yanchun Song, Yu Li, Tianyu Wang
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2016-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5172581?pdf=render
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spelling doaj-1945b7635f5f4a48a161148e8e6ad4ae2020-11-25T00:42:28ZengPublic Library of Science (PLoS)PLoS ONE1932-62032016-01-011112e016837410.1371/journal.pone.0168374Exploring Identity-By-Descent Segments and Putative Functions Using Different Foundation Parents in Maize.Xun WuYongxiang LiJunjie FuXin LiChunhui LiDengfeng ZhangYunsu ShiYanchun SongYu LiTianyu WangMaize foundation parents (FPs) play no-alternative roles in hybrid breeding because they were widely used in the development of new lines and hybrids. The combination of different identity-by-descent (IBD) segments and genes could account for the formation patterns of different FPs, and knowledge of these IBD regions would provide an extensive foundation for the development of new candidate FP lines in future maize breeding. In this paper, a panel of 304 elite lines derived from FPs, i.e., B73, 207, Mo17, and Huangzaosi (HZS), was collected and analyzed using 43,252 single nucleotide polymorphism (SNP) markers. Most IBD segments specific to particular FP groups were identified, including 116 IBD segments in B73, 105 in Mo17, 111 in 207, and 190 in HZS. In these regions, 423 quantitative trait nucleotides (QTNs) associated with 15 agronomic traits and 804 candidate genes were identified. Some known adaptation-related genes, e.g., dwarf8 and vgt1 in HZS, zcn8 and epc in Mo17, and ZmCCT in 207, were validated as being tightly linked to particular IBD segments. In addition, numerous new candidate genes were also identified. For example, GRMZM2G154278 in HZS, which belongs to the cell cycle control family, was closely linked to a QTN of the ear height/plant height (EH/PH) trait; GRMZM2G051943 in 207, which encodes an endochitinase precursor (EP) chitinase, was closely linked to a QTN for kernel density; and GRMZM2G170586 in Mo17 was closely linked to a QTN for ear diameter. Complex correlations among these genes were also found. Many IBD segments and genes were included in the formation of FP lines, and complex regulatory networks exist among them. These results provide new insights on the genetic basis of complex traits and provide new candidate IBD regions or genes for the improvement of special traits in maize production.http://europepmc.org/articles/PMC5172581?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Xun Wu
Yongxiang Li
Junjie Fu
Xin Li
Chunhui Li
Dengfeng Zhang
Yunsu Shi
Yanchun Song
Yu Li
Tianyu Wang
spellingShingle Xun Wu
Yongxiang Li
Junjie Fu
Xin Li
Chunhui Li
Dengfeng Zhang
Yunsu Shi
Yanchun Song
Yu Li
Tianyu Wang
Exploring Identity-By-Descent Segments and Putative Functions Using Different Foundation Parents in Maize.
PLoS ONE
author_facet Xun Wu
Yongxiang Li
Junjie Fu
Xin Li
Chunhui Li
Dengfeng Zhang
Yunsu Shi
Yanchun Song
Yu Li
Tianyu Wang
author_sort Xun Wu
title Exploring Identity-By-Descent Segments and Putative Functions Using Different Foundation Parents in Maize.
title_short Exploring Identity-By-Descent Segments and Putative Functions Using Different Foundation Parents in Maize.
title_full Exploring Identity-By-Descent Segments and Putative Functions Using Different Foundation Parents in Maize.
title_fullStr Exploring Identity-By-Descent Segments and Putative Functions Using Different Foundation Parents in Maize.
title_full_unstemmed Exploring Identity-By-Descent Segments and Putative Functions Using Different Foundation Parents in Maize.
title_sort exploring identity-by-descent segments and putative functions using different foundation parents in maize.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2016-01-01
description Maize foundation parents (FPs) play no-alternative roles in hybrid breeding because they were widely used in the development of new lines and hybrids. The combination of different identity-by-descent (IBD) segments and genes could account for the formation patterns of different FPs, and knowledge of these IBD regions would provide an extensive foundation for the development of new candidate FP lines in future maize breeding. In this paper, a panel of 304 elite lines derived from FPs, i.e., B73, 207, Mo17, and Huangzaosi (HZS), was collected and analyzed using 43,252 single nucleotide polymorphism (SNP) markers. Most IBD segments specific to particular FP groups were identified, including 116 IBD segments in B73, 105 in Mo17, 111 in 207, and 190 in HZS. In these regions, 423 quantitative trait nucleotides (QTNs) associated with 15 agronomic traits and 804 candidate genes were identified. Some known adaptation-related genes, e.g., dwarf8 and vgt1 in HZS, zcn8 and epc in Mo17, and ZmCCT in 207, were validated as being tightly linked to particular IBD segments. In addition, numerous new candidate genes were also identified. For example, GRMZM2G154278 in HZS, which belongs to the cell cycle control family, was closely linked to a QTN of the ear height/plant height (EH/PH) trait; GRMZM2G051943 in 207, which encodes an endochitinase precursor (EP) chitinase, was closely linked to a QTN for kernel density; and GRMZM2G170586 in Mo17 was closely linked to a QTN for ear diameter. Complex correlations among these genes were also found. Many IBD segments and genes were included in the formation of FP lines, and complex regulatory networks exist among them. These results provide new insights on the genetic basis of complex traits and provide new candidate IBD regions or genes for the improvement of special traits in maize production.
url http://europepmc.org/articles/PMC5172581?pdf=render
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