Centre d'Ecologie Fonctionnelle et Evolutive, UMR 5175, 54293 Montpellier, France.
Tree Physiol. 2012 Sep;32(9):1082-91. doi: 10.1093/treephys/tps069. Epub 2012 Jul 30.
Interspecific gene flow is common in oaks. In the Mediterranean, this process produced geographical differentiations and new species, which may have contributed to the diversification of the production of volatile terpenes in the oak species of this region. The endemic North African deciduous oak Quercus afares (Pomel) is considered to be a stabilized hybrid between the evergreen Quercus suber (L.) and the deciduous Quercus canariensis (Willd.), presumably being monoterpene and isoprene emitters, respectively. In a common garden experiment, we examined the terpene emission capacities, terpene synthase (TPS) activities and nuclear genetic markers in 52 trees of these three oak species. All but one of the Q. suber and Q. canariensis trees were found to be genetically pure, whereas most Q. afares trees possessed a mixed genotype with a predominance of Q. suber alleles. Analysis of the foliar terpene emissions and TPS activities revealed that all the Q. canariensis trees strongly produced isoprene while all the Q. suber trees were strong monoterpene producers. Quercus afares trees produced monoterpenes as well but at more variable and significantly lower rates, and with a monoterpene pattern different than that observed in Q. suber. Among 17 individuals tested, one Q. afares tree emitted only an insignificant amount of terpenes. No mixed isoprene/monoterpene emitter was detected. Our results suggest that the capacity and pattern of volatile terpene production in Algerian Q. afares populations have strongly diverged from those of its parental species and became quantitatively and qualitatively reduced, including the complete suppression of isoprene production.
种间基因流在橡树中很常见。在地中海地区,这一过程产生了地理分化和新物种,这可能有助于该地区橡树物种挥发性萜烯的多样化。北非特有落叶栎 Quercus afares(Pomel)被认为是常绿栎 Quercus suber(L.)和落叶栎 Quercus canariensis(Willd.)之间稳定的杂种,可能分别是单萜和异戊二烯的排放体。在一项共同的园林实验中,我们研究了这三个橡树物种的 52 棵树的萜烯排放能力、萜烯合酶(TPS)活性和核遗传标记。除了一棵 Q. suber 和一棵 Q. canariensis 树之外,所有的树都被发现是纯合的,而大多数 Q. afares 树具有混合基因型,以 Q. suber 等位基因为主。叶片萜烯排放和 TPS 活性分析表明,所有的 Q. canariensis 树强烈地产生异戊二烯,而所有的 Q. suber 树强烈地产生单萜。Q. afares 树也产生单萜,但产量变化较大,且单萜模式与 Q. suber 观察到的不同。在 17 个测试个体中,有一棵 Q. afares 树只排放了微不足道的萜烯。没有检测到混合的异戊二烯/单萜排放体。我们的结果表明,阿尔及利亚 Q. afares 种群挥发性萜烯产生的能力和模式与亲本物种有很大的差异,数量和质量都减少了,包括异戊二烯产生的完全抑制。