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111.
Spatial Heterogeneity of Bacterial Populations in Monomictic Lake Estanya (Huesca,Spain) 总被引:2,自引:0,他引:2
Bacterial population changes were investigated in the monomictic Lake Estanya by combining microscopic analysis and two molecular
methods involving the amplification of 16S rDNA genes using primers for the domain Bacteria and subsequent restriction fragment length polymorphism (PCR–RFLP) and denaturing gradient gel electrophoresis (PCR–DGGE).
Both approaches revealed the vertical distribution of predominant microbial morphotypes and phylotypes in both holomictic
and stratified periods, respectively, and showed that variations in structure and composition of bacterial populations are
occurring in this lake as a function of depth and time. Through principal component analysis (PCA), these shifts could be
related to different physicochemical parameters with temperature, oxygen concentration, and the incident light being of paramount
importance as structuring variables. Comparison of RFLP and DGGE profiles by scoring similarities using the Jaccard coefficient
and then building a multidimensional scaling map (MDS) showed equivalent results. Both techniques revealed that bacterial
populations, present in the whole water column in the holomictic period, showed a high similarity with those located in the
deeper part of the lake in the stratified period, evidencing that other factors, both biotic and abiotic, should also be considered
as a force driving change in the composition of the bacterial community. Furthermore, DGGE analysis showed that sequences
from prominent bands were affiliated to members of four major phyla of the domain Bacteria: Cyanobacteria, Bacteroidetes, Proteobacteria, and Actinobacteria, most of which corresponded to heterotrophic bacterial populations involved in carbon, sulfide, and nitrogen biogeochemical
cycles, which were indistinguishable under the light microscope. 相似文献
112.
The distribution of noradrenaline and adrenaline in the brain of the urodele amphibian Pleurodeles waltlii has been studied with antibodies raised against noradrenaline and the enzymes dopamine--hydroxylase and phenylethanolamine-N-methyltransferase. Noradrenaline-containing cell bodies were found in the anterior preoptic area, the hypothalamic nucleus of the periventricular organ, the locus coeruleus and in the solitary tract/area postrema complex at the level of the obex. Noradrenergic fibers are widely distributed throughout the brain innervating particularly the ventrolateral forebrain, the medial amygdala, the lateral part of the posterior tubercle, the parabrachial region and the ventrolateral rhombencephalic tegmentum. Putative adrenergic cell bodies were found immediately rostral to the obex, ventral to the solitary tract. Whereas the cell bodies and their dendrites were Golgi-like stained, axons were more difficult to trace. Nevertheless, some weakly immunoreactive fibers could be traced to the basal forebrain. A comparison of these results with data previously obtained in anurans reveals not only several general features, but also some remarkable species differences.Abbreviations
Acc
Nucleus accumbens
-
AP
area postrema
-
Apl
amygdala, pars lateralis
-
Apm
amygdala, pars medialis
-
ca
commissura anterior
-
Cb
cerebellum
-
cc
central canal
-
Dp
dorsal pallium
-
epl
external plexiform layer
-
gl
glomerular layer of the olfactory bulb
-
H
ganglion habenulae
-
igl
internal granular layer
-
Ip
nucleus interpeduncularis
-
Lc
locus coeruleus
-
Ll
lateral line lobe
-
Lp
lateral pallium
-
Ls
lateral septum
-
ml
mitral cell layer
-
Mp
medial pallium
-
Ms
medial septum
-
nPT
nucleus pretectalis
-
NPv
nucleus of the periventricular organ
-
nV
nervus trigeminus
-
oc
optic chiasm
-
Poa
preoptic area
-
Ri
nucleus reticularis inferior
-
SC
nucleus suprachiasmaticus
-
sol
solitary tract
-
Str
striatum
- thd
thalamus dorsalis
-
thv
thalamus ventralis
-
To
tectum opticum
-
TP
tuberculum posterius
-
V
ventricle
-
VH
ventral hypothalamic nucleus
-
III
nucleus nervi oculomotorii
-
IXm
nucleus motorius nervi glossopharyngei
-
Xm
nucleus motorius nervi vagi 相似文献
113.
Melisa A. Conde Natalia P. Alza Pablo A. Iglesias González Paola G. Scodelaro Bilbao Sofía Sánchez Campos Romina M. Uranga Gabriela A. Salvador 《Biochimica et Biophysica Acta (BBA)/Molecular and Cell Biology of Lipids》2018,1863(6):639-650
We have previously shown that phospholipase D (PLD) pathways have a role in neuronal degeneration; in particular, we found that PLD activation is associated with synaptic injury induced by oxidative stress. In the present study, we investigated the effect of α-synuclein (α-syn) overexpression on PLD signaling. Wild Type (WT) α-syn was found to trigger the inhibition of PLD1 expression as well as a decrease in ERK1/2 phosphorylation and expression levels. Moreover, ERK1/2 subcellular localization was shown to be modulated by WT α-syn in a PLD1-dependent manner. Indeed, PLD1 inhibition was found to alter the neurofilament network and F-actin distribution regardless of the presence of WT α-syn. In line with this, neuroblastoma cells expressing WT α-syn exhibited a degenerative-like phenotype characterized by a marked reduction in neurofilament light subunit (NFL) expression and the rearrangement of the F-actin organization, compared with either the untransfected or the empty vector-transfected cells. The gain of function of PLD1 through the overexpression of its active form had the effect of restoring NFL expression in WT α-syn neurons. Taken together, our findings reveal an unforeseen role for α-syn in PLD regulation: PLD1 downregulation may constitute an early mechanism in the initial stages of WT α-syn-triggered neurodegeneration. 相似文献
114.
Metsulfuron methyl (MM) is an herbicide used in cereal crops. The white rot mushroom Agaricus blazei Murrill is an important edible and medicinal mushroom reported to be a major laccase producer, a lignin-degrading enzyme with low substrate specificity. A search for assaying the potential use of A. blazei spent mushroom compost (SMC) as a remediation tool for cleaning MM polluted soils was carried out. A phytotoxic dose of this herbicide was separately incubated with two enzyme preparations obtained from the SMC after the second mushroom fruiting flush; the phytotoxicity of the resulting reaction mixtures was then assayed by using a plantlet growing test with Brassica napus L. Thus, the crude enzyme SMC extract preparation (I) or the partially purified enzyme SMC extract (II) and their dilutions, 1:10 and 1:100, were mixed with MM (5 × 10?3 ppm final concentration) and incubated at 25°C for 24, 48, 72, and 96 h. Plantlets separately exposed for 72 and 96 h to the resulting reaction mixtures between MM and those enzyme preparations showed a highly significant increase in their hypocotyl length with respect to plantlets exposed to MM alone. It was thus demonstrated the ability that complex enzyme fractions present in A. blazei SMC have to degrade MM during the right incubation time to compounds with no or lower phytotoxicity than this herbicide. 相似文献
115.
Glucagon hormone is synthesized and released by pancreatic α-cells, one of the islet-cell types. This hormone, along with insulin, maintains blood glucose levels within the physiological range. Glucose stimulates glucagon release at low concentrations (hypoglycemia). However, the mechanisms involved in this secretion are still not completely clear. Here, using experimental calcium time series obtained in mouse pancreatic islets at low and high glucose conditions, we propose a glucagon secretion model for α-cells. Our model takes into account that the resupply of releasable granules is not only controlled by cytoplasmic Ca2+, as in other neuroendocrine and endocrine cells, but also by the level of extracellular glucose. We found that, although calcium oscillations are highly variable, the average secretion rates predicted by the model fall into the range of values reported in the literature, for both stimulated and non-stimulated conditions. For low glucose levels, the model predicts that there would be a well-controlled number of releasable granules refilled slowly from a large reserve pool, probably to ensure a secretion rate that could last for several minutes. Studying the α-cell response to the addition of insulin at low glucose, we observe that the presence of insulin reduces glucagon release by decreasing the islet Ca2+ level. This observation is in line with previous work reporting that Ca2+ dynamics, mainly frequency, is altered by insulin. Thus, the present results emphasize the main role played by Ca2+ and glucose in the control of glucagon secretion by α-cells. Our modeling approach also shows that calcium oscillations potentiate glucagon secretion as compared to constant levels of this cellular messenger. Altogether, the model sheds new light on the subcellular mechanisms involved in α-cell exocytosis, and provides a quantitative predictive tool for studying glucagon secretion modulators in physiological and pathological conditions. 相似文献
116.
González S Moreno-Delgado D Moreno E Pérez-Capote K Franco R Mallol J Cortés A Casadó V Lluís C Ortiz J Ferré S Canela E McCormick PJ 《PLoS biology》2012,10(6):e1001347
The role of the pineal gland is to translate the rhythmic cycles of night and day encoded by the retina into hormonal signals that are transmitted to the rest of the neuronal system in the form of serotonin and melatonin synthesis and release. Here we describe that the production of both melatonin and serotonin by the pineal gland is regulated by a circadian-related heteromerization of adrenergic and dopamine D4 receptors. Through α1
B-D4 and β1-D4 receptor heteromers dopamine inhibits adrenergic receptor signaling and blocks the synthesis of melatonin induced by adrenergic receptor ligands. This inhibition was not observed at hours of the day when D4 was not expressed. These data provide a new perspective on dopamine function and constitute the first example of a circadian-controlled receptor heteromer. The unanticipated heteromerization between adrenergic and dopamine D4 receptors provides a feedback mechanism for the neuronal hormone system in the form of dopamine to control circadian inputs. 相似文献
117.
González JF Degrassi G Devescovi G De Vleesschauwer D Höfte M Myers MP Venturi V 《Journal of Proteomics》2012,75(18):5911-5919
Xanthomonas oryzae pv. oryzae (Xoo) is the second most important rice pathogen, causing a disease called bacterial leaf blight. Xoo colonizes and infects the vascular tissue resulting in tissue necrosis and wilting causing significant yield losses worldwide. In this study Xoo infected vascular fluid (xylem sap) was recovered and analyzed for secreted Xoo proteins. Three independent experiments resulted in the identification of 324 different proteins, 64 proteins were found in all three samples which included many of the known virulence-associated factors. In addition, 10 genes encoding for the identified proteins were inactivated and one mutant displayed statistically a significant loss in virulence when compared to the wild type Xoo, suggesting that a new virulence-associated factor has been revealed. The usefulness of this approach in understanding the lifestyle and unraveling the virulence-associated factors of phytopathogenic vascular bacteria is discussed. 相似文献
118.
L. A. Miles C. A. Lopera S. González M. C. Cepero de García A. E. Franco S. Restrepo 《BioControl》2012,57(5):697-710
We studied the diversity and biocontrol potential of 100 fungal endophytes isolated from Espeletia spp., endemic plant species from the Paramo in the Andean mountain range. Our sample was genotypically highly diverse at all ITS similarity levels. The antagonistic properties of these isolates were tested against common crop pathogens in Colombia, including Pectobacterium carotovorum, Ralstonia solanacearum, Pseudomonas syringae, Xanthomonas campestris, Rhizoctonia solani, Botrytis cinerea, Fusarium oxysporum, and Phytophthora infestans. All endophytic isolates were able to significantly inhibit the growth of at least one of the plant pathogens tested (P?<?0.05). Three main types of endophyte/pathogen interactions were observed. However, only those endophytes that produced an evident inhibition halo were further studied using their crude extracts to confirm that the inhibitory effect was due to the production of endophytic bioactive metabolites. From these experiments, nine promising isolates were selected for co-inoculation tests with R. solani in tomato plants. The isolates identified as Aureobasidium pullulans and Paraconiothyrium sporulosum not only protected the plants against this pathogen but also allowed them to exhibit similar growth and development as the uninoculated control. This work explores new alternatives for disease management without the application of chemical pesticides. 相似文献
119.
Limnology - Lake Cuitzeo is Mexico’s second-largest lake (~ 425 km2). The West Basin is shallow, seasonally astatic and alkaline, and it contains saltwater; it is in this... 相似文献
120.
González AL Fariña JM Pinto R Pérez C Weathers KC Armesto JJ Marquet PA 《Oecologia》2011,167(3):835-845
Carbon, nitrogen, and phosphorus (C, N, P) stoichiometry influences the growth of plants and nutrient cycling within ecosystems.
Indeed, elemental ratios are used as an index for functional differences between plants and their responses to natural or
anthropogenic variations in nutrient supply. We investigated the variation in growth and elemental content of the rootless
terrestrial bromeliad Tillandsia landbeckii, which obtains its moisture, and likely its nutrients, from coastal fogs in the Atacama Desert. We assessed (1) how fog nutrient
supply influences plant growth and stoichiometry and (2) the response of plant growth and stoichiometry to variations in nutrient
supply by using reciprocal transplants. We hypothesized that T. landbeckii should exhibit physiological and biochemical plastic responses commensurate with nutrient supply from atmospheric deposition.
In the case of the Atacama Desert, nutrient supply from fog is variable over space and time, which suggests a relatively high
variation in the growth and elemental content of atmospheric bromeliads. We found that the nutrient content of T. landbeckii showed high spatio-temporal variability, driven partially by fog nutrient deposition but also by plant growth rates. Reciprocal
transplant experiments showed that transplanted individuals converged to similar nutrient content, growth rates, and leaf
production of resident plants at each site, reflecting local nutrient availability. Although plant nutrient content did not
exactly match the relative supply of N and P, our results suggest that atmospheric nutrient supply is a dominant driver of
plant growth and stoichiometry. In fact, our results indicate that N uptake by T. landbeckii plants depends more on N supplied by fog, whereas P uptake is mainly regulated by within-plant nutrient demand for growth.
Overall, these findings indicate that variation in fog nutrient supply exerts a strong control over growth and nutrient dynamics
of atmospheric plants, which are ubiquitous across fog-dominated ecosystems. 相似文献