Expression of a putative dioxygenase gene adjacent to an insertion mutation is involved in the short internodes of columnar apples (Malus × domestica)
Determining the molecular mechanism of fruit tree architecture is important for tree management and fruit production. An apple mutant ‘McIntosh Wijcik’, which was discovered as a bud mutation from ‘McIntosh’, exhibits a columnar growth phenotype that is controlled by a single dominant gene, Co . In...
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Veröffentlicht in: | Journal of plant research 2016-11, Vol.129 (6), p.1109-1126 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Determining the molecular mechanism of fruit tree architecture is important for tree management and fruit production. An apple mutant ‘McIntosh Wijcik’, which was discovered as a bud mutation from ‘McIntosh’, exhibits a columnar growth phenotype that is controlled by a single dominant gene,
Co
. In this study, the mutation and the
Co
gene were analyzed. Fine mapping narrowed the
Co
region to a 101 kb region. Sequence analysis of the
Co
region and the original wild-type
co
region identified an insertion mutation of an 8202 bp long terminal repeat (LTR) retroposon in the
Co
region. Segregation analysis using a DNA marker based on the insertion polymorphism showed that the LTR retroposon was closely associated with the columnar growth phenotype. RNA-seq and RT-PCR analysis identified a promising
Co
candidate gene (91071-gene) within the
Co
region that is specifically expressed in ‘McIntosh Wijcik’ but not in ‘McIntosh’. The 91071-gene was located approximately 16 kb downstream of the insertion mutation and is predicted to encode a 2-oxoglutarate-dependent dioxygenase involved in an unknown reaction. Overexpression of the 91071-gene in transgenic tobaccos and apples resulted in phenotypes with short internodes, like columnar apples. These data suggested that the 8202 bp retroposon insertion in ‘McIntosh Wijcik’ is associated with the short internodes of the columnar growth phenotype via upregulated expression of the adjacent 91071-gene. Furthermore, the DNA marker based on the insertion polymorphism could be useful for the marker-assisted selection of columnar apples. |
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ISSN: | 0918-9440 1618-0860 |
DOI: | 10.1007/s10265-016-0863-7 |