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种内植物化学多样性及其与食草性的关系。

Intraspecific plant chemical diversity and its relation to herbivory.

机构信息

Department of Chemical Ecology, Bielefeld University, Bielefeld, Germany.

出版信息

Oecologia. 2011 May;166(1):175-86. doi: 10.1007/s00442-010-1827-6. Epub 2010 Nov 4.

Abstract

Several aromatic plant species are well known for their high intraspecific variation in terpene composition. Within these species, different chemotypes can be distinguished, which are characterised by one major metabolite and distinct satellite compounds in lower abundance. Such intraspecific differences in plant quality should have major effects on herbivorous insects but may also be partly shaped by their feeding activities. In the present study, the effects of selected Tanacetum vulgare L. chemotypes on herbivore presence and preferences were investigated, and the naturally occurring diversity of T. vulgare was explored at a small spatial scale. A distinct distribution pattern of aphids and miners was found on different chemotypes of different origin of T. vulgare, with species-specific preferences of different herbivorous species. Larvae of two generalist noctuid species performed worse on most chemotypes of T. vulgare than on other plant species. Furthermore, the specific terpene composition of T. vulgare influenced larval development of these two generalist species. The naturally occurring chemical diversity of T. vulgare plants in an area smaller than 3 km(2) was extremely high, exhibiting 14 different chemotypes. Several individual patches of T. vulgare consisted of more than one chemotype. In conclusion, the existing chemotypical pattern of T. vulgare plants leads to a species-specific distribution of herbivores but may in turn be the result of contrasting selection pressures of various specialist and generalist herbivores.

摘要

几种芳香植物因其萜烯组成的高度种内变异而广为人知。在这些物种中,可以区分不同的化学型,其特征是一种主要代谢物和丰度较低的独特卫星化合物。植物质量的这种种内差异应该对食草昆虫有重大影响,但也可能部分受到它们的取食活动的影响。在本研究中,研究了选择的菊蒿(Tanacetum vulgare L.)化学型对食草动物存在和偏好的影响,并在小空间尺度上探索了菊蒿的自然发生多样性。在不同起源的菊蒿的不同化学型上发现了蚜虫和矿工的明显分布模式,不同的食草动物具有特定的偏好。两种普通夜蛾幼虫在菊蒿的大多数化学型上的表现都不如其他植物物种好。此外,菊蒿的特定萜烯组成也影响了这两种普通物种幼虫的发育。在小于 3 平方公里的区域内,菊蒿植物的自然发生化学多样性极高,表现出 14 种不同的化学型。几个菊蒿个体斑块由一种以上的化学型组成。总之,菊蒿植物现有的化学型模式导致了食草动物的特定分布,但反过来可能是各种专食性和广食性食草动物的对比选择压力的结果。

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