23 resultados para PLANT-SPECIES RICHNESS


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Species?habitat associations may contribute to the maintenance of species richness in tropical forests, but previous research has been conducted almost exclusively in lowland forests and has emphasized the importance of topography and edaphic conditions. Is the distribution of woody plant species in a Peruvian cloud forest determined by microhabitat conditions? What is the role of environmental characteristics and forest structure in habitat partitioning in a tropical cloud forest? We examined species?habitat associations in three 1-ha plots using the torus-translation method. We used three different criteria to define habitats for habitat partitioning analyses, based on microtopography, forest structure and both sets of factors. The number of species associated either positively or negatively with each habitat was assessed. Habitats defined on the basis of environmental conditions and forest structure discriminated a greater number of positive and negative associations at the scale of our analyses in a tropical cloud forest. Both topographic conditions and forest structure contribute to small-scale microhabitat partitioning of woody plant species in a Peruvian tropical cloud forest. Nevertheless, canopy species were most correlated with the distribution of environmental variables, while understorey species displayed associations with forest structure.

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The leaf cuticular ultrastructure of some plant species has been examined by transmission electron microscopy (TEM) in only few studies. Attending to the different cuticle layers and inner structure, plant cuticles have been grouped into six general morphological types. With the aim of critically examining the effect of cuticle isolation and preparation for TEM analysis on cuticular ultrastructure, adaxial leaf cuticles of blue-gum eucalypt, grey poplar, and European pear were assessed, following a membrane science approach. The embedding and staining protocols affected the ultrastructure of the cuticles analysed. The solubility parameter, surface tension, and contact angles with water of pure Spurr's and LR-White resins were within a similar range. Differences were however estimated for resin : solvent mixtures, since Spurr’s resin is combined with acetone and LR-White resin is mixed with ethanol. Given the composite hydrophilic and lipophilic nature of plant cuticles, the particular TEM tissue embedding and staining procedures employed may affect sample ultrastructure and the interpretation of the results in physicochemical and biological terms. It is concluded that tissue preparation procedures may be optimised to facilitate the observation of the micro- and nanostructure of cuticular layers and components with different degrees of polarity and hydrophobicity.

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Amidases [EC 3.5.1.4] capable of converting indole-3-acetamide (IAM) into the major plant growth hormone indole-3-acetic acid (IAA) are assumed to be involved in auxin de novo biosynthesis. With the emerging amount of genomics data, it was possible to identify over forty proteins with substantial homology to the already characterized amidases from Arabidopsis and tobacco. The observed high conservation of amidase-like proteins throughout the plant kingdom may suggest an important role of theses enzymes in plant development. Here, we report cloning and functional analysis of four, thus far, uncharacterized plant amidases from Oryza sativa, Sorghum bicolor, Medicago truncatula, and Populus trichocarpa. Intriguingly, we were able to demonstrate that the examined amidases are also capable of converting phenyl-2-acetamide (PAM) into phenyl-2-acetic acid (PAA), an auxin endogenous to several plant species including Arabidopsis. Furthermore, we compared the subcellular localization of the enzymes to that of Arabidopsis AMI1, providing further evidence for similar enzymatic functions. Our results point to the presence of a presumably conserved pathway of auxin biosynthesis via IAM, as amidases, both of monocot, and dicot origins, were analyzed.

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Pese a que Loja (Ecuador) presenta una gran riqueza ecológica y cultural, ni su patrimonio etnobotánico, ni cómo afecta el uso de las plantas al estado de conservación de los ecosistemas es bien conocido. Por ello se ha realizado un estudio etnobotánico y ecológico para conocer el papel que han jugado las plantas en la cultura tradicional de la provincia y comprender qué factores influyen en su uso. Durante 2006 y 2008 se entrevistó a 770 informantes (196 de ellos vendedores en mercados locales) y se realizaron 373 transectos en 118 remanentes boscosos, 51% indicados por la gente como lugares de recolección. Se ha registrado el saber etnobotánico de 717 especies pertenecientes a 143 familias, la mayoría nativas del Ecuador, 31 de ellas endémicas. Ello supone un 15% de la flora total de Loja. Sin embargo especies introducidas como Matricaria recutita o Eucalyptus globulus están entre las más citadas. La mayor riqueza se obtuvo para las plantas medicinales (509 especies), que se usan sobre todo para tratar las llamadas “inflamaciones internas” (210 especies, Matricaria recutita y Melissa officinalis principalmente) y trastornos del sistema digestivo (188, Matricaria recutita y Mentha pulegium). En los mercados se venden 169 especies, la mayoría para elaborar la bebida típica llamada horchata (65) y para curar “inflamaciones internas” (36). Además se emplean 414 con otros fines (161 para leña, 142 para alimentación humana, 133 para construcción de viviendas y muebles, 98 para artesanías, 89 ornamentales, 27 tintóreas y 72 para otros usos). En los remanentes se inventariaron 19.156 individuos correspondientes a 1440 especies de 153 familias, de las cuales 437 son empleadas por la población. La riqueza media de especies y de plantas útiles fue significativamente mayor en los remanentes recolectados lo cual parece demostrar que la explotación no afecta negativamente a la diversidad de especies al generar variabilidad de hábitats. También se vio que la proporción de especies útiles disminuye en los remanentes más diversos. También se observó que la probabilidad de uso de una especie aumenta con la frecuencia y la abundancia y disminuye con la distancia a los remanentes en los que aparece. Este patrón general no se cumple para las especies medicinales y ornamentales. Estos datos demuestran una gran riqueza de conocimientos tradicionales y una gran vitalidad del uso de muchas especies y corroboran la hipótesis de que los recursos vegetales más accesibles y abundantes son, salvo excepciones, los más empleados por la gente. ABSTRACT Although the Loja province (Ecuador) has a great ecological and cultural richness, neither the ethnobotanical heritage nor the incidence of plant use on ecosystems conservation it is well known. We have made an ethnobotanical and ecological study to determine the role played by plants in the traditional culture of the province and to understand what factors influence their use. Between 2006 and 2008 we interviewed 770 informants (196 of them vendors in local markets) and inventoried 373 transects in 118 forest remnants (51% of them indicated by people as collection sites). We recorded the ethnobotanical knowledge for 717 species belonging to 143 families, mostly native of Ecuador, 31 of which are endemic. This represents about a 15% of the total flora of Loja. However introduced species such as Matricaria recutita and Eucalyptus globulus are among the most cited. Medicinal plants (509 species) were the most abundant, and are used primarily to treat so‐called "internal inflammation" (210 species, with Matricaria recutita and Melissa officinalis as the most valued) and disorders of the digestive system (188, Matricaria recutita and Mentha pulegium). We recorded 169 species sold in markets, most of them (65) employed to elaborate a typical drink called horchata and to heal "internal inflammation" (36). In addition 414 are used for other purposes: 161 for firewood, 142 for human consumption, 133 for construction and furniture, 98 for handicrafts, 89 as ornamental, 27 for dye and 72 for other uses. In the forest remnants, 19,156 individuals corresponding to 1440 species of 153 families, 437 of which are used by the population were inventoried. The average species richness (both total and of useful plants) was significantly higher in exploited remnants, which suggest that exploitation does not adversely affect species diversity and instead increases habitat diversity. We also found that the proportion of useful species decreases in decreased in the most diverse remnants. It was also observed that the probability of use of a species increases with its frequency and abundance and decreases as the distance form localities to remnants where it appears increases. This general pattern however does not hold for medicinal and ornamental species. These results show the extraordinary wealth of traditional knowledge and the great vitality in the use of many species and support the hypothesis that most accessible and abundant plant resources are the most used by people.

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Positive plant interactions have strong effects on plant diversity at several spatial scales, expanding species distribution under stressful conditions. We evaluated the joint effect of climate and grazing on the nurse effect of Croton wagneri, by monitoring several community attributes at two spatial scales: microhabitat and plant community. Two very close locations that only differed in grazing intensity were surveyed in an Ecuadorian dry scrub ecosystem. At each location, two 30 × 30-m plots were established at four altitudinal levels (1500, 2630, 1959 and 2100 m asl) and 40 microsites were surveyed in each plot. Croton wagneri acted as community hubs, increasing species richness and plant cover at both scales. Beneath nurses mean richness and cover values were 3.4 and 21.9%, and in open areas 2.3 and 4.5%, respectively. Magnitude of nurse effect was dependent on climate and grazing conditions. In ungrazed locations, cover increased and diversity reduced with altitude, while grazed locations showed the opposite trend. In ungrazed plots the interactions shifted from positive to negative with altitude, in grazed locations interactions remained positive. We conclude that the nurse effect is a key mechanism regulating community properties not only at microsite but also at the entire community scale.

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Biochar can provide multiple benefits in the ecosystem. However, the presence of phytotoxic compounds in some biochars is an important concern that needs to be addressed and that depends on the raw material and the pyrolysis conditions used in biochar production. For example, sewage sludge biochars can have elevated heavy metal con- tents as they were present in the feedstock and were enriched during pyrolysis. Also during carbonization, some phytotoxic compounds such as polycyclic aromatic hydrocarbons (PAHs), polyphenols or volatile organic com- pounds (VOCs) could be formed representing a risk of contamination to soils and crops. In this work we report the results from seed germination and plant development for three biochars prepared from wood, paper sludge plus wheat husks and sewage sludge. Five higher plant species (cress, lentils, cucumber, tomato and lettuce) were studied. Biochar from wood shows seed inhibition in several species and the paper sludge biochar on lettuce. For the rest, the effect on seed germination was positive. No inhibition of root growth was detected, but in some cases leaves and stems growth were inhibited. Our results are significant in terms of advancing or current understanding on the impacts of biochar on vegetative growth and linking those effects to biochar properties.

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Rhizobium leguminosarum bv viciae (Rlv) is a soil bacterium able to establish specific root-nodule symbioses with legumes of four different genera: Pisum, Vicia, Lens and Lathyrus. Rlv isolates from nodules of any of these legumes can nodulate any of them; however, it has been shown that plants select specific rhizobial genotypes from those present in the soil (1,2). We have previously shown this at the genomic level by following a population genomics approach. Pool genomic sequences from 100 isolates from each of four plant species: P. sativum, L. culinaris, V. faba and V. sativa, show different, specific profiles at the single nucleotide polymorphism (SNP) level for relevant genes. In this work, the extent of Rlv selection from a well-characterized soil population by different legume plant hosts: P. sativum, L. culinaris, V. faba and V. sativa, after a medium-term mesocosm study is described. Direct soil isolates from each of these mesocosm studies have been tested for specific rhizobial genes (glnII and fnrN) and symbiotic genes (nodC and nifH). Different populations were characterized further by Sanger sequencing of both the rpoB phylogenetic marker gene and the symbiotic genes nodC and nifH. The distribution and size of the rhizobial population for each legume host showed changes during the medium-term mesocosm study. Particularly, a non-symbiotic group of rhizobia was enriched by all four hosts, in contrast to the symbiotic rhizobia profile, which was specific for each legume plant host.

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The study of functional morphological traits enables us to know fundamental aspects of the dynamics of plant communities in local and global habitats. Regenerative morphological traits play an important role in defining plant history and ecological behavior. Seed and fruit characteristics determine to a large extent the patterns for dispersal, germination, establishment and seedling recruitment a given species exhibits on its natural habitat. Despite their prominent role, seed and fruit traits have been poorly studied at the community level of woody plant species in neo-tropical dry forests. In the present study we aimed at i) evaluate the functional role of morphological traits of seeds, fruits and embryo in woody plant species; ii) determine which are the morphological patterns present in seeds collected from the community of woody species that occur in neo-tropical dry forests; and iii) compare woody plant species seed mass values comparatively between neo-tropical dry and tropical forests. To do so, mature seeds were collected from 79 plant species that occur in the Tumbesian forest of Southwest Ecuador. The studied species included the 42 and 37 most representative tree and shrubbery species of the Tumbesian forest respectively. A total of 18 morphological traits (seven quantitative and 11 qualitative) were measured and evaluated in the seeds, fruits and embryos of the selected species, and we compared the seeds mass with other forest types. Our results showed a huge heterogeneity among traits values in the studied species. Seed mass, volume and number were the traits that vary the most at the community level, i.e. seed length ranged from 1.3 to 39 mm, and seed width from 0.6 to 25 mm. Only six embryo types were found among the 79 plant species. In 40 % of the cases, fully developed inverted embryos with large and thick cotyledons to store considerable amount of nutrients were recorded. We concluded that highly variable and functionally complementary morphological traits occur among the studied woody plants of the dry Tumbesian forest. The latter favors a plethora of behavioral mechanisms to coexist among woody species of the dry forest in response to the environmental stress that is typical of arid areas.