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药用琉璃草中组成型和诱导型吡咯里西啶生物碱水平的遗传变异

Genetic variation in constitutive and inducible pyrrolizidine alkaloid levels inCynoglossum officinale L.

作者信息

van Dam Nicole M, Vrieling Klaas

机构信息

Institute of Evolutionary and Ecological Sciences, University of Leiden, P.O. Box 9516, 2300 RA, Leiden, The Netherlands.

出版信息

Oecologia. 1994 Sep;99(3-4):374-378. doi: 10.1007/BF00627751.

Abstract

The constitutive pyrrolizidine alkaloid (PA) concentration of both shoots and roots differed significantly between 17 selfed families. The broad-sense heritability accounted for 33-43% of the variation in PA levels. Families also differed significantly in the amount and the direction of PA induction in both shoots and roots, 24 h after punching 15 holes in the leaves. We found a significantly negative relationship between the changes in PA content of the shoots and changes in PA content of the roots. The total PA content of the plants did not increase. We thus concluded that changes in PA distribution over the plant resulted from transport of PAs within the plant. The direction of transport differed between families: some transported PAs to the shoots, others to the roots. This makes it questionable whether PAs act as damage-induced defences. The effect of damage on the PA concentration is far less than the differences found between families in the constitutive PA concentration. This again strongly suggests that damage-induced defences inCynoglossum officinale do not play an important role. We argue that the general lack of attention that is given to genotype in induction experiments, has led to false conclusions.

摘要

17个自交家系的地上部分和根部的组成型吡咯里西啶生物碱(PA)浓度存在显著差异。广义遗传力占PA水平变异的33%-43%。在叶片上打孔15个孔24小时后,家系在地上部分和根部的PA诱导量及诱导方向上也存在显著差异。我们发现地上部分PA含量的变化与根部PA含量的变化之间存在显著的负相关关系。植物的总PA含量并未增加。因此我们得出结论,植物体内PA分布的变化是由PA在植物体内的运输导致的。不同家系的运输方向不同:一些将PA运输到地上部分,另一些则运输到根部。这使得PA是否作为损伤诱导防御物质存在疑问。损伤对PA浓度的影响远小于家系间组成型PA浓度的差异。这再次有力地表明,损伤诱导防御在药用琉璃草中并不起重要作用。我们认为,诱导实验中普遍对基因型缺乏关注,导致了错误的结论。

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