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高杆一枝黄花生殖与营养物质间的可塑性关系

PLASTIC RELATIONSHIPS BETWEEN REPRODUCTIVE AND VEGETATIVE MASS IN SOLIDAGO ALTISSIMA.

作者信息

Schmid Bernhard, Weiner Jacob

机构信息

Botanisches Institut der Universität Basel, Schönbeinstrasse 6, CH-4056, Basel, SWITZERLAND.

出版信息

Evolution. 1993 Feb;47(1):61-74. doi: 10.1111/j.1558-5646.1993.tb01199.x.

Abstract

To test several predictions of a model of linear, size-dependent reproductive output in plants, we analyzed the relationship between shoot vegetative (v) and reproductive (r) mass in five experiments on Solidago altissima from an invading population in Switzerland. There was large environmentally-induced and genetic variation in r and v. A large amount of variation in r could be explained by variation in v, using the simple linear model. There was a minimum size for sexual reproduction, and above this size, shoots devoted a relatively constant proportion (about one third) of their biomass to reproductive structures. We detected significant genetic variation for both the minimum size and the slope of the r-v relationship, but there was no evidence for an hypothesized trade-off between minimum size and slope. There was significant genotype-environment interaction for the slope of the r-v relationship. There were also developmental effects on the r-v relationship: plants grown from seeds behaved differently than those of the same genotype grown from rhizomes.

摘要

为了检验植物中线性的、与大小相关的繁殖输出模型的几个预测,我们在瑞士一个入侵种群的五组加拿大一枝黄花实验中,分析了地上营养体(v)质量与繁殖(r)质量之间的关系。r和v存在很大的环境诱导变异和遗传变异。使用简单线性模型,r的大量变异可以由v的变异来解释。有性繁殖存在一个最小大小,高于这个大小,地上部分将其生物量的相对恒定比例(约三分之一)用于繁殖结构。我们检测到最小大小和r-v关系斜率都存在显著的遗传变异,但没有证据支持最小大小与斜率之间存在假设的权衡。r-v关系的斜率存在显著的基因型-环境相互作用。r-v关系也有发育效应:由种子生长的植物与由根茎生长的相同基因型植物表现不同。

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