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141.
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M. Matabos E. Thiébaut D. Le Guen F. Sadosky D. Jollivet F. Bonhomme 《Marine Biology》2008,153(4):545-563
Three different molecular markers (i.e. seven allozyme loci, two nuclear gene loci and, mtCOI DNA sequences) were used to
assess the genetic structure of the vent gastropod Lepetodrilus elevatus collected from three vent fields along the East Pacific Rise (13°N, 9°50′N and 17°S). While allozymes and nuclear loci suggested
a strong stepping-stone pattern, a multivariate analysis performed on allozymic frequencies showed the presence of two distinct
evolutionary lineages: the first situated in the north from 13°N to 9°50′N and the second in the south from 9°50′N to 17°S.
The analysis of mitochondrial DNA sequences confirmed the separation of L. elevatus into two distinct clades with a divergence of 6.5%, which is consistent with the interspecific level of sequence variation
in other vent species. A divergence time of 6–14 Mya was estimated between the two clades from previous clock calibrations.
Our results suggest that these taxa followed an allopatric speciation between the northern and southern parts of the EPR with
a recent demographic expansion of the southern clade to the north and a subsequent secondary contact (clade hybridisation).
This speciation was probably reinforced by a habitat specialisation of the two cryptic species because the southern clade
was mainly found associated with mussel-dominated communities and the northern clade with tubeworm-dominated communities.
However, the analysis of shell morphology failed to separate the two cryptic species based on this sole criterion although
they differed from Lepetodrilus elevatus galriftensis (Galapagos population) by a higher shell elevation. Within each clade, genetic differentiation was not related to the distance
across populations and could be within vent field as important as between fields. While both clades appear to be in expansion
since their speciation, significant excesses in heterozygotes suggest a very recent and local bottleneck at 17°S, probably
due to massive site extinction in this region. 相似文献
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Tran?Duc?ThanhEmail author Yoshiki?Saito Dinh?Van?Huy Van?Lap?Nguyen Thi?Kim?Oanh?Ta Masaaki?Tateishi 《Regional Environmental Change》2004,4(1):49-62
Vietnam is a tropical to subtropical country located on the eastern Asian coast where the Red (Song Hong) and Mekong rivers discharge into the sea. The catchments of these two transboundary rivers cover parts of six countries, and their water and sediment discharges greatly influence the coastal seas of Vietnam. The impact of human activities include changes in the supply and distribution of water, sediments, and nutrients; changes in the relationships and balance among dynamically interacting factors and processes; and changes in the quality of the coastal and marine environments due to the increased use and accumulation of pollutants and the loss of habitats. These impacts have resulted in increasing unpredictability and severity of coastal problems such as floods, erosion, sedimentation, and saltwater intrusion; environmental pollution; and the degradation of ecosystems, with accompanying decrease in biodiversity and fishery productivity. 相似文献
146.
Chakrabortty Rabin Pal Subodh Chandra Arabameri Alireza Ngo Phuong Thao Thi Chowdhuri Indrajit Roy Paramita Malik Sadhan Das Biswajit 《Environment, Development and Sustainability》2022,24(3):3518-3557
Environment, Development and Sustainability - The large-scale water-induced erosion is one of the most determining elements on land degradation in subtropical monsoon-dominated region. From this... 相似文献
147.
Huong Do Thi Thu Ha Nguyen Thi Thu Do Khanh Gia Van Thanh Nguyen Hens Luc 《Environment, Development and Sustainability》2022,24(4):5032-5051
Environment, Development and Sustainability - The Northeastern coastal zone of Vietnam possesses high biodiversity and rich ecosystems like coral reefs, seagrasses, beaches and mangroves. It also... 相似文献
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Ecologically based management of rodents in the real world: applied to a mixed agroecosystem in Vietnam. 总被引:1,自引:0,他引:1
Peter R Brown Nguyen Phu Tuan Grant R Singleton Phi Thi Thu Ha Phung Thi Hoa Dao Thi Hue Tran Quang Tan Nguyen Van Tuat Jens Jacob Warren J Müller 《Ecological applications》2006,16(5):2000-2010
Rodents cause significant damage to lowland irrigated rice crops in the Red River Delta of Vietnam. A four-year study was conducted in 1999-2002 to examine the effectiveness of applying rodent control practices using the principles of ecologically based pest management. Four 100-150 ha study sites adjacent to villages were selected and farmers on two treated sites were asked to follow a set of rodent management practices, while farmers on the untreated sites were asked not to change their typical practices. Farmers on the treated sites were encouraged to use trap-barrier systems (TBS's; 0.065-ha early planted crop surrounded by a plastic fence with multiple capture traps; one TBS for every 10-15 ha), to work together over large areas by destroying burrows in refuge habitats soon after planting (before the rats reestablish in the fields and before the onset of breeding), synchronizing planting and harvesting of the their rice crops, cleaning up weeds and piles of straw, and keeping bund (embankment) size small (<30 cm) to prevent burrowing. A 75% reduction in the use of rodenticides and plastic barrier fences (without traps or an early crop) was achieved on treated sites. The abundance of rodents was low after implementation of the management practices across all sites. There was no evidence for an effect of treatment on the abundance of rodents captured each month using live-capture traps, and no difference in damage between treatments or in yields obtained from the rice crops. Therefore, ecologically based rodent management was equally effective as typical practices for rodent management. Farmers on the treated sites spent considerably less money applying rodent control practices, which was reflected in the comparative increase in the partial benefit:cost of applying ecologically based rodent management from 3:1 on treated sites and untreated sites prior to the implementation of treatments to 17:1 on treated sites in the final year of the project. 相似文献
150.
Zhang B Vautard R Oanh NT 《Journal of the Air & Waste Management Association (1995)》2005,55(7):903-918
Two photochemical smog modeling systems, UAM-V/ SAIMM (the Variable-Grid UAM/Systems Applications International Mesoscale Model) and CHIMERE/ECMWF (European Center for Medium Range Weather Forecast), are applied to the same tropical domain (Bangkok Metropolitan Region) and the same episode (January 13-14, 1997) to evaluate their relative performance using the same anthropogenic emission database (emission database available at the Pollution Control Department [PCD] 1997). Ozone (O3) produced by both models meets U.S. Environment Protection Agency (EPA) suggested prediction criteria of mean normalized bias error and mean normalized gross error on January 14 but none on January 13. Both models are tested with various modified databases of precursors emissions from the PCD original database. Performance of UAM-V is the best when using the modified emission data with volatile organic compound (VOC), NOx, and CO mobile source emission reduced by 50%, 50%, and 20% from the original database. CHIMERE suggests a similar emission database except for the VOC emission, which is a reduction by 40% from the original PCD mobile source emission. Spatial and temporal variations of O3, CO, NOy (total reactive nitrogen), and Ox (NO2+O3) predicted by both model systems using the modified 相似文献