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At least 217 records · Page 12Linked to original sources

The ethnomedicine of the Waorani of Amazonian Ecuador.

The Waorani Indians of eastern Ecuador are one of the least acculturated tribes in South America and hence provide a unique opportunity for studying the role of medicinal plants in an isolated Amazonian people. Biomedical studies conducted by a team from Stanford and Duke Universities have revealed a surprising dearth of endemic disease among recently contacted Waorani. An intensive ethnobotanical study in the spring of 1980 found a perspicacious knowledge of ethno-ecology among all adult Waorani, but discovered relatively few medicinal plants. Partial results of this survey and a discussion of Waorani disease concepts are presented. The implications in terms of the origin of plant medicines among indigenous peoples are discussed. Are the Waorani unique because of their isolation or do they represent a pattern of medicinal plant use closer to the aboriginal situation before the impact of Western disease? The conclusions challenge the orthodox view of the native and the origins of his prodigious knowledge of medicinal botany.

Ecuador↗

The status of ethnopharmacology in Brazil.

Brazil is a country of interest to ethnopharmacology because of its great wealth of cultural and biological diversity. This paper describes relevant research activities in the areas of botany, chemistry, basic and clinical pharmacology, and discusses the key factors that shaped ethnopharmacology development in the country. Specific attention is given to analyzing ongoing attempts to include medicinal plant based formulations in the official health care system.

Animals↗

About the equilibrium shape of fibred structures, and biological shapes.

Biological morphogenesis has often been modeled with reaction-diffusion models [A.M. Turing, The chemical basis of morphogenesis, Phil. Trans. R. Soc. Lond. B 237 (1952) 37-72]. The interplay of bio-chemical fields is supposed to generate shapes by positional information carried by the values in the field. However, the structure of the biological tissue at the microscopic scale is absent from these models. We show that the fibred nature of biological tissue induces specific morphogenic properties. Fibred shapes can be calculated from physical principles borrowed from the theory of crystallogenesis. These give an intuitive insight into the shape of fruits or vegetables, buds and pins in botany, fingers, muscles, insects abdomen and heart in the animal realm, and also into other fibred structures such as the mitotic spindle. We predict the existence of bumps, apices or cusps at poles of fibred structures. An extrapolation to out-of-equilibrium growth predicts that these structures grow forward in the direction of the cusp, and that fibred organs should have a regular branching ordering. However, our model does not take into account the elasto-plastic properties, or the composite nature of the living material.

Biophysical Phenomena↗

Considerations for the use of soil ecological classification and assessment concepts in soil protection.

In comparison with other environmental compartments, the protection of soil was identified relatively late as an important issue. Even later, policy makers and the general public considered the ecological functions of the soil. However, recently, the central role of these functions, as well as the importance of the soil organism community, has become obvious in several countries in Europe and in the European Union itself. In this contribution, basic considerations referring to use of ecological endpoints for the classification and assessment of soils are discussed. The article begins with two goals of protection: to protect soil so that it can function and to protect soil as a habitat for organisms necessary for these functions. Afterward, the quality of soil from is discussed from a biological point of view. Finally, on the basis of experience from limnology and botany, recommendations are made for monitoring programs. In other articles of this series, details of the entire approach to ecological classification and assessment are outlined.

Animals↗

A review of plants used in folk veterinary medicine in Italy as basis for a databank.

We report folk veterinary phytotherapy in Italy collected from ethnobotanical scientific literature of the second half of the 20th Century. References are cited together with unpublished data gathered recently in the field by the authors. The data have been placed in two databases: one organized by the names of the plant species (> 260) and the other organized by bibliographic references. This represents the basis for the first national databank for ethnoveterinary botany in Europe. Plants not yet sufficiently studied in pharmacology and veterinary phytotherapy were also identified.

Animals↗

Anti-HIV activities of organic and aqueous extracts of Sutherlandia frutescens and Lobostemon trigonus.

A screening process was applied to extracts made from Sutherlandia frutescens (L.) R. Br (Fabaceae) and Lobostemon trigonus (Boraginaceae) as identified by the Botany Department, University of Port Elizabeth to detect if any of the extracts inhibited the human immunodeficiency virus (HIV). For purposes of dereplication, sulphated polysaccharides were removed and bovine serum albumin (BSA) was included in the assays to adsorb non-specific tannins potentially present. In the reverse transcriptase (RT) assay, an aqueous extract of the Lobostemon leaves inhibited HIV-1 RT with an IC50 value of 49 microg/ml, while in the protease assay no inhibition was seen. In the alpha- and beta-glucosidase assays, no significant inhibition was seen with the inclusion of BSA, indicating tannin-based inhibitory effects on these two enzymes. The beta-glucuronidase inhibitory activity, however, was retained in the presence of BSA. The study shows that Sutherlandia extracts contain inhibitory compounds active against HIV target enzymes, while aqueous Lobostemon leaf extracts contain a potent HIV-1 RT inhibitor, thus showing a potential mechanistic action of these plants in aiding HIV-positive patients.

Anti-HIV Agents↗

Integrating the theories of Darwin and Bernoulli: maladaptive baroreceptor network dysfunction may explain the pathogenesis of aortic aneurysms.

Current treatment options for aortic aneurysms are suboptimal and their pathogenic mechanisms remain unclear. We propose the existence of a coordinated multi-node baroreceptor network that measures pressures at all vascular bifurcations and enables system-wide hemodynamic coordination and vasomotor regulation, in accordance with the principle of Bernoulli. While the presence of baroreceptors at bifurcations remains unknown, behavior at the level of systems predicts their existence, possibly as glomus cell derivatives. We propose that pressure misregistration among sensor nodes at different vascular bifurcations can precipitate feed-forward dysfunctions that promote thrombosis, inflammation, and vasomotor dysregulation resulting in aneurysm formation. One example of this phenomenon is aortic aneurysm, which is currently attributed to focal anatomic defects. As plaque builds in the infrarenal aorta, the increased blood velocity through this segment can widen the difference between pressures sensed at the iliac and the renal artery bifurcations. Due to the Bernoulli effect, this change creates an incorrect impression of reduced dynamic pressure at the kidneys. The erroneous perception of hypovolemia can induce a pernicious cycle of maladaptive adrenergia and associated coagulation and thrombosis, particularly in the infrarenal aortic segment as the body attempts to normalize renal perfusion. Atherosclerosis can further exacerbate baroreceptor dysfunction by interfering with sensor biology in feed-forward fashion. Hypertension may be a consequence as well as a source of atherosclerosis and aneurysm. The described system may have evolved when trauma-related hypovolemia was a far more prevalent driver of natural selection but may be rendered maladaptive in the setting of modern stressors. Failure to address these factors may explain the suboptimal long-term outcomes with current surgical and endovascular treatments for aneurysms. Implications for other potential sensor networks including chemoreceptors and lymphoid tissues at bifurcating biologic branch-points such as vessels, airways, nerves, lymphatics, and ducts are discussed. Our framework may also provide a new basis for understanding thoracic aneurysm, renovascular dysfunctions, coronary artery disease, carotid artery disease, pulmonary embolism, portal hypertension, venous thrombosis, biliary disease, pancreatic disease, and neurologic disease. Novel treatment paradigms based on drugs or interconnected networks of devices that modulate sensors are envisioned. Improving the interface between sensors and their substrate information by techniques such as minimally traumatic atherectomy or thrombectomy may also restore appropriate sensor function. Lessons learned from bifurcation sensors and their potential maladaptations may generalize to other types of branching systems including botany, civil engineering, and Pitot tube aeronautics.

Animals↗

Charles Bonnet, his life, and his syndrome.

Charles Bonnet (1720-1792) was an eminent naturalist and philosopher whose contributions to botany and philosophy were highly regarded and honored by his contemporaries in the scientific community of his era in France and England. In1760 he first described and analyzed formed visual hallucinations experienced by his grandfather. The syndrome was named after Bonnet in 1937 by George de Mosier, another native of Geneva, Switzerland.

Hallucinations↗

Plant cytoplasm preserved by lightning.

Usually only an organism with hard parts may be preserved in the fossil record. Cytoplasm, which is a physiologically active part of a plant, is rarely seen in the fossil record. Two Cretaceous plant fossils older than 100 million years with exceptional preservation of cytoplasm are reported here. Some cytoplasm is well preserved with subcellular details while other cytoplasm is highly hydrolyzed in the cortex of the same fossil even though both of preservations may be less than 2 microm away. The unique preservation pattern, sharp contrast of preservation in adjacent cells and the exceptional preservation of cytoplasm in the cortex suggest that lightning should play an important role in the preservation of cytoplasm and that cytoplasmic membranes may be more stable than the cell contents. Interpreting the preservation needs knowledge scattering in several formerly unrelated fields of science, including geophysics, botany, biophysics, cytology and microwave fixation technology. This new interpretation of fossilization will shed new light on preservation of cytoplasm and promote cytoplasm fossils from a position of rarity to a position of common research objects available for biological research. The importance of the identification of cytoplasm in fossil lies not in itself but in how much it influences the future research in paleobotany.

Cytoplasm↗

Emerging infectious diseases of plants: pathogen pollution, climate change and agrotechnology drivers.

Emerging infectious diseases (EIDs) pose threats to conservation and public health. Here, we apply the definition of EIDs used in the medical and veterinary fields to botany and highlight a series of emerging plant diseases. We include EIDs of cultivated and wild plants, some of which are of significant conservation concern. The underlying cause of most plant EIDs is the anthropogenic introduction of parasites, although severe weather events are also important drivers of disease emergence. Much is known about crop plant EIDs, but there is little information about wild-plant EIDs, suggesting that their impact on conservation is underestimated. We conclude with recommendations for improving strategies for the surveillance and control of plant EIDs.

Journal Article↗

Separating the elements of habitat structure: independent effects of habitat complexity and structural components on rocky intertidal gastropods.

It has been difficult to understand the effects of habitat structure on assemblages because the different elements of habitat structure are often confounded. For example, few studies consider that the effects of structural components of a habitat (rocks, trees, pits, pneumatophores) may be separate from the complexity (e.g. surface area {SA}) they create. From prior observations and experiments, I developed three hypotheses about the effects of habitat structure on gastropods on rocky intertidal shores in Botany Bay, Australia. (1) The complexity of habitats positively affects the density and richness of gastropods. (2) The fractal dimension (D) represents elements of complexity that affect the density and richness of gastropods better than other indices of complexity. (3) The effects of specific structural components on the density and richness of gastropods are independent of their complexity. To test these hypotheses, treatments composed of pits and pneumatophores were used to independently manipulate complexity and structural components in experiments repeated at five different times on two shores. There was support for hypotheses (1) and (3) at most times and places but not for hypothesis (2). Richness, total density, and the densities of two of the three most common gastropods were greater in treatments with greater complexity. D was not definitively better than other indices of complexity, but D and SA were recommended for further consideration. When complexity was held constant, species richness and the density of most gastropods, except Austrocochlea porcata, was greater in treatments with pits than with pneumatophores. A common mechanistic explanation for the effects of habitat complexity on rocky intertidal gastropods relies on a specific characteristic of pits; they pool water and reduce desiccation stress. This assumption may be appropriate for many gastropods, but it was inappropriate for A. porcata. Habitat complexity affected its density, but this was not because of a characteristic specific to pits. The complexity and structural components of habitats have separate effects on assemblages, and it confuses the study of habitat structure to combine them.

Journal Article↗

Comparison methods for branching and axillary flowering sequences.

Comparing branching and axillary flowering patterns accurately is a major issue both in botany and in various agronomic contexts. Data take the form of sequences which naturally represent the underlying structural information of branching and axillary flowering patterns. Various comparison methods are proposed based either on sequence alignment or on the computation of dissimilarity measures between (hidden) Markovian models built from sets of sequences. Sequence alignment is a natural complement to the exploratory tools and statistical models proposed in Guédon et al. (J. Theor. Biol. 212 (2001) 481) with the distinctive feature of applying to individual sequences. Comparison methods may also be used to reveal some grouping within a set of sequences or to evaluate the strength of a predefined grouping of sequences. The proposed approach is illustrated by examples corresponding to different plant species and different biological or agronomic objectives.

Computer Simulation↗

Petasites hybridus: a tool for interdisciplinary research in phytotherapy.

The 3rd Petasites gathering took place in Romanshorn, Switzerland on March 29, 1996 and gave 16 European scientists the opportunity to transmit their latest considerable discoveries to interested researchers working in different scientific disciplines such as pharmacognosy, botany, chemistry, pharmacology, medicine or clinical pharmacy. The newest findings on Petasites hybridus as a significant plant drug showed very promising aspects of therapeutic utility. Great progress has been made in chemical analytical methods and the determination of pharmacological activities. Substantial advances have also occurred in the production of bioassay procedures and plant materials, particularly utilizing cell- and tissue-culture techniques.

Animals↗

Isolation, characterization, and systematic significance of 2-pyrone-4,6-dicarboxylic acid in Rosaceae.

2-Pyrone-4,6-dicarboxylic acid was isolated from Potentilla anserina. Until now this substance was only found in bacteria and not in higher plants. By sterile cultivation it was verified that this compound is genuine also in plants. In addition the systematic relevance of 2-pyrone-4,6-dicarboxylic acid within the Rosaceae was tested. The compound seems to be a chemotaxonomic marker for the Rosoideae sensu stricto proposed by Morgan et al. (Morgan, D.R., Soltis, D.E., Robertson, K.R., 1994. Systematic and evolutionary implications of rbcL sequence variation in Rosaceae. American Journal of Botany 81, 890-903).

Chromatography, High Pressure Liquid↗

Mineralogy and mineral collections in 18th-century France.

During the 18th century, mineralogy constituted an integral part of natural history, sharing the concerns of botany and zoology over collection and classification. In Paris, many people owned private mineral collections, but these have been largely neglected by historians. Here, I examine the place of private collections in the history of mineralogy, arguing that they contributed socially, economically and intellectually to the field in a period before the dominance of the large national collection. I also show how the interests of private collectors diverged from those of the curators of public collections, particularly following the French Revolution.

Catalogs as Topic↗

Fertility or sterility? Darwin, Naudin and the problem of experimental hybridity.

Darwin came to realize that he could never devise an experiment that would demonstrate the development of new species by crossing hybrids. Instead, he turned to the problem of sterility within a species. The difference between Darwin's experimental and theoretical approach and that of French scientists working in the Muséum d'Histoire Naturelle in Paris can be shown most vividly by tracking Darwin's experiments in botany and his interest in those of Charles Naudin on hybrid plants. In his discussion of Mendel, Robert Olby has provided an interesting analysis of Naudin's hereditary concepts. I have approached some of the same work here with an emphasis on the question of sterility raised by Darwin, not simply between hybrids but within members of the same species and the light that he thought this could throw on both heredity and the origin of species.

Crosses, Genetic↗

An herbal El Dorado: the quest for botanical wealth in the Spanish Empire.

Few historians of science would associate the Spanish Empire with scientific innovation. However, recent research is increasingly demonstrating the Crown's strong commitment to scientific research, particularly in the areas of botany, natural history and medicine. Although this commitment began in the 16th century, it reached full development in the 18th, when Enlightenment ideals led to growing interest in exploiting natural resources in the New World. Interest in new resources, which offered alternatives to silver and traditional cash crops, focused largely on medicinal herbs indigenous to the Americas. Herbs that provided 'miracle cures' for age-old diseases would bring both material and moral wealth to the Crown, and were thus pursued vigorously throughout Spanish America. The result was a search for an 'herbal' El Dorado, reminiscent of 16th-century expeditions in search of a mythical land of gold--only in this case, medicine, not metal, was the goal.

Americas↗

Polyphasic taxonomy of a novel yeast isolated from antarctic environment; description of Cryptococcus victoriae sp. nov.

In 1992 some samples of mosses, lichens and soils were collected from Botany Bay, Southern Victoria Land (77 degrees 01' S 162 degrees 32' E) and, as a result of a routine screening programme some yeasts were isolated. One of them, designated as strain G5, showed marked differences when compared to other antarctic yeasts. According to morphological and physiological characteristics, we were able to identify the strain G5 as a yeast belonging to the genus Cryptococcus. Some characteristics of this genus are the growth response to myo-inositol, celobiose, raffinose and D-glucuronate, no-fermentation, the absence of mycelium and pseudomycelium, asexual reproduction, Diazolium blue B test (DBB) and urea hydrolisis positive and the growth without vitamines. This strain (G5) formed cream colonies of slimy appearance with cells of 3 x 2 microns in size, that grew between 4 degrees C and 20 degrees C. The G + C content of strain G5 was 50.3 mol%. The molecular characterization by whole-cell proteins and RFLP analysis of the 5.8S rRNA gene and the two ribosomal internal transcribed spacers (5.85-ITS region), revealed that this strain was different from other antarctic species of this genus. The phylogenetic tree deduced from the 5.8S rRNA gene sequence showed the strain G5 as a member of the genus Cryptococcus, clearly separated from other basidiomycetous yeasts. On the basis of the physiological, genotypical and phylogenetical data, the new isolate G5 was described as Cryptococcus victoriae, sp. nov., with the type strain G5 (= CECT 11114).

Base Sequence↗