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相对生长速率与放牧优化假说。

Relative growth rates and the grazing optimization hypothesis.

作者信息

Hilbert D W, Swift D M, Detling J K, Dyer M I

机构信息

Natural Resource Ecology Laboratory, Colorado State University, 80523, Fort Collins, CO, USA.

Environmental Science Division, Oak Ridge National Laboratory, 37830, Oak Ridge, TN, USA.

出版信息

Oecologia. 1981 Oct;51(1):14-18. doi: 10.1007/BF00344645.

Abstract

A mathematical analysis of the changes in plant relative growth rates necessary to increase aboveground production following grazing was conducted. The equation derived gives an isoline where production of a grazed and ungrazed plant will be the same. The equation has four variables (mean shoot relative growth rate, change in relative growth rate after grazing, grazing intensity, and recovery time) and may be analyzed graphically in a number of ways.Under certain conditions, small increases in shoot relative growth rate following grazing will lead to increased aboveground production. Under other conditions, very large increases in relative growth rate after grazing can occur without production being increased over that of ungrazed plants. Plants growing at nearly their maximum potential relative growth rate have little opportunity to respond positively to grazing and potentially can sustain less grazing than plants with growth rates far below maximum. Plants with high relative growth rates at the time of grazing require large increases in growth rate while slow growing plants require only small increases. High grazing intensities are least likely to increase production and high grazing frequencies require greater responses than infrequent grazing events.

摘要

对放牧后增加地上部产量所需的植物相对生长率变化进行了数学分析。推导得出的方程给出了一条等值线,在这条等值线上,放牧植物和未放牧植物的产量将相同。该方程有四个变量(平均地上部相对生长率、放牧后相对生长率的变化、放牧强度和恢复时间),可以用多种方式进行图形分析。在某些条件下,放牧后地上部相对生长率的小幅增加会导致地上部产量增加。在其他条件下,放牧后相对生长率可能会大幅增加,但产量却不会比未放牧植物增加。以接近其最大潜在相对生长率生长的植物几乎没有机会对放牧做出积极反应,而且与生长率远低于最大值的植物相比,其承受的放牧量可能更少。放牧时相对生长率高的植物需要大幅提高生长率,而生长缓慢的植物只需要小幅提高。高放牧强度最不可能增加产量,高放牧频率比不频繁的放牧事件需要更大的反应。

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