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生境互作影响千里光属、橐吾属及其杂种中吡咯里西啶生物碱的表达。

Species by environment interactions affect pyrrolizidine alkaloid expression in Senecio jacobaea, Senecio aquaticus, and their hybrids.

机构信息

Institute of Biology, Leiden University, Leiden, The Netherlands.

出版信息

J Chem Ecol. 2010 Apr;36(4):378-87. doi: 10.1007/s10886-010-9772-8. Epub 2010 Mar 23.

Abstract

We examined the effects of water and nutrient availability on the expression of the defense pyrrolizidine alkaloids (PAs) in Senecio jacobaea and S. aquaticus. Senecio jacobaea, and S. aquaticus are adapted to different natural habitats, characterized by differing abiotic conditions and different selection pressures from natural enemies. We tested if PA concentration and diversity are plastic over a range of water and nutrient treatments, and also whether such plasticity is dependent on plant species. We also tested the hypothesis that hybridization may contribute to PA diversity within plants, by comparing PA expression in parental species to that in artificially generated F(1) hybrids, and also in later generation natural hybrids between S. jacobaea and S. aquaticus. We showed that total PA concentration in roots and shoots is not dependent on species, but that species determines the pattern of PA diversification. Pyrrolizidine alkaloid diversity and concentration are both dependent on environmental factors. Hybrids produce a putatively novel PA, and this PA is conserved in natural hybrids, that are backcrossed to S. jacobaea. Natural hybrids that are backcrossed several times to S. jacobaea are with regard to PA diversity significantly different from S. jacobaea but not from S. aquaticus, while F(1) hybrids are in all cases more similar to S. jacobaea. These results collectively suggest that PA diversity is under the influence of natural selection.

摘要

我们研究了水分和养分供应对千里光属植物雅各宾派生物碱(PA)表达的影响。雅各宾派和水生千里光是适应不同自然栖息地的物种,具有不同的非生物条件和来自天敌的不同选择压力。我们测试了 PA 浓度和多样性是否在一系列水分和养分处理中具有可塑性,以及这种可塑性是否取决于植物物种。我们还测试了杂交可能导致植物内 PA 多样性的假设,方法是将亲本物种中的 PA 表达与人工生成的 F1 杂种以及雅各宾派和水生千里光之间的后期自然杂种中的 PA 表达进行比较。我们表明,根部和地上部总 PA 浓度不取决于物种,但物种决定了 PA 多样化的模式。吡咯里西啶生物碱的多样性和浓度都取决于环境因素。杂种产生了一种假定的新 PA,这种 PA 在与雅各宾派回交的自然杂种中得以保存。经过多次与雅各宾派回交的自然杂种在 PA 多样性方面与雅各宾派有显著差异,但与水生千里光没有差异,而 F1 杂种在所有情况下都更类似于雅各宾派。这些结果表明,PA 多样性受自然选择的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e1a/2850523/125df94a5f37/10886_2010_9772_Fig1_HTML.jpg

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