Interactions between repeated fire, nutrients, and insect herbivores affect the recovery of diversity in the southern Amazon

被引:0
|
作者
Tara Joy Massad
Jennifer K. Balch
Eric A. Davidson
Paulo M. Brando
Cândida Lahís Mews
Pábio Porto
Raimundo Mota Quintino
Simone A. Vieira
Ben Hur Marimon Junior
Susan E. Trumbore
机构
[1] Max Planck Institute for Biogeochemistry,Program on the Global Environment
[2] University of Chicago 5828 S. University Ave,Department of Geography
[3] National Center for Ecological Analysis and Synthesis,Departamento de Ciências Florestais
[4] The Pennsylvania State University,Departamento de Biologia, Programa de Pós Graduação em Ecologia e Conservação
[5] The Woods Hole Research Center,Núcleo de Estudos e Pesquisas Ambientais
[6] Instituto de Pesquisa Ambiental da Amazônia,undefined
[7] Universidade de Brasília,undefined
[8] UnB,undefined
[9] Universidade do Estado de Mato Grosso,undefined
[10] Instituto de Pesquisa Ambiental da Amazônia,undefined
[11] State University at Campinas,undefined
来源
Oecologia | 2013年 / 172卷
关键词
Community composition; Disturbance; Regeneration; Resource availability; Species evenness;
D O I
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学科分类号
摘要
Surface fires burn extensive areas of tropical forests each year, altering resource availability, biotic interactions, and, ultimately, plant diversity. In transitional forest between the Brazilian cerrado (savanna) and high stature Amazon forest, we took advantage of a long-term fire experiment to establish a factorial study of the interactions between fire, nutrient availability, and herbivory on early plant regeneration. Overall, five annual burns reduced the number and diversity of regenerating stems. Community composition changed substantially after repeated fires, and species common in the cerrado became more abundant. The number of recruits and their diversity were reduced in the burned area, but burned plots closed to herbivores with nitrogen additions had a 14 % increase in recruitment. Diversity of recruits also increased up to 50 % in burned plots when nitrogen was added. Phosphorus additions were related to an increase in species evenness in burned plots open to herbivores. Herbivory reduced seedling survival overall and increased diversity in burned plots when nutrients were added. This last result supports our hypothesis that positive relationships between herbivore presence and diversity would be strongest in treatments that favor herbivory—in this case herbivory was higher in burned plots which were initially lower in diversity. Regenerating seedlings in less diverse plots were likely more apparent to herbivores, enabling increased herbivory and a stronger signal of negative density dependence. In contrast, herbivores generally decreased diversity in more species rich unburned plots. Although this study documents complex interactions between repeated burns, nutrients, and herbivory, it is clear that fire initiates a shift in the factors that are most important in determining the diversity and number of recruits. This change may have long-lasting effects as the forest progresses through succession.
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页码:219 / 229
页数:10
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