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在当地的欧洲白桦种群中,不同基因型的凋落叶分解情况存在差异。

Leaf litter decomposition differs among genotypes in a local Betula pendula population.

作者信息

Silfver Tarja, Mikola Juha, Rousi Matti, Roininen Heikki, Oksanen Elina

机构信息

Department of Ecology and Environmental Science, University of Kuopio, P.O. Box 1627, 70211, Kuopio, Finland.

出版信息

Oecologia. 2007 Jul;152(4):707-14. doi: 10.1007/s00442-007-0695-1. Epub 2007 Mar 15.

Abstract

Ecosystem processes, such as plant litter decomposition, are known to be partly genetically determined, but the magnitude of genetic variation within local populations is still poorly known. We used micropropagated field-grown saplings of 19 Betula pendula genotypes, representing genetic variation in a natural birch population, to examine (1) whether genotype can explain variation in leaf litter decomposition within a local plant population, and (2) whether genotypic variation in litter decomposition is associated with genotypic variation in other plant attributes. We found that a local B. pendula population can have substantial genotypic variation in leaf litter mass loss at the early stages of the decomposition process and that this variation can be associated with genotypic variation in herbivore resistance and leaf concentrations of soluble proteins and total nitrogen (N). Our results are among the first to show that fundamental ecosystem processes can be significantly affected by truly intraspecific genetic variation of a plant species.

摘要

生态系统过程,如植物凋落物分解,已知部分由基因决定,但当地种群内遗传变异的程度仍知之甚少。我们使用了19种垂枝桦基因型的微繁殖田间种植树苗,这些基因型代表了一个天然桦树种群的遗传变异,以研究:(1)基因型是否能解释当地植物种群内落叶分解的变异;(2)凋落物分解的基因型变异是否与其他植物属性的基因型变异相关。我们发现,当地垂枝桦种群在分解过程的早期阶段,落叶质量损失可能存在显著的基因型变异,并且这种变异可能与食草动物抗性以及叶片中可溶性蛋白质和总氮(N)浓度的基因型变异有关。我们的研究结果首次表明,植物物种真正的种内遗传变异会对基本生态系统过程产生显著影响。

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