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混交林中栓皮栎属植物(栓皮栎和冬青栎)的异戊二烯排放情况,这些混交林在种间基因渐渗方面存在差异。

Isoprenoid emissions of Quercus spp. (Q. suber and Q. ilex) in mixed stands contrasting in interspecific genetic introgression.

作者信息

Staudt Michael, Mir Céline, Joffre Richard, Rambal Serge, Bonin Aurélie, Landais Damien, Lumaret Roselyne

机构信息

CNRS Centre d'Ecologie Fonctionnelle et Evolutive, 1919 route de Mende, 34293 Montpellier cedex 5, France.

出版信息

New Phytol. 2004 Sep;163(3):573-584. doi: 10.1111/j.1469-8137.2004.01140.x.

Abstract

•  Among oak species, Quercus ilex is classified as a monoterpene emitter and Q. suber is mainly known as a nonisoprenoid emitter. The extent and origin of this diversification is unknown. •  We examined intra- and interspecific emission variability in two mixed stands which differed in their level of hybridization and reciprocal genetic introgression based on variations in cytoplasmic (chloroplast DNA) and nuclear (allozyme) markers. •  At both sites all trees identified as Q. ilex, or as recent descendants from Q. ilex × Q. suber hybrids, emitted monoterpenes. Of Q. suber trees (genetically introgressed or not by Q. ilex), 91% were also monoterpene emitters, and the remainder nonemitters. One tree identified as a Q. canariensis × Q. ilex hybrid emitted both isoprene and monoterpenes. Compared with Q. ilex, the standard emission rate of Q. suber was higher in summer and lower in autumn. Both species emitted the same monoterpenes, proportions of which showed significant intra- and interspecific variability. •  The results suggest that Q. suber populations in the French Mediterranean intrinsically emit monoterpenes, and that gene flow between oak species contributes to diversification of emission signatures.

摘要

• 在栎属物种中,冬青栎被归类为单萜排放者,而栓皮栎主要被认为是非异戊二烯排放者。这种多样化的程度和起源尚不清楚。

• 我们基于细胞质(叶绿体DNA)和核(等位酶)标记的变异,研究了两个杂交水平和相互遗传渐渗水平不同的混交林中的种内和种间排放变异性。

• 在两个地点,所有被鉴定为冬青栎的树木,或作为冬青栎×栓皮栎杂交种的近期后代,都排放单萜。在栓皮栎树(无论是否被冬青栎遗传渐渗)中,91%也是单萜排放者,其余为非排放者。一棵被鉴定为加那利栎×冬青栎杂交种的树既排放异戊二烯也排放单萜。与冬青栎相比,栓皮栎的标准排放率在夏季较高,在秋季较低。两个物种排放相同的单萜,其比例表现出显著的种内和种间变异性。

• 结果表明,法国地中海地区的栓皮栎种群本质上排放单萜,并且栎属物种之间的基因流动有助于排放特征的多样化。

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