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Sun and shade leaves of Olea europaea respond differently to plant size, light availability and genetic variation

机译:油橄榄的阳光和遮荫叶对植物大小,光能利用率和遗传变异的反应不同

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1. Canopy plasticity, the expression of different leaf phenotypes within the crown of an individual tree has complex functional and evolutionary implications that remain to be thoroughly assessed. We hypothesized that it can lead to disparity in how leaves in different positions of the canopy change with allometric growth and population genetic structure.2. Leaf phenotypes of the inner and outer canopy were estimated using eight morphological and physiological characters. All traits were measured under field conditions in six populations of Olea europaea and again in a common garden for a subset of the genotypes. The same populations were characterized genetically with amplified fragment length polymorphisms (AFLP) genomic scans. With these data, we investigated the extent to which leaf phenotypes change with plant size, genetic processes and in response to environmental conditions inside and outside the canopy.3. The size of trees measured in the field was clearly associated with the phenotype of sun but not to that of shade leaves. The phenotype of sun leaves depended on both direct and diffuse light, while that of shade leaves was found to correlate only with diffuse radiation. Additionally, light availability inside the canopy was conditioned by the shape of external leaves, and increasing elongation of sun leaves led to higher radiation in the inner canopy.4. The field phenotypes of both inner and outer canopy leaves were correlated with genetic variation among populations. Conversely, in the common garden, the different genotypes expressed a homogeneous sun phenotype, while phenotypic differences among populations remained apparent in shade leaves.5. We conclude that, in agreement with our working hypothesis, canopy plasticity is both cause and consequence of the environment experienced by the plant and might lead to the differential expression of genetic polymorphisms among leaves. Furthermore, we propose that it can contribute to buffer abiotic stress and to the partition of light use within the tree crown.
机译:1.冠层可塑性,一棵树冠内不同叶表型的表达具有复杂的功能和进化意义,有待进一步评估。我们假设这可能导致不同冠层的叶片随异速生长和种群遗传结构变化的差异。2。内冠层和外冠层的叶表型使用八个形态和生理特征进行估算。在田间条件下,对六种油橄榄(Olea europaea)以及同一基因型子集的共同花园中的所有性状进行了测量。利用扩增的片段长度多态性(AFLP)基因组扫描对同一种群进行遗传表征。利用这些数据,我们研究了叶片表型随植物大小,遗传过程以及对冠层内外环境条件的响应而变化的程度。3。在田间测量的树木的大小显然与太阳的表型有关,但与遮荫的叶子的表型无关。太阳叶的表型取决于直接光和漫射光,而阴影树的表型仅与扩散辐射有关。此外,冠层内部的光利用率受到外部叶片形状的影响,而日光叶片伸长的增加导致内部冠层的辐射较高。4。内部和外部冠层叶片的田间表型与种群之间的遗传变异相关。相反,在公共花园中,不同的基因型表现出均一的太阳表型,而在阴影中,种群之间的表型差异仍然很明显。5。我们的结论是,与我们的工作假设一致,冠层可塑性既是植物所经历的环境的原因也是结果,并且可能导致叶片间遗传多态性的差异表达。此外,我们建议它可以有助于缓解非生物胁迫并有助于树冠内光利用的分配。

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