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Dendrobium flower color: Histology and genetic manipulation.

机译:石花的颜色:组织学和遗传学处理。

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Dendrobium is the most important cut flower orchid in the world. Understanding the chemical, histological and molecular aspects of flower color is crucial for the development of breeding strategies for novel colors. The objectives of this research were to examine the histology of flower color, cloning and characterization of flavonoid biosynthetic genes, and metabolic engineering of Dendrobium flavonoid pathway to obtain new colors.; In Dendrobium, anthocyanins can be confined to a single layer of cells (epidermal or suepidermal) in pale flowers. More intensely colored flowers had anthocyanin in several cell layers. Striped patterns on the perianth were due to the restriction of pigment to cells surrounding the vascular bundles. Color perception is markedly influenced by the presence or absence of carotenoids.; Four types of epidermal cells were found in Dendrobium: flat, dome, elongated dome, and papillate. Epidermal cell shape and cell packing in the mesophyll affected the visual texture. Perianth parts with flat cells and a tightly packed mesophyll had a glossy texture, whereas dome cells and loosely packed mesophyll contributed a velvety texture. The labella in the majority of flowers examined had a complex epidermis with more than one epidermal cell shape, predominantly papillate epidermal cells.; We were able to isolate a full clone of Dendrobium dihydroflavonol 4-reductase (dfr), and partial clones of chalcone synthase (chs), flavonoid 3-hydroxylase ( f3h) and flavonoid 3,5-hydroxylase (f35h), from Dendrobium Jaquelyn Thomas ‘Uniwai Prince’ (UH503). Expression data indicated that dfr and chs were expressed to the greatest degree in unopened buds. Amount of f3h and f35h mRNA was too small to detect. Southern analysis has shown that f3h and f35h is represented by 2 copies each in UH503. These clones will be extremely useful in future for flower color manipulation.; Two different color genes, dfr and f35h from two non-orchid plants, under the constitutive promoter ubiquitin3, were inserted into Dendrobium Icy Pink ‘Sakura’ with the intention of creating orange-red and blue shades, which are absent in commercial Dendrobium. Presence of the transgene in two sets of transformants was confirmed by PCR. Expression of the transgene from a few plants was indicated by RT-PCR and northern analyses.
机译:石end兰是世界上最重要的切花兰花。了解花色的化学,组织学和分子方面对于开发新色的育种策略至关重要。本研究的目的是研究花色的组织学,类黄酮生物合成基因的克隆和表征,以及 Dendrobium 类黄酮途径的代谢工程以获得新的颜色。在 Dendrobium 中,花色苷可以被限制在浅色花朵的单层细胞中(表皮或表皮)。颜色更深的花在几个细胞层中都含有花青素。花被上的条纹图案是由于色素限制了血管束周围的细胞。颜色感知明显受到类胡萝卜素存在或不存在的影响。在 Dendrobium 中发现了四种类型的表皮细胞:扁平型,圆顶型,细长型圆顶型和乳头状。叶肉中的表皮细胞形状和细胞堆积影响了视觉质感。花被部分具有扁平的细胞和紧密堆积的叶肉,具有光滑的质地,而圆顶细胞和松散堆积的叶肉则具有柔软的质地。在检查的大多数花朵中,小la具有复杂的表皮,具有不止一种表皮细胞形状,主要为乳头状表皮细胞。我们能够分离出 Dendrobium 二氢黄酮醇4-还原酶( dfr )的完整克隆和查尔酮合酶( chs )的部分克隆黄酮。 3 '-羟化酶( f3 ' h )和类黄酮3 ',5 '-羟化酶( f3 ' 5 ' h ),来自 Dendrobium Jaquelyn Thomas'Uniwai Prince'(UH503) 。表达数据表明, dfr chs 在未打开的芽中表达最大。 f3 ' h f3 ' 5 ' h mRNA的数量太少检测。 Southern分析表明, f3 ' h f3 ' 5 ' h 是在UH503中每个代表2个副本。这些克隆在将来对花色的操纵将非常有用。本构关系下来自两个非兰花植物的两个不同的颜色基因 dfr f3 ' 5 ' h 将启动子ubiquitin3插入 Dendrobium Icy Pink'Sakura',目的是创建橙红色和蓝色阴影,这在商业 Dendrobium 中是不存在的。通过PCR确认了两组转基因中转基因的存在。通过RT-PCR和Northern分析表明了来自一些植物的转基因的表达。

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