Asset Details
MbrlCatalogueTitleDetail
Do you wish to reserve the book?
Multiple QTL Mapping in Autopolyploids: A Random-Effect Model Approach with Application in a Hexaploid Sweetpotato Full-Sib Population
by
Zeng, Zhao-Bang
, Mosquera, Veronica
, Olukolu, Bode A
, Gemenet, Dorcus C
, Diaz, Federico
, Gruneberg, Wolfgang J
, Yencho, G Craig
, Khan, Awais
, Wood, Joshua C
, Buell, C Robin
, da Silva Pereira, Guilherme
, Mollinari, Marcelo
in
Breeding
/ Chromosomes
/ Developing countries
/ Gene mapping
/ Genetics
/ Genomes
/ Genotype & phenotype
/ Genotypes
/ Genotyping
/ Investigations
/ Ipomoea batatas
/ LDCs
/ Mapping
/ Population
/ Population (statistical)
/ Quantitative trait loci
2020
Hey, we have placed the reservation for you!
By the way, why not check out events that you can attend while you pick your title.
You are currently in the queue to collect this book. You will be notified once it is your turn to collect the book.
Oops! Something went wrong.
Looks like we were not able to place the reservation. Kindly try again later.
Are you sure you want to remove the book from the shelf?
Multiple QTL Mapping in Autopolyploids: A Random-Effect Model Approach with Application in a Hexaploid Sweetpotato Full-Sib Population
by
Zeng, Zhao-Bang
, Mosquera, Veronica
, Olukolu, Bode A
, Gemenet, Dorcus C
, Diaz, Federico
, Gruneberg, Wolfgang J
, Yencho, G Craig
, Khan, Awais
, Wood, Joshua C
, Buell, C Robin
, da Silva Pereira, Guilherme
, Mollinari, Marcelo
in
Breeding
/ Chromosomes
/ Developing countries
/ Gene mapping
/ Genetics
/ Genomes
/ Genotype & phenotype
/ Genotypes
/ Genotyping
/ Investigations
/ Ipomoea batatas
/ LDCs
/ Mapping
/ Population
/ Population (statistical)
/ Quantitative trait loci
2020
Oops! Something went wrong.
While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Multiple QTL Mapping in Autopolyploids: A Random-Effect Model Approach with Application in a Hexaploid Sweetpotato Full-Sib Population
by
Zeng, Zhao-Bang
, Mosquera, Veronica
, Olukolu, Bode A
, Gemenet, Dorcus C
, Diaz, Federico
, Gruneberg, Wolfgang J
, Yencho, G Craig
, Khan, Awais
, Wood, Joshua C
, Buell, C Robin
, da Silva Pereira, Guilherme
, Mollinari, Marcelo
in
Breeding
/ Chromosomes
/ Developing countries
/ Gene mapping
/ Genetics
/ Genomes
/ Genotype & phenotype
/ Genotypes
/ Genotyping
/ Investigations
/ Ipomoea batatas
/ LDCs
/ Mapping
/ Population
/ Population (statistical)
/ Quantitative trait loci
2020
Please be aware that the book you have requested cannot be checked out. If you would like to checkout this book, you can reserve another copy
We have requested the book for you!
Your request is successful and it will be processed during the Library working hours. Please check the status of your request in My Requests.
Oops! Something went wrong.
Looks like we were not able to place your request. Kindly try again later.
Multiple QTL Mapping in Autopolyploids: A Random-Effect Model Approach with Application in a Hexaploid Sweetpotato Full-Sib Population
Journal Article
Multiple QTL Mapping in Autopolyploids: A Random-Effect Model Approach with Application in a Hexaploid Sweetpotato Full-Sib Population
2020
Request Book From Autostore
and Choose the Collection Method
Overview
Abstract
Genetic analysis in autopolyploids is a very complicated subject due to the enormous number of genotypes at a locus that needs to be considered. For instance, the number of...
In developing countries, the sweetpotato, Ipomoea batatas (L.) Lam. (2n=6x=90), is an important autopolyploid species, both socially and economically. However, quantitative trait loci (QTL) mapping has remained limited due to its genetic complexity. Current fixed-effect models can fit only a single QTL and are generally hard to interpret. Here, we report the use of a random-effect model approach to map multiple QTL based on score statistics in a sweetpotato biparental population (‘Beauregard’ × ‘Tanzania’) with 315 full-sibs. Phenotypic data were collected for eight yield component traits in six environments in Peru, and jointly adjusted means were obtained using mixed-effect models. An integrated linkage map consisting of 30,684 markers distributed along 15 linkage groups (LGs) was used to obtain the genotype conditional probabilities of putative QTL at every centiMorgan position. Multiple interval mapping was performed using our R package QTLpoly and detected a total of 13 QTL, ranging from none to four QTL per trait, which explained up to 55% of the total variance. Some regions, such as those on LGs 3 and 15, were consistently detected among root number and yield traits, and provided a basis for candidate gene search. In addition, some QTL were found to affect commercial and noncommercial root traits distinctly. Further best linear unbiased predictions were decomposed into additive allele effects and were used to compute multiple QTL-based breeding values for selection. Together with quantitative genotyping and its appropriate usage in linkage analyses, this QTL mapping methodology will facilitate the use of genomic tools in sweetpotato breeding as well as in other autopolyploids.
Publisher
Oxford University Press,Genetics Society of America
Subject
This website uses cookies to ensure you get the best experience on our website.