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雏菊世界中生长着雏菊,存在种子大小/数量的权衡:从竞争理论的角度看选择上的负反馈机制。

Daisyworld inhabited with daisies incorporating a seed size/number trade-off: the mechanism of negative feedback on selection from a standpoint of the competition theory.

作者信息

Seto Mayumi, Akagi Tasuku

机构信息

Faculty of Agriculture, Tokyo University of Agriculture and Technology, 3-5-8 Saiwai-cho, Fuchu-shi, Tokyo 183-8509, Japan.

出版信息

J Theor Biol. 2005 May 21;234(2):167-72. doi: 10.1016/j.jtbi.2004.11.029. Epub 2005 Jan 20.

Abstract

We reexamined a Daisyworld model from the traditional view of competition theory. Unlike the original model, white and black daisies in our model incorporate a seeding/germination trade-off against bare ground area without assuming the local temperature reward. As a result, the planetary temperature is automatically regulated by two species if the following conditions are met: (i) the species react equally to an environmental condition, but one can alter the environmental condition in the opposite direction to the other. (ii) that one of the two cannot have both a higher maximal growth rate (mu(max)) and lower half-saturation constant (K) than those of the other. In other words, a pair of phenotypes incorporates a trade-off between quality and number of seeds. We found that the homeostatic regulation can also be reconciled with the adaptive evolution of optimal temperature. The results of simulation imply that biotic environmental feedback can also be maintained when the emergence of polymorphisms (black and white daisies) is closely linked to such a trade-off.

摘要

我们从竞争理论的传统视角重新审视了一个雏菊世界模型。与原始模型不同,我们模型中的白色和黑色雏菊在不假设局部温度奖励的情况下,纳入了种子萌发与裸地面积之间的权衡。结果是,如果满足以下条件,行星温度将由两个物种自动调节:(i)物种对环境条件的反应相同,但其中一个可以朝着与另一个相反的方向改变环境条件。(ii)两个物种中的一个不能同时具有比另一个更高的最大生长速率(μ(max))和更低的半饱和常数(K)。换句话说,一对表型在种子质量和数量之间存在权衡。我们发现,稳态调节也可以与最佳温度的适应性进化相协调。模拟结果表明,当多态性(黑色和白色雏菊)的出现与这种权衡紧密相关时,生物环境反馈也可以得到维持。

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