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201.
We assessed whether published observations of the ecology of encrusting coralline algae (Rhodophyta) from tropical and temperate coasts could be used to predict patterns and responses on a polar coast where such knowledge does not exist. On subtidal rocky coasts near Casey, East Antarctica, we detected a strong positive association of understorey encrusting coralline algae with canopies formed by the endemic alga Himantothallus grandifolius. The experimental removal of H. grandifolius caused corallines to bleach from red to pink/white concomitant with a decline in their photosynthetic activity. The magnitude of this decline (mean ± SE = 56.85±8.43%) was remarkably similar to that observed on temperate coasts (45.98±5.91%). Positive effects of nutrient enrichment of the surrounding water, hypothesized to alleviate the negative effects of canopy loss on encrusting corallines, were not detected. Removing H. grandifolius increased the intensity of photosynthetically active radiation and ultra-violet radiation reaching the substratum by three orders of magnitude, providing the basis for models invoking enhanced irradiance as the primary cause of the negative effects of canopy loss. Striking similarities among our results and those from tropical and temperate coasts suggest that responses of encrusting corallines to loss of canopies may have predictive properties across large distances and environmental gradients (tropical–temperate–polar).  相似文献   
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We identified different distributions of marine nonindigenous species (NIS) and native species on some artificial structures versus natural reefs and using experimental manipulations, revealed some possible causal mechanisms. In well-established subtidal assemblages, numbers of NIS were 1.5–2.5 times greater on pontoons or pilings than on rocky reefs, despite the local species pool of natives being up to 2.5 times greater than that of NIS. Conversely, on reefs and seawalls, numbers of native species were up to three times greater than numbers of NIS. Differential recruitment to different positions and types of surfaces appeared to influence distribution patterns. NIS recruited well to most surfaces, particularly concrete surfaces near the surface of the water, whilst natives occurred infrequently on wooden surfaces. The position of rocky reefs and seawalls close to the shore and to the seabed appeared to make them favourable for the recruitment of natives, but this positioning alone does not hinder the recruitment of NIS. We argue that pontoons and pilings represent beachheads (i.e. entry points for invasion) for many nonindigenous epibiota and so enhance the spread and establishment of NIS in estuaries. Habitat creation in estuaries may, therefore, be a serious threat to native biodiversity. Electronic supplementary material Supplementary material is available in the online version of this article at and is accessible for authorized users.  相似文献   
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It is difficult to define “property damage,” but one knows it when one sees it. Groundwater and soil impacts are readily discernible. However, owners of property that has been adversely affected by environmental conditions caused by others have recently sought recovery for the stigma which may attach to property which has in the past been affected by hazardous substances, even after remediation. These cases are particularly interesting in light of the traditional causes of action for negligence, trespass, and nuisance, and the statutes of limitations which may affect both rights to sue and damages. This article addresses “stigma” as an emerging area and an element of damages in environmental cases.  相似文献   
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Epidemiologic studies of falls from buildings and other fixed structures have historically focused on the urban environment. In this study, national injury mortality and hospitalisation data, supplemented by Coroner's investigation reports, were used to describe the epidemiology of such falls across an entire nation, New Zealand. The overall death rate was 0.30 per 100,000 persons per year. Ninety-three percent of cases were older than 14 years of age. Sixty-nine percent of falls were from buildings, with 31% from other structures. Sixty-seven percent of fatal falls were from a height of 10 meters or less. The incidence rate of hospitalisations was 21.4, with the highest rates among those aged 0–9. Fifty-five percent of non-fatal falls were from buildings, with 45% from other structures. National measures to prevent falls from structures should extend to a wide variety of structures and environments. Data presented on the age distributions of falls from different types of structures and structural components (windows, etc.) provide indicators for fall prevention.  相似文献   
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<正>在本文中,我们将讨论操作腐蚀试验箱的实验室工程师和研究员提出的众多问题:如何测量和控制这些试验箱中的相对湿度和温度。腐蚀试验标准中对相对湿度测量和控制的描述不具体,甚至某些时候是错误的,导致试验者产生了很大的困惑。设备制造商已经使用了各种各样的测量技术,每种测量技术代表对标准的一种合理解释,但是它们相互之间产生的结果不尽相同。除了这些困惑外,对相对湿度控制的需求和人们所期望的现代测试标准同样不明确。最后,实验室条件  相似文献   
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The ability to predict which alien plants will transition from naturalized to invasive prior to their introduction to novel regions is a key goal for conservation and has the potential to increase the efficacy of weed risk assessment (WRA). However, multiple factors contribute to plant invasion success (e.g., functional traits, range characteristics, residence time, phylogeny), and they all must be taken into account simultaneously in order to identify meaningful correlates of invasion success. We compiled 146 pairs of phylogenetically paired (congeneric) naturalized and invasive plant species in Australia with similar minimum residence times (i.e., time since introduction in years). These pairs were used to test for differences in 5 functional traits (flowering duration, leaf size, maximum height, specific leaf area [SLA], seed mass) and 3 characteristics of species’ native ranges (biome occupancy, mean annual temperature, and rainfall breadth) between naturalized and invasive species. Invasive species, on average, had larger SLA, longer flowering periods, and were taller than their congeneric naturalized relatives. Invaders also exhibited greater tolerance for different environmental conditions in the native range, where they occupied more biomes and a wider breadth of rainfall and temperature conditions than naturalized congeners. However, neither seed mass nor leaf size differed between pairs of naturalized and invasive species. A key finding was the role of SLA in distinguishing between naturalized and invasive pairs. Species with high SLA values were typically associated with faster growth rates, more rapid turnover of leaf material, and shorter lifespans than those species with low SLA. This suite of characteristics may contribute to the ability of a species to transition from naturalized to invasive across a wide range of environmental contexts and disturbance regimes. Our findings will help in the refinement of WRA protocols, and we advocate the inclusion of quantitative traits, in particular SLA, into the WRA schemes.  相似文献   
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