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241.
This study describes the use of periodic matrix analysis and regression-design life table response experiments (LTRE) to investigate
the effects of prescribed fire on demographic responses of Pinguicula ionantha, a federally listed plant endemic to the herb bog/savanna community in north Florida. Multi-state mark–recapture models with
dead recoveries were used to estimate survival and transition probabilities for over 2,300 individuals in 12 populations of
P. ionantha. These estimates were applied to parameterize matrix models used in further analyses. P. ionantha demographics were found to be strongly dependent on prescribed fire events. Periodic matrix models were used to evaluate
season of burn (either growing or dormant season) for fire return intervals ranging from 1 to 20 years. Annual growing and
biannual dormant season fires maximized population growth rates for this species. A regression design LTRE was used to evaluate
the effect of number of days since last fire on population growth. Maximum population growth rates calculated using standard
asymptotic analysis were realized shortly following a burn event (<2 years), and a regression design LTRE showed that short-term
fire-mediated changes in vital rates translated into observed increases in population growth. The LTRE identified fecundity
and individual growth as contributing most to increases in post-fire population growth. Our analyses found that the current
four-year prescribed fire return intervals used at the study sites can be significantly shortened to increase the population
growth rates of this rare species. Understanding the role of fire frequency and season in creating and maintaining appropriate
habitat for this species may aid in the conservation of this and other rare herb bog/savanna inhabitants.
Electronic supplementary material The online version of this article (doi:) contains supplementary material, which is available to authorized users. 相似文献
242.
Nutrient resorption patterns of plant functional groups in a tropical savanna: variation and functional significance 总被引:1,自引:0,他引:1
Green and senesced leaf nitrogen (N) and phosphorus (P) concentrations of different plant functional groups in savanna communities of Kruger National Park, South Africa were analyzed to determine if nutrient resorption was regulated by plant nutritional status and foliar N:P ratios. The N and P concentrations in green leaves and the N concentrations in senesced leaves differed significantly between the dominant plant functional groups in these savannas: fine-leaved trees, broad-leaved trees and grasses. However, all three functional groups reduced P to comparable and very low levels in senesced leaves, suggesting that P was tightly conserved in this tropical semi-arid savanna ecosystem. Across all functional groups, there was evidence for nutritional control of resorption in this system, with both N and P resorption efficiencies decreasing as green leaf nutrient concentrations increased. However, specific patterns of resorption and the functional relationships between nutrient concentrations in green and senesced leaves varied by nutrient and plant functional group. Functional relationships between N concentrations in green and senesced leaves were indistinguishable between the dominant groups, suggesting that variation in N resorption efficiency was largely the result of inter-life form differences in green leaf N concentrations. In contrast, observed differences in P resorption efficiencies between life forms appear to be the result of both differences in green leaf P concentrations as well as inherent differences between life forms in the fraction of green leaf P resorbed from senescing leaves. Our results indicate that foliar N:P ratios are poor predictors of resorption efficiency in this ecosystem, in contrast to N and P resorption proficiencies, which are more responsive to foliar N:P ratios. 相似文献
243.
Mortality of vertebrates was monitored on a local road running across Poland’s Biebrza River Valley during 2 years (August
2005–July 2006). On the basis of distance from the river and surrounding habitats, the road (of total length 2,510 m) was
divided into three stretches. The road was monitored on foot by two people every month, over a few consecutive days. A total
of 1,892 road kills representing at least 47 species were found. Of these, 90.7% were amphibians, 4.2% mammals, 3.1% birds
and 2.0% reptiles. Most (70%) of the amphibians were anurans, with the common toad, common frog and moor frog among them together
accounting for 82% of the total. Mortality among amphibians differed between months, most anurans dying in May and August,
while a majority of Urodela are lost in October. The peaks in mortality were connected with the migration of adult amphibians in spring and juveniles
in summer and autumn. The number of amphibians killed was greatest on the (wettest) stretch adjacent to the river and decreased
with distance from it. Mortality among birds was highest in July—probably in association with the dispersal of young individuals.
Among recorded mammalian road kills, there was a prevalence of small rodents (mainly voles) and insectivores (mainly shrews).
Medium-sized mammals were found only accidentally. Mortality in general was conditioned by the number of anurans killed. 相似文献
244.
Baobabs and elephants in Kruger National Park: nowhere to hide 总被引:1,自引:0,他引:1
Baobab size class distributions were surveyed in the Limpopo National Park (LNP), Mozambique, and the Kruger National Park (KNP), South Africa. There are very few elephants in the LNP and the baobab population there had a reverse J-shaped size class distribution with many small baobabs. In contrast, the elephant-impacted baobab population of KNP displayed a mono-modal size-class distribution, with a lack in recruitment. Within KNP, elephant impact (percentage bark stripped up to the height of 3 m) decreased with increasing rockiness and slope steepness. We interpret this to suggest that steep rocky slopes are inaccessible to elephants and therefore these sites may act as a refuge for baobabs. In such inaccessible areas, the baobab population has a similar size-class distribution to that of the populations in the LNP. However, these baobab refugia are restricted in the northern KNP landscape and are therefore probably not large enough to sustain a viable baobab population. 相似文献
245.
Uses and Conservation of Plant Species in a National Park—A Case Study of Ben En, Vietnam. This paper surveys the use of wild and cultivated plants by local people in Ben En National Park, Vietnam, and analyzes its
impact on the conservation status of some of the utilized species. A total of 208 species used for a range of nonmedicinal
purposes are listed. See Hoang et al. (2008a) for 230 medicinal plants used in the park. Most species are used for food. The use of plants contributes very significantly
to the livelihood of local people in the park, but the current use patterns are not sustainable and would lead to local extinction
of rare and endangered species if no additional conservation measures are introduced. Men collect nonmedicinal plants more
often than women. A total of 38 useful plant species are commercialized, and contribute 12% of the average income of individual
households. Bamboo shoots of Schizostachyum funghomii (Poaceae) are the most important for income generation. The monetary equivalent of noncommercialized useful plants probably
far exceeds the value of the traded plant products. Plant use is independent of the ethnicity of the different populations
living in the park. Larger households make use of a greater variety of useful plant species than small families. Abundant
species in the forest have a higher use index (UI) than less common species. Out of the 208 useful species, as many as 27
were found to be endangered locally, many more than the 11 or 8 endangered species included in national or global red lists.
Currently, useful plants, especially important timber trees, are more abundant in the less disturbed parts of the park, far
away from the villages, indicating the pressures of illegal logging and harvesting near villages on the ecosystems. 相似文献
246.
The four-horned antelope is endemic to the Indian sub-continent. It was formerly distributed widely in deciduous forests throughout its range, but the current distributional patterns of this low-density species are largely unknown and conservation efforts are hampered by the lack of information on species–habitat relationships. We investigated the habitat factors influencing four-horned antelope occurrence and abundance in Bandipur National Park, an important four-horned antelope conservation site in India. Detection/non-detection data, collected under a systematic sampling framework, were used to test a priori hypotheses incorporating covariates believed to influence occurrence and abundance. The best fitting models for four-horned antelope occurrence and relative abundance reveal that the tree-savanna deciduous habitat sub-type, characterized by relatively open habitats with a lower tree density and a high degree of deciduousness, is most preferred by the species. Four-horned antelope conservation efforts in Bandipur National Park and other reserves should be focused on areas typified by tree-savanna habitats. Four-horned antelope occurrence was negatively related to the alien weed Lantana camara . The prolific spread of this weed in Indian deciduous forests is a likely threat. 相似文献
247.
Tree Community Change across 700 km of Lowland Amazonian Forest from the Andean Foothills to Brazil 总被引:1,自引:1,他引:0
Nigel C. A. Pitman Hugo Mogollón Nallarett Dávila Marcos Ríos Roosevelt García-Villacorta Juan Guevara Timothy R. Baker Abel Monteagudo Oliver L. Phillips Rodolfo Vásquez-Martínez Manuel Ahuite Milton Aulestia Dairon Cardenas Carlos E. Cerón Pierre-André Loizeau David A. Neill Percy Núñez V. Walter A. Palacios Rodolphe Spichiger Elvis Valderrama 《Biotropica》2008,40(5):525-535
We describe patterns of tree community change along a 700-km transect through terra firme forests of western Amazonia, running from the base of the Andes in Ecuador to the Peru–Brazil border. Our primary question is whether floristic variation at large scales arises from many gradual changes or a few abrupt ones. Data from 54 1-ha tree plots along the transect support the latter model, showing two sharp discontinuities in community structure at the genus level. One is located near the Ecuador–Peru border, where the suite of species that dominates large areas of Ecuadorean forest declines abruptly in importance to the east. This discontinuity is underlain by a subterranean paleoarch and congruent with a change in soil texture. A second discontinuity is associated with the shift from clay to white sand soils near Iquitos. We hypothesize that the first discontinuity is part of an edaphic boundary that runs along the Andean piedmont and causes a transition from tree communities preferring richer, younger soils near the base of the Andes to those preferring poorer, older soils farther east. Because the floristic changes observed at this discontinuity are conserved for large distances to the east and west of it, the discontinuity is potentially key for understanding floristic variation in western Amazonia. The significant floristic turnover at the Ecuador–Peru border suggests that the only large protected area in the region—Ecuador's Yasuní National Park—is not adequate protection for the very diverse tree communities that cover vast areas of northern Peru. 相似文献
248.
Pablo R. Stevenson Maria Clara Castellanos Ana Isabel Cortés Andrés Link 《Biotropica》2008,40(5):559-567
The phenological behavior of many tropical plant species is highly dependent on rainfall, but these plants may also respond to changes in photoperiod. Without a better knowledge of the proportion of species responding to different factors, it is difficult to predict how global climate change may affect natural ecosystem processes. The aim of this study was to describe flowering patterns for more than 100 species in Tinigua Park, Colombia, and to propose which factors may trigger flower production ( e.g. , rainfall, temperature, cloud cover, and photoperiod). Data gathered in 5.6 km of phenological transects during 4 yr and complementary information indicated that the vast majority of species showed intraspecific synchronization, and annual production was the most common pattern, followed by episodic frequency. The annual patterns were common in tree species, while episodic patterns were common in lianas. Simple and multiple regression analyses suggested several aspects of photoperiod as the most likely triggers for flowering in most species. However, the fact that many of these species produce flowers in different periods each year, suggests that the proportion of species responding to photoperiodic cues is less that 23 percent in this community. The flowering times of taxonomically related species seldom showed significantly staggered distributions; however they do not necessarily occur at the same time, suggesting that flowering patterns are not strongly constrained by phylogeny. 相似文献
249.
As conservation reserves expand, the likelihood that they will capture areas degraded by previous land use increases. Ecological
restoration of such areas will therefore play an increasing role in biodiversity conservation. On the New South Wales North
Coast, recent expansion in the conservation estate has captured over 300 softwood and hardwood plantations, many with understoreys
dominated by exotic weeds. Here we present an overview of the practices we have adopted in managing flooded gum (Eucalyptus grandis) plantations infested with lantana (Lantana camara) to enhance their biodiversity value. Experiments designed to overcome barriers limiting regeneration of native forest in
conjunction with measurement of soil and plant responses yielded insights into the management of former timber plantations
for biodiversity. Canonical Correspondence Analysis indicated that the level of canopy retention (or logging intensity) within
sites consistently explained the greatest amount of variation in plant community composition (32–38% post-treatment). Thinning
and burning stimulated regeneration of native species. Retained canopy cover was proportional to the richness or abundance
of native woody shrubs, understorey trees and native perennial herbs, indicating that management intensity can be varied to
promote a range of conservation values. A state-and-transition model summarising purported management actions and likely outcomes
for these plantations is presented. This is the first time plantations have been managed solely for biodiversity. Logging
income means that plantation restoration can be cost-neutral, and the positive influence of a cover crop of trees means that
plantation management may generally be manipulated to promote biodiversity conservation. 相似文献
250.