Koeduka Takao, Orlova Irina, Baiga Thomas J, Noel Joseph P, Dudareva Natalia, Pichersky Eran
Department of Molecular, Cellular and Developmental Biology, University of Michigan, 830 North University Street, Ann Arbor, MI 48109-1048, USA.
Plant J. 2009 Jun;58(6):961-9. doi: 10.1111/j.1365-313X.2009.03834.x. Epub 2009 Feb 13.
Floral scent has been extensively investigated in plants of the South American genus Petunia. Flowers of Petunia integrifolia emit mostly benzaldehyde, while flowers of Petunia axillaris subsp. axillaris emit a mixture of volatile benzenoid and phenylpropanoid compounds that include isoeugenol and eugenol. Flowers of the artificial hybrid Petunia hybrida, a cross between P. integrifolia and P. axillaris, emit a similar spectrum of volatiles as P. axillaris subsp. axillaris. However, the flowers of P. axillaris subsp. parodii emit neither isoeugenol nor eugenol but contain high levels of dihydroconiferyl acetate in the petals, the main scent-synthesizing and scent-emitting organs. We recently showed that both isoeugenol and eugenol in P. hybrida are biosynthesized from coniferyl acetate in reactions catalyzed by isoeugenol synthase (PhIGS1) and eugenol synthase (PhEGS1), respectively, via a quinone methide-like intermediate. Here we show that P. axillaris subsp. parodii has a functional EGS gene that is expressed in flowers, but its IGS gene contains a frame-shift mutation that renders it inactive. Despite the presence of active EGS enzyme in P. axillaris subsp. parodii, in the absence of IGS activity the coniferyl acetate substrate is converted by an as yet unknown enzyme to dihydroconiferyl acetate. By contrast, suppressing the expression of PhIGS1 in P. hybrida by RNA interference also leads to a decrease in isoeugenol biosynthesis, but instead of the accumulation of dihydroconiferyl acetate, the flowers synthesize higher levels of eugenol.
花香已在南美洲矮牵牛属植物中得到广泛研究。矮牵牛的花朵大多释放苯甲醛,而腋花矮牵牛亚种腋花矮牵牛的花朵释放挥发性苯类和苯丙素类化合物的混合物,其中包括异丁香酚和丁香酚。人工杂交种矮牵牛是矮牵牛和腋花矮牵牛的杂交品种,其花朵释放的挥发物谱与腋花矮牵牛亚种腋花矮牵牛相似。然而,腋花矮牵牛亚种帕罗迪矮牵牛的花朵既不释放异丁香酚也不释放丁香酚,但花瓣(主要的气味合成和释放器官)中含有高水平的二氢松柏醇乙酸酯。我们最近发现,矮牵牛中的异丁香酚和丁香酚都是由松柏醇乙酸酯分别在异丁香酚合酶(PhIGS1)和丁香酚合酶(PhEGS1)催化的反应中,通过类似醌甲基化物的中间体生物合成的。在这里我们表明,腋花矮牵牛亚种帕罗迪矮牵牛有一个在花朵中表达的功能性EGS基因,但其IGS基因包含一个移码突变,使其失去活性。尽管腋花矮牵牛亚种帕罗迪矮牵牛中存在活性EGS酶,但在没有IGS活性的情况下,松柏醇乙酸酯底物被一种未知的酶转化为二氢松柏醇乙酸酯。相比之下,通过RNA干扰抑制矮牵牛中PhIGS1的表达也会导致异丁香酚生物合成减少,但花朵没有合成更高水平的二氢松柏醇乙酸酯,而是合成了更高水平的丁香酚。