810 research outputs found
Developmental Differences in Neocortex Neurogenesis and Maturation Between the Altricial Dwarf Rabbit and Precocial Guinea Pig
Mammals are born on a precocial–altricial continuum. Altricial species produce helpless
neonates with closed distant organs incapable of locomotion, whereas precocial species
give birth to well-developed young that possess sophisticated sensory and locomotor
capabilities. Previous studies suggest that distinct patterns of cortex development differ
between precocial and altricial species. This study compares patterns of neocortex
neurogenesis and maturation in the precocial guinea pig and altricial dwarf rabbit, both
belonging to the taxon of Glires. We show that the principal order of neurodevelopmental
events is preserved in the neocortex of both species. Moreover, we show that
neurogenesis starts at a later postconceptional day and takes longer in absolute
gestational days in the precocial than the altricial neocortex. Intriguingly, our data indicate
that the dwarf rabbit neocortex contains a higher abundance of highly proliferative
basal progenitors than the guinea pig, which might underlie its higher encephalization
quotient, demonstrating that the amount of neuron production is determined by complex
regulation of multiple factors. Furthermore, we show that the guinea pig neocortex
exhibits a higher maturation status at birth, thus providing evidence for the notions that
precocial species might have acquired the morphological machinery required to attain
their high functional state at birth and that brain expansion in the precocial newborn
is mainly due to prenatally initiating processes of gliogenesis and neuron differentiation
instead of increased neurogenesis. Together, this study reveals important insights into the
timing and cellular differences that regulate mammalian brain growth and maturation and
provides a better understanding of the evolution of mammalian altriciality and presociality
Empirical methods for estimating reference surface net radiation from solar radiation.
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Previous issue date: 2018-12-18bitstream/item/188792/1/ID-36742.pd
Developmental Differences in Neocortex Neurogenesis and Maturation Between the Altricial Dwarf Rabbit and Precocial Guinea Pig
Mammals are born on a precocial–altricial continuum. Altricial species produce helpless
neonates with closed distant organs incapable of locomotion, whereas precocial species
give birth to well-developed young that possess sophisticated sensory and locomotor
capabilities. Previous studies suggest that distinct patterns of cortex development differ
between precocial and altricial species. This study compares patterns of neocortex
neurogenesis and maturation in the precocial guinea pig and altricial dwarf rabbit, both
belonging to the taxon of Glires. We show that the principal order of neurodevelopmental
events is preserved in the neocortex of both species. Moreover, we show that
neurogenesis starts at a later postconceptional day and takes longer in absolute
gestational days in the precocial than the altricial neocortex. Intriguingly, our data indicate
that the dwarf rabbit neocortex contains a higher abundance of highly proliferative
basal progenitors than the guinea pig, which might underlie its higher encephalization
quotient, demonstrating that the amount of neuron production is determined by complex
regulation of multiple factors. Furthermore, we show that the guinea pig neocortex
exhibits a higher maturation status at birth, thus providing evidence for the notions that
precocial species might have acquired the morphological machinery required to attain
their high functional state at birth and that brain expansion in the precocial newborn
is mainly due to prenatally initiating processes of gliogenesis and neuron differentiation
instead of increased neurogenesis. Together, this study reveals important insights into the
timing and cellular differences that regulate mammalian brain growth and maturation and
provides a better understanding of the evolution of mammalian altriciality and presociali
Influence of water availability in the distributions of branched glycerol dialkyl glycerol tetraether in soils of the Iberian Peninsula
The combined application of the MBT (degree of methylation) and CBT (degree
of cyclization) indices, based on the distribution of branched glycerol
dialkyl glycerol tetraethers (brGDGTs) in soils, has been proposed as a
paleoproxy to estimate mean annual temperature (MAT). CBT quantifies the
degree of cyclization of brGDGTs and relates to soil pH. MBT and the
simplified version MBT' quantify the degree of methylation of brGDGTs and
relate to MAT and soil pH. However, other factors such as soil water
availability have also been suggested to influence MBT' and possibly restrict
the combined application of the MBT' and CBT indices as a paleotemperature
proxy. To assess the effect of hydrological conditions on MBT' and CBT, a set
of 23 Iberian Peninsula soil samples, covering a MAT range from
10 to 18 °C and a mean annual precipitation (MAP) range of 405 mm to
1455 mm, was analyzed. We found that the CBT was indeed significantly
correlated with soil pH in our sample set. In contrast, MBT' was not correlated
with MAT but had a significant correlation with the aridity index (AI), a
parameter related to water availability in soils. The AI can explain 50%
of the variation of the MBT', and 70% of the residuals of MAT estimated
with the MBT/CBT proxy as compared to instrumentally measured MAT. We propose
that, in arid settings, where water may be an ecologically limiting factor,
MBT' is influenced by hydrological conditions rather than temperature. Thus,
our results suggest that the combination of MBT' and CBT indices should be
applied with caution in paleotemperature reconstructions in soils from dry
subhumid to hyperarid environments
Risco climático do consórcio milho com braquiária em Mato Grosso do Sul.
bitstream/item/99446/1/cap5.pd
Métodos empíricos para a estimativa do saldo de radiação da superfície de referência a partir da radiação solar.
bitstream/item/117510/1/COT2014199.pd
Julho de 2020 teve pouca chuva e temperaturasacimadas médias na região da Grande Dourados.
bitstream/item/215139/1/BA-07-2020.pd
Julho foi mais quente que o normal e teve chuvas escassas na região da grande Dourados e em Ivinhema.
Ao contrário do que ocorreu em junho, o mês de julho foi mais quente que o normal. Em Dourados, a temperatura média foi de 20,6 °C (Tabela 1), mais de um grau e meio superior à média histórica do mês, que é de 19 °C. Em 12 dias as temperaturas superaram os 30 oC, com máxima de 32 oC, em 11 de julho. Amínima foi de 4,8 °C, em 15 de julho, a temperatura mais baixa dos sete primeiros meses do ano
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