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Characterization of the temporal and spatial expression of wheat (<Emphasis Type="Italic">Triticum aestivum</Emphasis> L.) plant height at the QTL level and their influence on yield-related traits
Authors:Na Zhang  Xiaoli Fan  Fa Cui  Chunhua Zhao  Wei Zhang  Xueqiang Zhao  Lijuan Yang  Ruiqing Pan  Mei Chen  Jie Han  Jun Ji  Dongcheng Liu  Zongwu Zhao  Yiping Tong  Aimin Zhang  Tao Wang  Junming Li
Institution:1.Center for Agricultural Resources Research, Institute of Genetics and Developmental Biology,Chinese Academy of Sciences,Shijiazhuang,China;2.Genetic Improvement Centre of Agricultural and Forest Crops, College of Agriculture,Ludong University,Yantai,China;3.Chengdu Institute of Biology,Chinese Academy of Sciences,Chengdu,China;4.Xinxiang Academy of Agricultural Sciences,Xinxiang,China;5.University of Chinese Academy of Sciences,Beijing,China;6.State Key Laboratory of Plant Cell and Chromosome Engineering,Chinese Academy of Sciences,Beijing,China
Abstract:

Key message

The temporal and spatial expression patterns of stable QTL for plant height and their influences on yield were characterized.

Abstract

Plant height (PH) is a complex trait in wheat (Triticum aestivum L.) that includes the spike length (SL) and the internode lengths from the first to the fifth internode, which are counted from the top and abbreviated as FIRITL, SECITL, THIITL, FOUITL, and FIFITL, respectively. This study identified eight putative additive quantitative trait loci (QTL) for PH. In addition, unconditional and conditional QTL mapping were used to analyze the temporal and spatial expression patterns of five stable QTL for PH. qPh-3A mainly regulated SL, FIRITL, and FIFITL to affect PH during the booting–heading stage (BS–HS); qPh-3D regulated all internode lengths to affect PH, especially during the BS–HS; before HS, qPh-4B mainly affected FIRITL, SECITL, THIITL, and FOUITL and qPh-5A.1 mainly affected SECITL, THIITL, and FOUITL to regulate PH; and qPh-6B mainly regulated FIRITL to affect the PH after the booting stage (BS). qPhdv-4B, a QTL for the response of PH to nitrogen stress, was stable and co-localized with qPh-4B. All five stable QTL, except for qPh-3A, were related to the 1000 kernel weight and yield per plant. Regions of qPh-3A, qPh-3D, qPh-4B, qPh-5A.1, and qPh-6B showed synteny to parts of rice chromosomes 1, 1, 3, 9, and 2, respectively. Based on comparative genomics analysis, Rht-B1b was cloned and mapped in the CI of qPh-4B. This report provides useful information for fine mapping of the stable QTL for PH and the genetic improvement of wheat plant type.
Keywords:
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