Pelt Jennifer L, Downes W Andrew, Schoborg Robert V, McIntosh Cecilia A
Department of Biological Sciences, Box 70703, East Tennessee State University, Johnson City, TN 37614, USA.
Phytochemistry. 2003 Sep;64(2):435-44. doi: 10.1016/s0031-9422(03)00341-8.
Petunia hybrida and Citrus paradisi have significantly different flavonoid accumulation patterns. Petunia sp. tend to accumulate flavonol glycosides and anthocyanins while Citrus paradisi is known for its accumulation of flavanone diglycosides. One possible point of regulation of flavanone metabolism is flavanone 3-hydroxylase (F3H) expression. To test whether this is a key factor in the different flavanone usage by Petunia hybrida and Citrus paradisi, F3H mRNA expression in seedlings of different developmental stages was measured using semi-quantitative RT-PCR. Primers were designed to conserved regions of F3H and used to amplify an approximately 350 bp segment for quantitation by PhosphorImaging. Primary leaves of 32 day old grapefruit seedlings and a grapefruit flower bud had the highest levels of F3H mRNA expression. Petunia seedlings had much lower levels of F3H mRNA expression relative to grapefruit. The highest expression in petunia was in primary leaves and roots of 65 day old seedlings. These results indicate that preferential use of naringenin for production of high levels of flavanone glycosides in young grapefruit leaves cannot be attributed to decreased F3H mRNA expression.
矮牵牛和葡萄柚具有显著不同的类黄酮积累模式。矮牵牛属植物倾向于积累黄酮醇糖苷和花青素,而葡萄柚则以积累黄烷酮二糖苷而闻名。黄烷酮代谢的一个可能调控点是黄烷酮3-羟化酶(F3H)的表达。为了测试这是否是矮牵牛和葡萄柚对黄烷酮不同利用的关键因素,使用半定量RT-PCR测量了不同发育阶段幼苗中F3H mRNA的表达。引物设计针对F3H的保守区域,并用于扩增约350 bp的片段,通过磷光成像进行定量。32日龄葡萄柚幼苗的初生叶和一个葡萄柚花芽中F3H mRNA表达水平最高。与葡萄柚相比,矮牵牛幼苗的F3H mRNA表达水平要低得多。矮牵牛中最高表达出现在65日龄幼苗的初生叶和根中。这些结果表明,幼嫩葡萄柚叶片中高水平黄烷酮糖苷生产对柚皮素的优先利用不能归因于F3H mRNA表达的降低。