摘要:
The invention relates to isolated polynucleotides encoding a protein having aromatic acyltransferase activity, vectors comprising aromatic acyltransferase polynucleotides, and methods of transforming plants with anthocyanin acyltransferase polynucleotides to alter flower colors. The invention also relates to transformed host cells, plants, and flower cuts expressing proteins having anthocyanin acyltransferase activity.
摘要:
There is provided a gene encoding a protein derived from, for example, snapdragons and petunias, said protein having an amino acid sequence as set forth in SEQ ID NO: 2, 8, and 10, and having an activity of transferring a glycosyl group to aurones, and a method of producing said protein using said gene. By introducing this gene into plants that do not have said gene, a yellow pigment aurone can be stabilized and plants having yellow flowers can be obtained.
摘要翻译:提供了编码来自例如快速聚糖和矮牵牛的蛋白质的基因,所述蛋白质具有如SEQ ID NO:2,8和10所示的氨基酸序列,并且具有将糖基转移到 所述蛋白质使用所述基因产生所述蛋白质的方法。 通过将该基因引入到不具有该基因的植物中,可以稳定黄色的颜料噢one,并且可以获得具有黄色花的植物。
摘要:
A new and distinct cultivar of Rose plant named ‘Florirosavio04’, characterized by its upright flowering stems; vigorous growth habit; freely branching plant habit; and strongly fragrant flowers that are light violet in color.
摘要:
A method of acylating the 3′ position of anthocyanin using an enzyme that transfers an aromatic acyl group to a sugar at the 3′ position of anthocyanin or a gene encoding the enzyme.
摘要:
A novel flavonoid glucosyltransferase originating from rose, a nucleic acid encoding that enzyme, for example, a flavonoid glucosyltransferase having an amino acid sequence indicated in SEQ ID NO. 2 or SEQ ID NO. 4, a nucleic acid encoding that enzyme, a method for changing the color of a rose flower using that nucleic acid, and a rose plant capable of changing color, are provided.
摘要翻译:源自玫瑰的新型黄酮葡糖基转移酶,编码该酶的核酸,例如具有SEQ ID NO:1所示氨基酸序列的类黄酮葡糖基转移酶。 2或SEQ ID NO。 4,提供了编码该酶的核酸,使用该核酸改变玫瑰花的颜色的方法,以及能够变色的玫瑰植物。
摘要:
The present invention provides an enzyme which catalyzes a reaction to transfer sugar to a hydroxyl group at position 2′ of chalcones and a gene thereof, and preferably an enzyme which catalyzes a reaction to transfer glucose to a hydroxyl group at position 2′ of the chalcones. Furthermore, the invention provides a plant whose flower color has been changed using the glycosyltransferase. Using probes corresponding to conservative regions of the glycosyltransferase, some tens of glycosyltransferase genes having nucleotide sequences corresponding to the conservative regions were cloned from flower petal cDNA libraries of carnation and the like. Furthermore, each of the glycosyltransferase genes was expressed in Escherichia coli, activity to transfer glucose to position 2′ of the chalcone, i.e., the glycosyltransferase activity at position 2′ of chalcone was confirmed in an extract solution of the Escherichia coli, and it was confirmed that cloned genes encoded the glycosyltransferase at position 2′.
摘要:
The present invention provides an enzyme which catalyzes a reaction to transfer sugar to a hydroxyl group at position 2′ of chalcones and a gene thereof, and preferably an enzyme which catalyzes a reaction to transfer glucose to a hydroxyl group at position 2′ of the chalcones. Furthermore, the invention provides a plant whose flower color has been changed using the glycosyltransferase. Using probes corresponding to conservative regions of the glycosyltransferase, some tens of glycosyltransferase genes having nucleotide sequences corresponding to the conservative regions were cloned from flower petal cDNA libraries of carnation and the like. Furthermore, each of the glycosyltransferase genes was expressed in Escherichia coli, activity to transfer glucose to position 2′ of the chalcone, i.e., the glycosyltransferase activity at position 2′ of chalcone was confirmed in an extract solution of the Escherichia coli, and it was confirmed that cloned genes encoded the glycosyltransferase at position 2′.
摘要:
The present invention provides a protein having aurone synthase activity involved in the color of flowers such as snapdragons, a gene that encodes it, cDNA in particular, and its applications. This gene can give yellow color to the flowers of plants by introducing into plants deficient in chalcone isomerase and so forth and expressing.
摘要:
A method for producing a rose characterized by artificially suppressing the rose endogenous metabolic pathway and expressing the pansy gene coding for flavonoid 3′,5′-hydroxylase.
摘要:
The invention provides a rose characterized by comprising a flavone and delphinidin added by a genetic modification method. The flavone and delphinidin are typically produced by expression of a transferred flavone synthase gene and flavonoid 3′,5′-hydroxylase gene, respectively. The flavone synthase gene is, for example, a flavone synthase gene of the family Scrophulariaceae, and specifically it may be the flavone synthase gene of snapdragon of the family Scrophulariaceae, or the flavone synthase gene of torenia of the family Scrophulariaceae. The flavonoid 3′,5′-hydroxylase gene is, for example, the pansy (Viola×wittrockiana) flavonoid 3′,5′-hydroxylase gene.