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植物异速生长的竞争调控与植物自疏过程的广义模型。

Competitive regulation of plant allometry and a generalized model for the plant self-thinning process.

作者信息

Wang Gang, Yuan Jianli, Wang Xizhi, Xiao Sa, Huang Wenbing

机构信息

Laboratory of Arid Agroecology, School of Life Science, Lanzhou University, Lanzhou 730000, People's Republic of China.

出版信息

Bull Math Biol. 2004 Nov;66(6):1875-85. doi: 10.1016/j.bulm.2004.04.005.

Abstract

Taking into account the individual growth form (allometry) in a plant population and the effects of intraspecific competition on allometry under the population self-thinning condition, and adopting Ogawa's allometric equation 1/y = 1/axb + 1/c as the expression of complex allometry, the generalized model describing the change mode of r (the self-thinning exponential in the self-thinning equation, log M = K + log N, where M is mean plant mass, K is constant, and N is population density) was constructed. Meanwhile, with reference to the changing process of population density to survival curve type B, the exponential, r, was calculated using the software MATHEMATICA 4.0. The results of the numerical simulation show that (1) the value of the self-thinning exponential, r, is mainly determined by allometric parameters; it is most sensitive to change of b of the three allometric parameters, and a and c take second place; (2) the exponential, r, changes continuously from about -3 to the asymptote -1; the slope of -3/2 is a transient value in the population self-thinning process; (3) it is not a 'law' that the slope of the self-thinning trajectory equals or approaches -3/2, and the long-running dispute in ecological research over whether or not the exponential, r, equals -3/2 is meaningless. So future studies on the plant self-thinning process should focus on investigating how plant neighbor competition affects the phenotypic plasticity of plant individuals, what the relationship between the allometry mode and the self-thinning trajectory of plant population is and, in the light of evolution, how plants have adapted to competition pressure by plastic individual growth.

摘要

考虑植物种群中的个体生长形式(异速生长)以及在种群自疏条件下种内竞争对异速生长的影响,并采用小川的异速生长方程1/y = 1/ax^b + 1/c作为复合异速生长的表达式,构建了描述r(自疏方程中的自疏指数,log M = K + log N,其中M是平均植株质量,K是常数,N是种群密度)变化模式的广义模型。同时,参照种群密度向存活曲线类型B的变化过程,使用软件MATHEMATICA 4.0计算指数r。数值模拟结果表明:(1)自疏指数r的值主要由异速生长参数决定;它对三个异速生长参数中b的变化最敏感,a和c次之;(2)指数r从约-3连续变化到渐近线-1;-3/2的斜率是种群自疏过程中的一个过渡值;(3)自疏轨迹的斜率等于或接近-3/2并非“定律”,生态研究中关于指数r是否等于-3/2的长期争论毫无意义。因此,未来关于植物自疏过程的研究应集中于调查植物邻体竞争如何影响植物个体的表型可塑性、植物种群的异速生长模式与自疏轨迹之间的关系,以及从进化角度看植物如何通过可塑性个体生长适应竞争压力。

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