Catalogue Search | MBRL
Search Results Heading
Explore the vast range of titles available.
MBRLSearchResults
-
DisciplineDiscipline
-
Is Peer ReviewedIs Peer Reviewed
-
Item TypeItem Type
-
SubjectSubject
-
YearFrom:-To:
-
More FiltersMore FiltersSourceLanguage
Done
Filters
Reset
29
result(s) for
"Morón-Ríos, A"
Sort by:
Influence of the composition and diversity of tree fodder grazed on the selection and voluntary intake by cattle in a tropical forest
2020
The objective of this study was to evaluate the influence of the composition and diversity of plant species browsed in a tropical dry forest, on the selection and voluntary intake (VI) by cattle during two seasons of the year. Plant species selection and VI of nine adult cattle (390 ± 13 kg of live weight) was evaluated for 7 weeks during the dry and rainy seasons on secondary vegetation (acahual). The composition, structure, diversity and importance value index were measured for fodder species browsed by cattle. The bite frequency (BF), preference index (PI) and VI of plants were also recorded. A total of 4882 plants belonging to 26 species and 17 families were registered, with a Shannon–Wiener diversity (H′) of 2.45. The species with the highest BF, PI and VI (P < 0.05) were Gymnopodium floribundum, Neomillspaughia emarginata, Mimosa bahamensis, Diospyros anisandra and Randia obcordata. The VI was higher (P < 0.05) in the rainy season than in the dry season (12.48 and 10.26 kg of DM/animal/day, respectively) and corresponded with a higher intake (P < 0.05) of nutrients and secondary metabolites. The density of species in the acahual played a determinant role in the VI of cattle, and the secondary metabolite content of plants did not interfere with the VI. We concluded, that the acahual vegetation provides sufficient forage for ruminant given its high plant diversity, guaranteeing the VI and adequate provision of nutrients for cattle.
Journal Article
Defoliation and below-ground herbivory in the grass Muhlenbergiaquadridentata : Effects on plant performance and on the root-feeder Phyllophaga sp. (Coleoptera, Melolonthidae)
1997
In this study we evaluated (1) the combined effects of simulated defoliation and below-ground herbivory (BGH) on the biomass and nitrogen content of tillers and roots of the bunchgrass Muhlenbergia quadridentata and (2) the effect of defoliation on the survival of third-instar root-feeder larvae of Phyllophaga sp. The experiment was performed in a pine forest area at an altitude of 3200 m above sea level. The grass and the root-feeder species were native and dominant in the understory and in the macroarthropod root-feeder communities, respectively. Plants were established in pots in the field and were subjected to the following treatments in a factorial design: simulated defoliation (three levels) and BGH (with or without root-feeder larvae) with ten replicates per treatment. Plants were defoliated three times at 2-month intervals. The interaction between defoliation and root herbivory was significant for all components of plant biomass. In every case, light defoliation with BGH decreased live above-ground, root and total plant biomass, and the number of live tillers by more than 50% with respect to the same defoliation level without root-feeders. Plants apparently did not compensate for the carbon drain by root-feeders when a high proportion of older leaves were not removed by defoliation. Plants under heavy defoliation were not affected by the presence of root-feeders and showed a greater live/dead above-ground biomass ratio than lightly defoliated and control plants. Defoliation and BGH did not change tiller and root N concentrations but root herbivores did decrease live-tiller N content in lightly defoliated plants. Root-feeders but not defoliation decreased the root/shoot ratio by 40% and the live/dead above-ground biomass ratio by 45% through increased tiller mortality. Survivorship and final biomass of Phyllophaga sp. larvae were not affected by defoliation treatments during the 6-month study period.
Journal Article
Global data on earthworm abundance, biomass, diversity and corresponding environmental properties
2021
Earthworms are an important soil taxon as ecosystem engineers, providing a variety of crucial ecosystem functions and services. Little is known about their diversity and distribution at large spatial scales, despite the availability of considerable amounts of local-scale data. Earthworm diversity data, obtained from the primary literature or provided directly by authors, were collated with information on site locations, including coordinates, habitat cover, and soil properties. Datasets were required, at a minimum, to include abundance or biomass of earthworms at a site. Where possible, site-level species lists were included, as well as the abundance and biomass of individual species and ecological groups. This global dataset contains 10,840 sites, with 184 species, from 60 countries and all continents except Antarctica. The data were obtained from 182 published articles, published between 1973 and 2017, and 17 unpublished datasets. Amalgamating data into a single global database will assist researchers in investigating and answering a wide variety of pressing questions, for example, jointly assessing aboveground and belowground biodiversity distributions and drivers of biodiversity change.
Journal Article
Notes on Biology and Sexual Behavior of Tetrasarus plato Bates (Coleoptera: Cerambycidae), a Tropical Longhorn Beetle in Coffee Plantations in Chiapas, Mexico
by
MacÍas-Sámano, J. E.
,
GodÍnez-Aguilar, J. L.
,
Morón-RÍos, A.
in
Appendages
,
Beetles
,
Cerambycidae
2009
Several woodboring insects thrive in coffee plantations due to a surplus of host material as a result of pruning shade trees. The longhorn beetle Tetrasarus plato Bates (Coleoptera: Cerambycidae) disperses and mates at the time this branch pruning is taking place. We describe some general facts of its life cycle and the sexual behavior under field and laboratory conditions.
Journal Article
Dung beetle community (Coleoptera: Scarabaeidae: Scarabaeinae) in a tropical landscape at the Lachua Region, Guatemala
by
Avendaño-mendoza, Carlos
,
Morón-ríos, Alejandro
,
León-cortés, Jorgel
in
Agricultural land
,
Agricultural practices
,
Alternative farming
2005
Biological diversity conservation within natural reserves has been prioritized, but conservation efforts outside protected areas (where most human activities take place) have been very little considered. In this scenario, an alternative agricultural practice that may reduce the impacts of fragmentation in outer landscapes is a perforation process, which involves conservation in agricultural fields surrounded by continuous forests. Such practices enhance the positive impact of ecological services on fields. In this study we analyzed the biological diversity state in perforation fields and their surrounding forests. The analysis was done using dung beetles as biological indicators. A nested pattern in dung beetles distribution was found, which ordered the surrounding continuous forest sites as the ones with the highest species richness, followed by the perforation fields, and placed the fragmentation practice fields (continuous agricultural fields surrounding forest patches) with the lowest one. Indicator species for perforation fields and surrounding continuous forests were chosen. In general, perforation practice fields differed in composition, based upon functional groups richness and identity; it also contained a higher species richness than the fragmentation practice. Agricultural practices that enhance biological diversity conservation such as perforation, should be recommended and considered in natural resource management by local communities in order to take advantage of ecological services that otherwise may be gradually lost.[PUBLICATION ABSTRACT]
Journal Article
Soil macrofauna of two successional evergreen cloud forest stages from the cerro huitepec nature reserve, San Cristobal de las Casas, Chiapas, Mexico
2006
The soil macrofauna composition was studied in two successional evergreen cloud forest stages. One of them had an intensive forestal usage 17 years ago; and it has a canopy height <8m and densities from 900 to 1200 trees >5cm DBH. The other one was a non managed area, with a canopy of 30-35m and densities ranging from 1600 to 1800 trees >5cm DBH. The Chilopoda, Oligochaeta and Diplopoda groups constituted 70% of the total macrofauna from the two environments. The Endogeic Oligochaeta was the most abundant group in both types of forest. Oligochaeta were 54% of total decomposers in the mature forest and their density was significantly greater than the immature forest. The Oligochaeta density decrease was related with a lower canopy closure, increase in soil temperature and decreased level of soil humidity. This one-year sampling suggests that there are few negative impacts on the soil macrofauna associated with forest use for charcoal production 17 years ago.
Journal Article
EFFECTS OF Phyllophaga (Phytallus) hoegei LARVAL DENSITY (COLEOPTERA:MELOLONTHIDAE) ON PLANT AND HERBIVORE GROWTH
2007
The belowground herbivory has received relatively little attention. The plant response to belowground herbivory is variable and partially mediated by the identity and density of the root feeder. This study evaluated 1) the effects of belowground herbivory by two densities of the common root feeder, Phyllophaga (Phytalus) hoegei on the plant biomass, the nitrogen content of tillers and roots of the native, dominant grass Muhlenbergia quadridentata; and 2) the effects of these two larval densities on the survival and growth of this species. The experiment was performed in a pine forest area at 3200masl. Plants were established in pots in the field and subjected to belowground herbivory (three levels) in a completely random design with ten replicates per treatment. High densities of the root feeder significantly decreased root biomass and the root/shoot ratio, but the herbivores did not affect the nitrogen concentration of plant tissues. Survivorship of Phyllophaga hoegei larvae was not affected by growth density, but at high density the root feeder larvae decreased the relative growth rate and the weight gained
Journal Article
Defoliation and below-ground herbivory in the grass Muhlenbergia quadridentata: effects on plant performance and on the root-feeder Phyllophaga sp. (Coleoptera, Melolonthidae)
by
Jaramillo, V.J
,
Moron-Rios, A
,
Dirzo, R
in
Aboveground biomass
,
Animal and plant ecology
,
Animal, plant and microbial ecology
1997
In this study we evaluated (1) the combined effects of simulated defoliation and below-ground herbivory (BGH) on the biomass and nitrogen content of tillers and roots of the bunchgrass Muhlenbergia quadridentata and (2) the effect of defoliation on the survival of third-instar root-feeder larvae of Phyllophaga sp. The experiment was performed in a pine forest area at an altitude of 3200 m above sea level. The grass and the root-feeder species were native and dominant in the understory and in the macroarthropod root-feeder communities, respectively. Plants were established in pots in the field and were subjected to the following treatments in a factorial design: simulated defoliation (three levels) and BGH (with or without root-feeder larvae) with ten replicates per treatment. Plants were defoliated three times at 2-month intervals. The interaction between defoliation and root herbivory was significant for all components of plant biomass. In every case, light defoliation with BGH decreased live above-ground, root and total plant biomass, and the number of live tillers by more than 50% with respect to the same defoliation level without root-feeders. Plants apparently did not compensate for the carbon drain by root-feeders when a high proportion of older leaves were not removed by defoliation. Plants under heavy defoliation were not affected by the presence of root-feeders and showed a greater live/dead above-ground biomass ratio than lightly defoliated and control plants. Defoliation and BGH did not change tiller and root N concentrations but root herbivores did decrease live-tiller N content in lightly defoliated plants. Root-feeders but not defoliation decreased the root/shoot ratio by 40% and the live/dead above-ground biomass ratio by 45% through increased tiller mortality. Survivorship and final biomass of Phyllophaga sp. larvae were not affected by defoliation treatments during the 6-month study period.
Journal Article
Interactions between abundant fungal species influence the fungal community assemblage on limestone
by
Morón-Ríos, Alejandro
,
De la Rosa-García, Susana
,
Gómez-Cornelio, Sergio
in
Biofilms
,
Biology and Life Sciences
,
Calcium
2017
The assembly of fungal communities on stone materials is mainly influenced by the differential bioreceptivity of such materials and environmental conditions. However, little is known about the role of fungal interactions in the colonization and establishment of fungal species. We analyzed the effects of intra- and interspecific interactions between 11 species of fungi in oligotrophic and copiotrophic media and on limestone coupons. In a previous study, these species were the most frequently isolated in the epilithic biofilms of limestone walls exposed to a subtropical climate. In the culture media, we found a greater frequency of intra- and interspecific inhibitory effects in the oligotrophic medium than in the copiotrophic medium. On the limestone coupons, all fungi were able to establish; however, the colonization success rate varied significantly. Cladosporium cladosporioides had a less extensive colonization in isolation (control) than in dual interactions (coexistence) with other species. Phoma eupyrena exhibited the highest colonization success rate and competitive dominance among all tested species. X-ray diffraction (XRD) and scanning electron microscope (SEM) analyses revealed that Pestalotiopsis maculans and Paraconiothyrium sp. produced calcium oxalate crystals during their growth on coupon surfaces, both in isolation and in dual interactions. Our results demonstrate that interactions between abundant fungal species influence the fungal colonization on substrates, the biomineralization and the fungal community assemblage growing in limestone biofilms.
Journal Article