Abrams P A
Theor Popul Biol. 1986 Feb;29(1):107-60. doi: 10.1016/0040-5809(86)90007-9.
This paper analyzes the adaptive responses to competition (both character displacement and niche shift) in a two consumer-two resource model. The model includes density dependence that is unrelated to the resources that are explicit in the model. This could be due to another resource dimension, parasites, or interference competition. Competitors adapt by changing their relative consumption rate constants on the two resource types. This model can result in mutually divergent, parallel, or mutually convergent displacement of competitors. Parallel displacement may entail net divergence, net convergence, or no net change. Parallel change with net convergence is most likely when the competitors have similar constraints on the possible values of consumption rate constants, unequal allopatric abundances, and significant intraspecific density dependence. Numerical calculations of displacements are presented for several models and the effect of a number of different possible alterations of the model are discussed. The evolution of resource handling and processing efficiency, and displacement in the presence of additional selective pressures on the character are considered in detail. The results have implications for questions about maximization of population size, the relationship of character displacement and the competition coefficient, and "null" models in the study of competition. Differences between this and previous theoretical works are discussed. It is argued that conditions allowing parallel or convergent displacement are not biologically unlikely, and possible examples are discussed. Data on resource partitioning seem to be more consistent with the results reached here than with previous theory.
本文分析了一个双消费者 - 双资源模型中对竞争的适应性反应(包括性状替换和生态位转移)。该模型包含与模型中明确的资源无关的密度依赖性。这可能是由于另一个资源维度、寄生虫或干扰竞争导致的。竞争者通过改变它们在两种资源类型上的相对消耗速率常数来适应。这个模型可能导致竞争者相互发散、平行或相互收敛的替代。平行替代可能涉及净发散、净收敛或无净变化。当竞争者在消耗速率常数的可能值上有相似的限制、异域分布时丰度不相等且存在显著的种内密度依赖性时,最有可能出现具有净收敛的平行变化。给出了几个模型的替代数值计算,并讨论了模型一些不同可能改变的影响。详细考虑了资源处理和加工效率的进化以及在性状上存在额外选择压力时的替代情况。这些结果对种群大小最大化问题、性状替换与竞争系数的关系以及竞争研究中的“零”模型有启示意义。讨论了本文与先前理论工作的差异。有人认为,允许平行或收敛替代的条件在生物学上并非不太可能,并讨论了可能的例子。资源分配数据似乎与本文得出的结果比与先前理论更一致。