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HERO ID
6402344
Reference Type
Journal Article
Title
Effect of auxin, cytokinin and nitrogen on anthocyanin biosynthesis in callus cultures of red-fleshed apple (Malus sieversii f.niedzwetzkyana)
Author(s)
Ji, X; Wang, Y; Zhang, Rui; Wu, S; An, MM; Li, Min; Wang, CZ; Chen, X; Zhang, Y; Chen, X
Year
2015
Is Peer Reviewed?
1
Journal
Plant Cell, Tissue and Organ Culture
ISSN:
0167-6857
EISSN:
1573-5044
Volume
120
Issue
1
Page Numbers
325-337
Language
English
DOI
10.1007/s11240-014-0609-y
Web of Science Id
WOS:000346605700031
URL
http://
://WOS:000346605700031
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Abstract
We have induced callus tissues from one R6/R6 homozygous genotype red-fleshed apple individual which was the hybrid offspring of Malus sieversii f.niedzwetzkyana and Fuji, and investigated the effect of auxin alone and auxin combined with cytokinin or nitrogen deficiency on anthocyanin synthesis. In callus culture, auxin alone significantly inhibited anthocyanin biosynthesis with the increase of auxin concentration. The inhibitory effect of 2,4-dichlorophenoxyacetic acid (2,4-D) on anthocyanin accumulation was about tenfold stronger than naphthalene acetic acid. Anthocyanin regulatory genes (MdMYB10 and MdbHLH3) and structural genes were dramatically suppressed by 0.6 mg/L 2,4-D. The inhibitory effect of auxin on anthocyanin biosynthesis was influenced by cytokinins 6-benzylaminopurine (BAP) and thidiazuron (TDZ) as well as nitrogen deficiency. Auxin and cytokinin displayed the interaction in controlling anthocyanin biosynthesis. Co-treatment of auxin and cytokinin (BAP or TDZ) significantly enhanced the cytokinin-induced increase in anthocyanin levels but too high auxin concentration strongly inhibited anthocyanin synthesis even in the presence of cytokinin. Nitrogen deficiency could reverse the inhibition of anthocyanin accumulation by auxin.
Keywords
Malus sieversii f.niedzwetzkyana; Callus culture; Anthocyanin; Auxin; Cytokinin; Nitrogen
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