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131.
132.
International environmental agreements (IEAs) can coordinate abatement of transboundary pollutants. This paper investigates
how heterogeneous countries facing a stock pollutant might structure such an agreement. In particular, we examine how an IEA
might be implemented with a set of monetary transfers. The focus is on transfers that are time invariant, linear in emissions,
and consistent with budget balance. There is a range of such schemes that would induce efficient emissions. We provide a simple
and intuitive characterization of these penalties and describe how specific proposals might be chosen in order to facilitate
compliance and implementation. Our proposals are illustrated with a simple example. We show that heterogeneity reduces the
scope for penalty schemes to jointly satisfy desirable properties. 相似文献
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136.
Packa Vlastimil Howell Todd Bostan Vadim Furdui Vasile I. 《Environmental science and pollution research international》2021,28(23):29498-29508
Environmental Science and Pollution Research - Trophic status in surface waters has been mostly monitored by measuring soluble reactive phosphorus (SRP) and total phosphorus (TP). Additional to... 相似文献
137.
Vega-Millán Christian B. Dévora-Figueroa Ana G. Burgess Jefferey L. Beamer Paloma I. Furlong Melissa Lantz R. Clark Meza-Figueroa Diana O´Rourke Mary Kay García-Rico Leticia Meza-Escalante Edna R. Balderas-Cortés José J. Meza-Montenegro Maria M. 《Environmental science and pollution research international》2021,28(26):34355-34366
Environmental Science and Pollution Research - Environmental arsenic exposure in adults and children has been associated with a reduction in the expression of club cell secretory protein (CC16) and... 相似文献
138.
Unlike any other foraging phyllostomid bat studied to date, Poey’s flower bats (Phyllonycteris poeyi-Phyllostomidae) emit relatively long (up to 7.2 ms), intense, single-harmonic echolocation calls. These calls are readily
detectable at distances of at least 15 m. Furthermore, the echolocation calls contain only the first harmonic, which is usually
filtered out in the vocal tract of phyllostomids. The foraging echolocation calls of P. poeyi are more like search-phase echolocation calls of sympatric aerial-feeding bats (Molossidae, Vespertilionidae, Mormoopidae).
Intense, long, narrowband, single-harmonic echolocation calls focus acoustic energy maximizing range and favoring detection,
which may be particularly important for cruising bats, like P. poeyi, when flying in the open. Flying in enclosed spaces, P. poeyi emit short, low-intensity, frequency-modulated, multiharmonic echolocation calls typical of other phyllostomids. This is
the first report of a phyllostomid species emitting long, intense, single-harmonic echolocation calls with most energy in
the first harmonic. 相似文献
139.
Soil and preen waxes influence the expression of carotenoid-based plumage coloration 总被引:1,自引:1,他引:0
The signaling function of carotenoid-based plumage is mainly determined by the concentration of pigments in feathers. For
this reason, most studies of the proximate control of coloration focus on processes during and preceding moult. In great tits
Parus major, past research demonstrates that carotenoid-based plumage coloration honestly indicates male quality and, thus, may be a
sexually selected signal. In this study, we investigate how dirt and preen oil influence the coloration of carotenoid-based
feathers in the great tit. We collected six feathers from each individual bird; three feathers served as controls while the
remaining three feathers were washed with a chloroform/methanol mixture to remove soil and preen waxes. We assessed plumage
coloration using digital photography. This cleaning procedure slightly enhanced ornamentation; the experimentally cleaned
feathers expressed hues shifted towards shorter wavelengths and expressed brighter overall coloration than control feathers.
This is the first experimental study conducted on wild birds demonstrating that, in addition to pigment concentration, the
presence of preen waxes and soils on feathers may contribute to variation in coloration. 相似文献
140.
The continuing conundrum of the LEA proteins 总被引:9,自引:0,他引:9
Research into late embryogenesis abundant (LEA) proteins has been ongoing for more than 20 years but, although there is a strong association of LEA proteins with abiotic stress tolerance particularly dehydration and cold stress, for most of that time, their function has been entirely obscure. After their initial discovery in plant seeds, three major groups (numbered 1, 2 and 3) of LEA proteins have been described in a range of different plants and plant tissues. Homologues of groups 1 and 3 proteins have also been found in bacteria and in certain invertebrates. In this review, we present some new data, survey the biochemistry, biophysics and bioinformatics of the LEA proteins and highlight several possible functions. These include roles as antioxidants and as membrane and protein stabilisers during water stress, either by direct interaction or by acting as molecular shields. Along with other hydrophilic proteins and compatible solutes, LEA proteins might also serve as “space fillers” to prevent cellular collapse at low water activities. This multifunctional capacity of the LEA proteins is probably attributable in part to their structural plasticity, as they are largely lacking in secondary structure in the fully hydrated state, but can become more folded during water stress and/or through association with membrane surfaces. The challenge now facing researchers investigating these enigmatic proteins is to make sense of the various in vitro defined functions in the living cell: Are the LEA proteins truly multi-talented, or are they still just misunderstood? 相似文献