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11.
ABSTRACT

Forest Management Unit (FMU) is a growing phenomenon in Cameroon, impacting biodiversity negatively. This study was initiated to assess vascular epiphytes’ species loss on exploited trees to suggest conservation strategies. We hypothesized that: 1) epiphyte loss in this managed forest was significantly high and different with respect to phorophyte species; 2) epiphyte diversity loss has threatened status. Epiphyte survey was conducted on four most exploited trees in this study area. 63 exploited trees (Phorophytes) were surveyed. Shannon, Chao1 and Sorensen’s similarity indexes were used. Kruskal–wallis test was used to test the hypotheses. We recorded (70 epiphyte species, 33 genera and 12 families). Orchidaceae constituted highest epiphyte species with 43 species (61.4%). Epiphytes diversity was similar with respect to different phorophyte species (Sorensen?50%). Shannon’s index (3.36) showed a high epiphyte diversity loss. Kruskal–wallis showed no significant difference in epiphyte loss between phorophytes but a significant difference between zones, with canopies losing the highest epiphytes. With one epiphyte species’ status almost threatened and epiphyte diversity loss (significant); strict sustainable conservation methods like: epiphyte shade-houses and relocation are solicited. More data are needed from similar and different managed forest strata for epiphyte conservation policy enactment in Cameroon.  相似文献   
12.

Background  

We recently reported that the altitude of origin altered the photic and thermal sensitivity of the circadian pacemaker controlling eclosion and oviposition rhythms of high altitude Himalayan strains of Drosophila ananassae. The present study was aimed at investigating the effects of altitude of origin on the pacemaker controlling the adult locomotor activity rhythm of D. helvetica.  相似文献   
13.
Vascular epiphyte biomass is poorly studied in Congo Basin forest. The aim of this study was to develop a protocol to estimate epiphyte biomass. Epiphytes were collected on 77 phorophytes of diameter 57–169.5 cm, oven-dried for biomass. Allometric equations for epiphyte biomass were developed with diameter and phorophyte height as predictor variables using regression analysis. The mean epiphyte biomass was 24.48 kg/phorophyte with a standard deviation of ±49.99. Cylicodiscus gabunensis and Triplochiton scleroxylon hosted the greatest epiphyte biomass with a mean vascular epiphyte biomass of 71.65 and 62.3 kg/phorophyte, respectively. Kruskal–Wallis test (p = 0.005) showed that there was a significant difference between epiphyte biomass with respect to phorophyte species. The relationship found between epiphyte biomass and dendrometric variables of the phorophytes were intermediate (Adj.R2 < 0.630) meaning epiphyte biomass increased with increasing tree diameter. However, models with diameter input variables had greater prediction than input variables of total height. Based on the Akaike Information Criterion (AIC), the allometry lnY = ?21.37 + 5.21 x ln(D) ?0.35 x ln(H) with AIC (183) was the best equation for the prediction of epiphyte biomass. These findings shall contribute to REDD+ (Reducing Emissions from Deforestation and Forest Degradation) strategy for climate change mitigation in Congo Basin.  相似文献   
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