首页> 外文期刊>Journal of Chemical Ecology >Species by Environment Interactions Affect Pyrrolizidine Alkaloid Expression in Senecio jacobaea, Senecio aquaticus, and Their Hybrids
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Species by Environment Interactions Affect Pyrrolizidine Alkaloid Expression in Senecio jacobaea, Senecio aquaticus, and Their Hybrids

机译:通过环境相互作用的物种影响千里光,千里光水和其杂种中的吡咯烷核生物碱表达。

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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 F1 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 F1 hybrids are in all cases more similar to S. jacobaea. These results collectively suggest that PA diversity is under the influence of natural selection.
机译:我们检查了水分和养分利用率对千里光和水生S.cio防御型吡咯烷核生物碱(PAs)表达的影响。千里光刺槐和水生链球菌适应于不同的自然生境,其特征在于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浓度和多样性在一系列水和养分处理中是否可塑性,以及这种可塑性是否取决于植物种类。我们还通过比较亲本物种中的PA表达与人工产生的F 1 杂种以及在剑兰和花椰菜之间的后代自然杂种中的PA表达来检验杂交可能有助于植物中PA多样性的假说。水生葡萄球菌。我们表明,根和芽中总的PA浓度不取决于物种,但是该物种决定了PA多样化的模式。吡咯嗪核生物碱的多样性和浓度均取决于环境因素。杂种产生了一种推定的新型PA,该PA在天然杂种中是保守的,这些杂种与J. jacobaea回交。就杂种优势而言,与杂种沙门氏菌回交数倍的天然杂种与杂种沙门氏菌有很大不同,而水生沙门氏菌则无此区别,而F 1 杂种在所有情况下均与杂种沙门氏菌更相似。美洲虎这些结果共同表明,PA的多样性受到自然选择的影响。

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