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Time-related mapping of quantitative trait loci underlying tiller number in rice

Using time-related phenotypic data, methods of composite interval mapping and multiple-trait composite interval mapping based on least squares were applied to map quantitative trait loci (QTL) underlying the development of tiller number in rice. A recombinant inbred population and a corresponding sa... Full description

Journal Title: Genetics Jan 1999, Vol.151(1), pp.297-303
Main Author: Wu, Wei-Ren
Other Authors: Li, Wei-Ming , Tang, Ding-Zhong , Lu, Hao-Ran , Worland, A
Format: Electronic Article Electronic Article
Language: English
Subjects:
ID: ISSN: 00166731 ; E-ISSN: 19432631
Link: http://search.proquest.com/docview/214128831/?pq-origsite=primo
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title: Time-related mapping of quantitative trait loci underlying tiller number in rice
format: Article
creator:
  • Wu, Wei-Ren
  • Li, Wei-Ming
  • Tang, Ding-Zhong
  • Lu, Hao-Ran
  • Worland, A
subjects:
  • Chromosome Mapping–Genetics
  • Genes, Plant–Genetics
  • Oryza Sativa–Genetics
  • Quantitative Trait, Heritable–Genetics
  • Time Factors–Genetics
  • Genetics
  • Rice
  • Genomics
ispartof: Genetics, Jan 1999, Vol.151(1), pp.297-303
description: Using time-related phenotypic data, methods of composite interval mapping and multiple-trait composite interval mapping based on least squares were applied to map quantitative trait loci (QTL) underlying the development of tiller number in rice. A recombinant inbred population and a corresponding saturated molecular marker linkage map were constructed for the study. Tiller number was recorded every 4 or 5 days for a total of seven times starting at 20 days after sowing. Five QTL were detected on chromosomes 1, 3, and 5. These QTL explained more than half of the genetic variance at the final observation. All the QTL displayed an S-shaped expression curve. Three QTL reached their highest expression rates during active tillering stage, while the other two QTL achieved this either before or after the active tillering stage.
language: eng
source:
identifier: ISSN: 00166731 ; E-ISSN: 19432631
fulltext: fulltext
issn:
  • 00166731
  • 0016-6731
  • 19432631
  • 1943-2631
url: Link


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titleTime-related mapping of quantitative trait loci underlying tiller number in rice
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identifierISSN: 00166731 ; E-ISSN: 19432631
subjectChromosome Mapping–Genetics ; Genes, Plant–Genetics ; Oryza Sativa–Genetics ; Quantitative Trait, Heritable–Genetics ; Time Factors–Genetics ; Genetics ; Rice ; Genomics
descriptionUsing time-related phenotypic data, methods of composite interval mapping and multiple-trait composite interval mapping based on least squares were applied to map quantitative trait loci (QTL) underlying the development of tiller number in rice. A recombinant inbred population and a corresponding saturated molecular marker linkage map were constructed for the study. Tiller number was recorded every 4 or 5 days for a total of seven times starting at 20 days after sowing. Five QTL were detected on chromosomes 1, 3, and 5. These QTL explained more than half of the genetic variance at the final observation. All the QTL displayed an S-shaped expression curve. Three QTL reached their highest expression rates during active tillering stage, while the other two QTL achieved this either before or after the active tillering stage.
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titleTime-related mapping of quantitative trait loci underlying tiller number in rice
authorWu, Wei-Ren ; Li, Wei-Ming ; Tang, Ding-Zhong ; Lu, Hao-Ran ; Worland, A
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abstractUsing time-related phenotypic data, methods of composite interval mapping and multiple-trait composite interval mapping based on least squares were applied to map quantitative trait loci (QTL) underlying the development of tiller number in rice. A recombinant inbred population and a corresponding saturated molecular marker linkage map were constructed for the study. Tiller number was recorded every 4 or 5 days for a total of seven times starting at 20 days after sowing. Five QTL were detected on chromosomes 1, 3, and 5. These QTL explained more than half of the genetic variance at the final observation. All the QTL displayed an S-shaped expression curve. Three QTL reached their highest expression rates during active tillering stage, while the other two QTL achieved this either before or after the active tillering stage.
copBethesda
pubGenetics Society of America
urlhttp://search.proquest.com/docview/214128831/
date1999-01-01