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The mushroom message.

A basic law of ecology is that living things are tightly dependent on one another, often in ways that are not easy to imagine. Who, for example, would have predicted that when the last dodo was killed in 1675, that death would lead to the slow extermination of the tambalocoque tree, whose fruits germinate only after passing through the dodo's digestive system? Now no natural strands of tambalocoque younger than 300 years can be found. Or who would have predicted that clear-cutting tropical rainforests would so significantly alter local weather patterns that the tropical rainforest biome itself and its vast diversity of life might not survive? Such interactions are worth noting because of the possible ramifications of a phenomenon that ecologists have just begun to document. Mushrooms worldwide appear to be in a catastrophic state of decline. Throughout Europe, in countries with terrains as diverse as Holland, Germany, Austria, Czechoslovakia, Poland and England, wild mushrooms are becoming increasingly difficult to find. Those fungi that are found are significantly smaller than those found years ago. Preliminary data suggest that the same troubling situation is occurring throughout North American as well. The decline has been so precipitous that biologists have begun to refer to it as a mass extinction. The 2 obvious explanations for the demise of the mushrooms--habitat destruction and overpicking of edible types by an ever growing human population--have been ruled out. Sophisticated sampling schemes designed by ecologists control for the fact that there is less land available for wild mushrooms; they have been declining at a rate that far exceeds the rate at which land is being developed. The fact that the decline has affected both edible and inedible mushrooms equally indicates that humans hunting for tasty treats are not the main cause of the problem. The loss of wild mushrooms worldwide might not seem like that big a deal, but the consequences may well be grave because of the way those fungi interact with other life forms. If the mushrooms die off, ecologists fear that our forests may not be far behind. Many mushrooms live in close association with trees; the mushrooms provide the trees with water and minerals while the trees supply the mushrooms with carbohydrates. The mushrooms' underground filaments often extend much deeper into the soil than do the roots of trees, thus making available to trees resources that would otherwise be unusable. Ecologists have found that trees lacking mushrooms are significantly more susceptible to environmental stress than those growing with the fungi. Eef Arnolds, an ecologist specializing in mushrooms at the Agricultural University of the Netherlands thinks that "severe frost or drought could lead to a mass dying of trees." Although the cause of the decline has not be pinpointed, most experts believe that the mushrooms are responding to abnormal atmospheric levels of nitrogen, sulfur, and ozone. Dr. Arnolds suggests that in Holland the main culprit appears to be excessive nitrogen applied as fertilizer to agricultural fields. Once again it appears that we are seeing the unpredicted effects of our wanton pollution of our environment. If the experts are correct about the cause of the decrease in mushroom populations, the mushrooms can provide us with some very critical information and insight like the canaries that miners used to bring into mine shafts to warn of a lack of breathable air, these small indicator species are warning us about the state of our planet. We can only hope that collectively we have enough sense to begin to pay attention.

Conservation of Natural Resources↗

Searching for HIV/AIDS information on the World Wide Web.

Providing patients and their families with information on HIV/AIDS can be a challenge given the entire range of tissues that come packaged with the disease itself. Information on treatment and resources changes rapidly due to the nature of the disease, and it can be difficult to have printed sources on hand that are up to date. A greater percentage of patients are now computer literate with access to the World Wide Web readily available both at home and in public libraries. With this in mind, clinicians should include Web sources when they provide information to their patients. With some guidance in choosing among the many Web resources available, patients can easily take advantage of this free gold mine of information and resources on HIV/AIDS. This article provides a guide to choosing among these resources and a list of web sites that can be given to patients.

Computer User Training↗

Transforming the traditional discharge planning manual.

Discharge planning resources change frequently, and keeping them current, available, and accessible to case management (CM) staff and others is a challenge. Given the time-consuming and labor-intensive nature of updating, many organizations revise them in preparation for the tri-annual survey or when they are hopelessly out-of-date. The reality is that CM staff and others involved with discharges have their own personal "little black book" of resources. Those personal reference tools are treated with reverence and guarded like the family Bible. Organizations are challenged to have up-to-date resources available and accessible for staff in all areas. One approach is to transform the traditional paper-based manual into an electronic document and make it available on the organization's intranet. This approach means that each page of the current paper-based manual must be in electronic format, ending the use of overcopied resources that become difficult to read and "grandfathered in" to each successive edition of the paper manual. This option permits easy and rapid updates when resources and information change.

Academic Medical Centers↗

Detecting changes in natural resources using Land Condition Trend Analysis data.

The Land Condition Trend Analysis (LCTA) program is the US Army's standard for land inventory and monitoring, employing standardized methods of natural resources data collection, analyses, and reporting designed to meet multiple goals and objectives. Critical to using LCTA data in natural resources management decisions is the ability of the LCTA protocols to detect changes in natural resources. To quantify the ability of LCTA protocols to detect resource changes, power analysis techniques were used to estimate minimum detectable effect sizes (MDES) for selected primary and secondary management variables for three Army installations. MDES for a subset of primary variables were estimated using data from 27 installation LCTA programs. MDES for primary and secondary variables varied widely. However, LCTA programs implemented at larger installations with lower sampling intensities detected changes in installation resources as well as programs implemented at smaller more intensively sampled installations. As a national monitoring program that is implemented at individual installations, LCTA protocols provide relatively consistent monitoring data to detect changes in resources despite diverse resource characteristics and implementation constraints.

Conservation of Natural Resources↗

Seasonal variation in top-down and bottom-up processes in a grassland arthropod community.

Both top-down and bottom-up processes are common in terrestrial ecosystems, but how these opposing forces interact and vary over time is poorly understood. We tested the variation of these processes over seasonal time in a natural temperate zone grassland, a field site characterized by strong seasonal changes in abiotic and biotic conditions. Separate factorial experiments manipulating nutrients and cursorial spiders were performed in the wet and dry seasons. We also performed a water-addition experiment during the summer (dry season) to determine the degree of water limitation during this time. In the spring, nutrient addition increased plant growth and carnivore abundance, indicating a bottom-up control process. Among herbivores, sap-feeders were significantly enhanced while grazers significantly declined resulting in no net change in herbivore abundance. In the summer, water limitation was predominant increasing plants and all herbivores while nutrient (N) effects were non-significant. Top-down processes were present only in the spring season and only impacted the guild of grazing herbivores. These results show that bottom-up limitation is present throughout the season in this grassland, although the specific limiting resource changes as the season progresses. Bottom-up processes affected all trophic levels and many different guilds, while top-down effects were limited to a select group of herbivores and did not extend to the plant trophic level. Our results show that the relative strengths of top-down and bottom-up processes can shift over relatively short periods of time in habitats with a strong seasonal component.

Animals↗