4.8 Article

ZmGA3ox2, a candidate gene for a major QTL, qPH3.1, for plant height in maize

Journal

PLANT JOURNAL
Volume 73, Issue 3, Pages 405-416

Publisher

WILEY
DOI: 10.1111/tpj.12038

Keywords

maize (Zea mays L.); plant height; GA3 ss-hydroxylase; dwarf-1; quantitative trait locus (QTL); haplotype

Categories

Funding

  1. National Basic Research Program of China [2011CB100100]
  2. Science Foundation of the Ministry of Agriculture of China [2011ZX08009-001]
  3. National Hi-Tech program of China [2012AA10307]

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Maize plant height is closely associated with biomass, lodging resistance and grain yield. Determining the genetic basis of plant height by characterizing and cloning plant height genes will guide the genetic improvement of crops. In this study, a quantitative trait locus (QTL) for plant height, qPH3.1, was identified on chromosome3 using populations derived from a cross between Zong3 and its chromosome segment substitution line, SL15. The plant height of the two lines was obviously different, and application of exogenous gibberellinA3 removed this difference. QTL mapping placed qPH3.1 within a 4.0cM interval, explaining 32.3% of the phenotypic variance. Furthermore, eight homozygous segmental isolines (SILs) developed from two larger F2 populations further narrowed down qPH3.1 to within a 12.6kb interval. ZmGA3ox2, an ortholog of OsGA3ox2, which encodes a GA3 beta-hydroxylase, was positionally cloned. Association mapping identified two polymorphisms in ZmGA3ox2 that were significantly associated with plant height across two experiments. Quantitative RT-PCR showed that SL15 had higher ZmGA3ox2 expression relative to Zong3. The resultant higher GA1 accumulation led to longer internodes in SL15 because of increased cell lengths. Moreover, a large deletion in the coding region of ZmGA3ox2 is responsible for the dwarf mutant d1-6016. The successfully isolated qPH3.1 enriches our knowledge on the genetic basis of plant height in maize, and provides an opportunity for improvement of plant architecture in maize breeding.

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