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El-Raey M. Dewidar KR. El-Hattab M. 《Mitigation and Adaptation Strategies for Global Change》1999,4(3-4):343-361
Assessment of the vulnerability and expected socioeconomic losses over the Nile delta coast due to the impact of sea level rise is carried out in details. Impacts of sea level rise over the Governorates of Alexandria and Port Said in particular, are evaluated quantitatively. Analysis of the results at Alexandria Governorate indicate that, if no action is taken, an area of about 30% of the city will be lost due to inundation. Almost 2 million people will have to abandon their homeland; 195,000 jobs will be lost and an economic loss of over $3.5 Billion is expected over the next century. At Port Said Governorate results indicate that beach areas are most severely affected (hence tourism), followed by urban areas. The agriculture sector is the least affected sector. It is estimated that the economic loss is over $ 2.0 Billion for 0.50 m SLR and may exceed $ 4.4 Billion for 1.25 m SLR. Options and costs of adaptation are analyzed and presented. Multi-criteria and decision matrix approaches, based on questionnaire surveys are carried out to identify priorities for the two cases. Analysis of these techniques of two options; the current policy (hard protection measures on some vulnerable areas) and no action (stopping these activities) have the lowest scores. Beach nourishment and integrated coastal zone management (ICZM) have the highest scores, however ICZM has high cost measures. The most cost-effective option is the land-use change, however with relatively very high cost measure. It is recommended that an ICZM approach be adopted since it provides a reasonable trade off between costs and cost effectiveness. 相似文献
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Marco Antonio DS Guidugli-Lazzarini KR do Nascimento AM Simões ZL Hartfelder K 《Die Naturwissenschaften》2008,95(10):953-961
The switch from within-hive activities to foraging behavior is a major transition in the life cycle of a honeybee (Apis mellifera) worker. A prominent regulatory role in this switch has long been attributed to juvenile hormone (JH), but recent evidence
also points to the yolk precursor protein vitellogenin as a major player in behavioral development. In the present study,
we injected vitellogenin double-stranded RNA (dsVg) into newly emerged worker bees of Africanized genetic origin and introduced them together with
controls into observation hives to record flight behavior. RNA interference-mediated silencing of vitellogenin gene function shifted the onset of long-duration flights (>10 min) to earlier in life (by 3–4 days) when compared with sham
and untreated control bees. In fact, dsVg bees were observed conducting such flights extremely precociously, when only 3 days
old. Short-duration flights (<10 min), which bees usually perform for orientation and cleaning, were not affected. Additionally,
we found that the JH titer in dsVg bees collected after 7 days was not significantly different from the controls. The finding
that depletion of the vitellogenin titer can drive young bees to become extremely precocious foragers could imply that vitellogenin
is the primary switch signal. At this young age, downregulation of vitellogenin gene activity apparently had little effect on the JH titer. As this unexpected finding stands in contrast with previous results
on the vitellogenin/JH interaction at a later age, when bees normally become foragers, we propose a three-step sequence in
the constellation of physiological parameters underlying behavioral development.
David Santos Marco Antonio and Karina Rosa Guidugli-Lazzarini contributed equally to the present study. 相似文献
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