Differential transcriptional regulation of banana sucrose phosphate synthase gene in response to ethylene, auxin, wounding, low temperature and different photoperiods during fruit ripening and functional analysis of banana SPS gene promoter
Author:
Publisher
Springer Science and Business Media LLC
Subject
Plant Science,Genetics
Link
http://link.springer.com/content/pdf/10.1007/s00425-008-0821-2.pdf
Reference56 articles.
1. Alba R, Cordonnier-Pratt MM, Pratt LH (2000) Fruit-localized phytochromes regulate lycopene accumulation independently of ethylene production of tomato. Plant Physiol 123:363–370
2. An G (1987) Binary T1 vectors for plant transformation and promoter analysis. Method Enzymol 153:292–293
3. Areas JAG, Lajolo FM (1981) Starch transformation during banana ripening: the phosphorylase and phosphatase behavior in Musa acuminata. J Food Biochem 5:19–37
4. Bond BJ, Davidson N (1986) The Drosophila melanogaster actin 5C gene uses two transcription start sites and three polyadenylation sites to express multiple mRNA species. Mol Cell Biol 6:2080–2088
5. Castleden CK, Aoki N, Gillespie VJ, MacRae EA, Quick WP, Buchner P, Foyer CH, Furbank RT, Lunn JE (2004) Evolution and function of the sucrose-phosphate synthase gene families in wheat and other grasses. Plant Physiol 135:1753–1764
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