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Modification of flower colour by suppressing β‐ring carotene hydroxylase genes in Oncidium

BCH码 生物 植物 园艺 电信 计算机科学 解码方法
作者
H.‐M. Wang,Kin‐Ying To,Hsi‐Mei Lai,Shih‐Tong Jeng
出处
期刊:Plant Biology [Wiley]
卷期号:18 (2): 220-229 被引量:12
标识
DOI:10.1111/plb.12399
摘要

Abstract Oncidium ‘Gower Ramsey’ ( Onc . GR ) is a popular cut flower, but its colour is limited to bright yellow. The β‐ring carotene hydroxylase ( BCH 2 ) gene is involved in carotenoid biogenesis for pigment formation. However, the role of BCH 2 in Onc . GR is poorly understood. Here, we investigated the functions of three BCH 2 genes, BCH ‐A2, BCH ‐B2 and BCH ‐C2 isolated from Onc . GR , to analyse their roles in flower colour. RT ‐ PCR expression profiling suggested that BCH 2 was mainly expressed in flowers. The expression of BCH ‐B2 remained constant while that of BCH ‐A2 gradually decreased during flower development. Using Agrobacterium tumefaciens to introduce BCH 2 RNA interference ( RNA i), we created transgenic Oncidium plants with down‐regulated BCH expression. In the transgenic plants, flower colour changed from the bright yellow of the wild type to light and white‐yellow. BCH ‐A2 and BCH ‐B2 expression levels were significantly reduced in the transgenic flower lips, which make up the major portion of the Oncidium flower. Sectional magnification of the flower lip showed that the amount of pigmentation in the papillate cells of the adaxial epidermis was proportional to the intensity of yellow colouration. HPLC analyses of the carotenoid composition of the transgenic flowers suggested major reductions in neoxanthin and violaxanthin. In conclusion, BCH 2 expression regulated the accumulation of yellow pigments in the Oncidium flower, and the down‐regulation of BCH ‐A2 and BCH ‐B2 changed the flower colour from bright yellow to light and white‐yellow.

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