Exact(3)
Although the nature of anthropogenic interactions with coastal ocean ecosystems is fundamentally different from that on land, there is undeniable impact of humans over the entire globe, and myriad ways that humans directly and indirectly impact the ocean carbon cycle.
Data reported and analyzed in this paper test and draw conclusions based on a non-partisan stance that recognizes biodiversity as a product of complex natural and anthropogenic interactions.
If, as presumed, PCDD/F-emission originates from ubiquitous sources then the reason that forest samples differ from agricultural ones can be assumed in the manner forest sites filter atmospheric pollutants and/or accumulation rates are higher in forest soils due to the lack of dilution via anthropogenic interactions such as, e.g. ploughing.
Similar(57)
This paper provides a literature review of the physical processes in the Yellow Sea as well as a review of the anthropogenic interaction and impact to the coastal area and these physical processes.
Our results provide further evidence that the observed genetic and chromosomal changes at this site were most likely caused by selective sweep initiated by increased selection administrated via anthropogenic interaction (ongoing removal of DFTD infected devils).
The realized species distribution is the combined result of not only climate factors but also the consequences of other factors, such as anthropogenic effects, species interactions and stochastic events [83].
Understanding the emergence of new zoonotic agents requires knowledge of pathogen biodiversity in wildlife, human-wildlife interactions, anthropogenic pressures on wildlife populations, and changes in society and human behavior.
Back (1966), Drever (1988), Stallard and Edmond (1983), Hem (1991), Karanth (1977) and Subba Rao (2002) explain the causes of changes in the groundwater quality with respect to soil rock water interaction, anthropogenic activities and marine sources.
Hydrogeochemistry of the coastal aquifers in Tuticorin, Tamil Nadu, India is studied by Mondal et al. (2011) to assess the influence of water rock interaction, anthropogenic contamination and seawater.
LiNK has the ability to generate predictions regarding host dispersal and pathogen distributions based on the anthropogenic landscape, human-wildlife interactions, host behaviors and interactions, and pathogen life histories at island-, populandon-, and individual levels.
We use a case study of the mountain date palm (Phoenix loureiroi Kunth), harvested in South India to produce brooms, to present a conceptual framework illustrating how intensive harvest of a common species interacts with other anthropogenic management practices, plant-animal interactions and surrounding environmental conditions.
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