Three new species of the front-eyed trapdoor genus Idiops, viz., Idiops joida sp. nov. from the Western Ghats of Karnataka, I. mettupalayam sp. nov. from the foothills of the Western Ghats in Tamil Nadu and I. oriya sp. nov. from Odhisa, are described. Natural history information for all these species is provided as is an identification key to Idiops species from South andSoutheast Asia.
High nighttime urban air temperatures increase health risks and economic vulnerability of people globally. While recent studies have highlighted nighttime heat mitigation effects of urban vegetation, the magnitude and variability of vegetation-derived urban nighttime cooling differs greatly among cities. We hypothesize that urban vegetation-derived nighttime air cooling is driven by vegetation density whose effect is regulated by aridity through increasing transpiration. We test this hypothesis by deploying microclimate sensors across eight United States cities and investigating relationships of nighttime air temperature and urban vegetation throughout a summer season. Urban vegetation decreased nighttime air temperature in all cities. Vegetation cooling magnitudes increased as a function of aridity, resulting in the lowest cooling magnitude of 1.4 °C in the most humid city, Miami, FL, and 5.6 °C in the most arid city, Las Vegas, NV. Consistent with the differences among cities, the cooling effect increased during heat waves in all cities. For cities that experience a summer monsoon, Phoenix and Tucson, AZ, the cooling magnitude was larger during the more arid pre-monsoon season than during the more humid monsoon period. Our results place the large differences among previous measurements of vegetation nighttime urban cooling into a coherent physiological framework dependent on plant transpiration. This work informs urban heat risk planning by providing a framework for using urban vegetation as an environmental justice tool and can help identify where and when urban vegetation has the largest effect on mitigating nighttime temperatures.
Abstract:The known distribution range of Poecilotheria striata Pocock, 1895 in India is from Mysuru in the north to Thiruvananthapuram in the south. During the recent surveys in northern Karnataka, P. striata was recorded from six locations in Dandeli and nearby areas in the Uttara Kannada District. With the new records from Uttara Kannada, the distribution range of this species extends to the northern part of the Western Ghats by ca. 400km from Mysuru. Additional records on distribution of P. striata are also provided from various surveys carried out in the last 10 years. Based on these new records, the IUCN Red List status of P. striata is recommended to be reassessed as Near Threatened. Additional information on the morphology and natural history of P. striata is provided in the paper.
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