摘要:
The present invention relates generally to the field of plant molecular biology and agents useful in the manipulation of plant physiological or biochemical properties. More particularly, the present invention provides genetic and proteinaceous agents capable of modulating or altering the level of acidity or alkalinity in a cell, group of cells, organelle, part or reproductive portion of a plant. Genetically altered plants, plant parts, progeny, subsequent generations and reproductive material including flowers or flowering parts having cells exhibiting an altered cellular pH compared to a non-genetically altered plant are also provided.
摘要:
The present invention relates generally to the field of plant molecular biology and agents useful in the manipulation of plant physiological or biochemical properties. More particularly, the present invention provides genetic and proteinaceous agents capable of modulating or altering the level of acidity or alkalinity in a cell, group of cells, organelle, part or reproductive portion of a plant. Genetically altered plants, plant parts, progeny, subsequent generations and reproductive material including flowers or flowering parts having cells exhibiting an altered cellular pH compared to a non-genetically altered plant are also provided.
摘要:
The present invention relates generally to a genetic sequence encoding a polypeptide having methyltransferase activity and the use of the genetic sequence and/or the polypeptide to modify one or more phenotypic characteristics of a plant. More particularly, the methyltransferase of the present invention acts on flavonoids, preferably wherein the flavonoid is an anthocyanin. Even more particularly, the present invention relates to a polypeptide having S-adenosyl-L-methionine:anthocyanin 3′-O-methyl-transferase or S-adenosyl-L-methionine:anthocyanin 3′,5′-O-methyltransferase activity. The present invention still further provides a genetic sequence encoding a polypeptide having methyltransferase activity derived from Petunia, Torenia Fuchsia or Plumbago or botanically related plants. The instant invention further relates to antisense and sense molecules corresponding to all or part of the subject genetic sequence as well as genetically modified plants as well as cut flowers, parts, extracts and reproductive tissue from such plants.
摘要:
The present invention relates generally to a genetic sequence encoding a polypeptide having methyltransferase activity and the use of the genetic sequence and/or the polypeptide to modify one or more phenotypic characteristics of a plant. More particularly, the methyltransferase of the present invention acts on flavonoids, preferably wherein the flavonoid is an anthocyanin. Even more particularly, the present invention relates to a polypeptide having S-adenosyl-L-methionine:anthocyanin 3′-O-methyl-transferase or S-adenosyl-L-methionine:anthocyanin 3′,5′-O-methyltransferase activity. The present invention still further provides a genetic sequence encoding a polypeptide having methyltransferase activity derived from Petunia, Torenia Fuchsia or Plumbago or botanically related plants. The instant invention further relates to antisense and sense molecules corresponding to all or part of the subject genetic sequence as well as genetically modified plants as well as cut flowers, parts, extracts and reproductive tissue from such plants.
摘要:
The present invention relates generally to a genetic sequence encoding a polypeptide having aromatic acyl group transfer activity and the use of the genetic sequence and/or its corresponding polypeptide thereof. More particularly, the present invention provides a genetic sequence encoding a polypeptide having aromatic acyl group transfer activity derived from Petunia, Nierembergia and Viola spp. Even more particularly, the present invention relates to a genetic sequence encoding a polypeptide having aromatic acyl group transferase activity to anthocyanidin-rutinoside. The present invention also provides a genetic sequence encoding a polypeptide having aromatic acyl group transferase activity to anthocyanidin 3-O-rutinoside. The instant invention further relates to antisense and sense molecules corresponding to all or part of the subject genetic sequence as well as genetically modified plants as well as cut flowers, parts and reproductive tissue from such plants.
摘要:
A new cultivar of Dianthus plant named ‘FLORIJADE’ is characterized, inter alia, by pronounced spray habit, perennial and profuse bloom, and green foliage. Dianthus ‘FLORIJADE’ is suitable for use, for example, as a flowering plant in pots, containers, window boxes, and the garden, but is primarily suited for the production of cut flowers. Dianthus ‘FLORIJADE’ is not hardy and is typically grown in a glasshouse. These traits set ‘FLORIJADE’ apart from all existing varieties, lines, strains, or sports of Dianthus. In particular, Dianthus ‘FLORIJADE’ has bright purple/violet flowers.
摘要:
The present invention relates generally to a genetic sequence encoding a polypeptide having flavonoid 3′,5′-hydroxylase (F3′5′H) activity and to the use of the genetic sequence and/or its corresponding polypeptide thereof inter alia to manipulate color in flowers or parts thereof or in other plant tissue. More particularly, the F3′5′H has the ability to modulate dihydrokaempferol (DHK) metabolism as well as the metabolism of other substrates such as dihydroquercetin (DHQ), naringenin and eriodictyol. Even more particularly, the present invention provides a genetic sequence encoding a polypeptide having F3′5′H activity when expressed in rose or gerbera or botanically related plants. The instant invention further relates to antisense and sense molecules or RNAi-inducing molecules corresponding to all or part of the subject genetic sequence or a transcript thereof. The present invention further relates to promoters which operate efficiently in plants such as rose, gerbera or botanically related plants.
摘要:
The present invention relates generally to genetic sequences encoding flavonoid pathway metabolising enzymes and more particularly to flavonoid 3′-hydroxylase (hereinafter referred to as “F3′H”) or derivatives thereof and their use in the manipulation of pigmentation in plants and other organisms.
摘要:
The present invention relates generally to nucleic acid sequences encoding flavonoid 3′-hydroxylase (hereinafter referred to as “F3′H”) and their use in the manipulation of pigmentation in flowers of plants.
摘要:
Presently provided are a cineraria-derived polynucleotide which can act as a promoter for a coding region of flavonoid 3′,5′-hydroxylase (F3′5′H and a F3′5′H gene construct which carries the polynucleotide. The cineraria-derived petal-specific promoter can be as polynucleotide having the nucleotide sequence depicted in SEQ ID NO: 9 or a polynucleotide which can hybridize with the polynucleotide having the nucleotide sequence depicted in SEQ ID NO: 9 under stringent conditions and can act as a promoter for a coding region of flavonoid. 3′,5′-hydroxylase (F3′5′H). The gene construct can be used, for inhibiting the expression of a gene in an RNAi method, which has, as a loop, a polynucleotide comprising the whole or a part of a first intron of the presently provided cineraria-derived polynucleotide.
摘要翻译:目前提供的是一种能够起到促进黄酮3',5'-羟化酶(F3'5'H)和携带多核苷酸的F3'5'H基因构建体的编码区的启动子的木质素来源的多核苷酸, 衍生花瓣特异性启动子可以是具有SEQ ID NO:9所示核苷酸序列的多核苷酸或可以在严格条件下与具有SEQ ID NO:9所示核苷酸序列的多核苷酸杂交的多核苷酸,并且可以作为 3',5'-羟化酶(F3'5'H)的编码区,该基因构建体可以用于抑制RNAi方法中的基因的表达,该RNAi方法以环作为包含 目前提供的来自牙釉质的多核苷酸的第一内含子的全部或部分。