首页> 外文期刊>Scientific reports. >Mining MYB transcription factors from the genomes of orchids (Phalaenopsis and Dendrobium) and characterization of an orchid R2R3-MYB gene involved in water-soluble polysaccharide biosynthesis
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Mining MYB transcription factors from the genomes of orchids (Phalaenopsis and Dendrobium) and characterization of an orchid R2R3-MYB gene involved in water-soluble polysaccharide biosynthesis

机译:从兰花(兰花植物和石斛)的基因组中采矿MYB转录因子,以及参与水溶性多糖生物合成的兰花R2R3-MYB基因的表征

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Members of the MYB superfamily act as regulators in a wide range of biological processes in plants. Despite this, the MYB superfamily from the Orchidaceae has not been identified, and MYB genes related to bioactive water-soluble polysaccharide (WSP) biosynthesis are relatively unknown. In this study, we identified 159 and 165 MYB genes from two orchids, Phalaenopsis equestris and Dendrobium officinale, respectively. The MYB proteins were classified into four MYB classes in both orchids: MYB-related (MYBR), R2R3-MYB, 3R-MYB and atypical MYB proteins. The MYBR proteins in both orchids were classified into five subfamilies and 12 genes were strongly up-regulated in response to cold stress in D. officinale. The R2R3-MYB proteins were both divided into 31 clades in P. equestris and D. officinale. Among these clades, nine contained MYB TFs related to secondary cell wall biosynthesis or testa mucilage biosynthesis in Arabidopsis thaliana. In D. officinale, 10 candidate genes showed an expression pattern corresponding to changes in the WSP content. Overexpression of one of these candidate genes (DoMYB75) in A. thaliana increased seed WSP content by about 14%. This study provides information about MYB genes in two orchids that will further help to understand the transcriptional regulation of WSP biosynthesis in these orchids as well as other plant species.
机译:MYB Superfamily成员作为植物中各种生物过程中的监管机构。尽管如此,尚未鉴定来自兰科的MYB超家族,并且与生物活性水溶性多糖(WSP)生物合成相关的MyB基因相对未知。在这项研究中,我们分别鉴定了来自两种兰花,蝴蝶兰植物,甲状腺卵石的159和165个MyB基因。将MYB蛋白分为兰花的四种MYB课程:MYB相关(MYBR),R2R3-MYB,3R-MYB和非典型MYB蛋白。将两种兰花中的MYBR蛋白分为五种亚属植物,并且在D. Officinale中的冷应激响应于冷应激而强烈上调12个基因。 R2R3-MYB蛋白均分为31例,在P. Equestris和D. Officinale中分为31片。在这些植物中,九个含有与二次细胞壁生物合成或α-·粘蛋白生物合成相关的MYB TFS在拟南芥中。在D. Officinale中,10个候选基因显示了对应于WSP含量的变化的表达模式。在A.拟南芥中的这些候选基因(DomyB75)中的一种过度表达量将种子WSP含量增加约14%。本研究提供有关两种兰花的MYB基因的信息,这将进一步帮助了解这些兰花和其他植物物种中WSP生物合成的转录调节。

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