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81.
Lahlou S Figueiredo AF Magalhães PJ Leal-Cardoso JH 《Canadian journal of physiology and pharmacology》2002,80(12):1125-1131
The cardiovascular effects of i.v. treatment with 1,8-cineole, a monoterpenic oxide present in many plant essential oils, were investigated in normotensive rats. This study examined (i) whether the autonomic nervous system is involved in the mediation of 1,8-cineole-induced changes in mean aortic pressure (MAP) and heart rate (HR) and (ii) whether the hypotensive effects of 1,8-cineole could result from its vasodilatory effects directly upon vascular smooth muscle. In both pentobarbital-anesthetized and conscious, freely moving rats, bolus injections of 1,8-cineole (0.3-10 mg/kg, i.v.) elicited similar and dose-dependent decreases in MAP. Concomitantly, 1,8-cineole significantly decreased HR only at the highest dose (10 mg/kg). Pretreatment of anesthetized rats with bilateral vagotomy significantly reduced the bradycardic responses to 1,8-cineole (10 mg/kg) without affecting hypotension. In conscious rats, i.v. pretreatment with methylatropine (1 mg/kg), atenolol (1.5 mg/kg), or hexamethonium (30 mg/kg) had no significant effects on the 1,8-cineole-induced hypotension, while bradycardic responses to 1,8-cineole (10 mg/kg) were significantly reduced by methylatropine. In rat isolated thoracic aorta preparations, 1,8-cineole (0.006-2.6 mM) induced a concentration-dependent reduction of the contraction induced by potassium (60 mM). This is the first physiological evidence that i.v. treatment with 1,8-cineole in either anesthetized or conscious rats elicits hypotension; this effect seems related to an active vascular relaxation rather than withdrawal of sympathetic tone. 相似文献
82.
The effect of p-chlorophenylalanie (p-CPA) --300 mg/kg-- on reproduction has been studied in the female rat. Groups of animals were injected with a dose of 300 mg/kg of p-CPA 48 hours before proper copulation conditions at different moments along the ovarian cycle. Presence of spermatozoa in the vaginal frotis was negative in treated rats; in the control groups however, positivity was found in variable proportions according to the phase of the ovarian cycle: 30 ad 90% in diestrus and proestrus respectively. Treated animals showed continuous diestrus phases and diffuse luteinitation of the ovary. The results may indicate that a decrease of cerebral 5-HT, caused by p-CPA, lessens the reproductive behaviour of the female rat through mechanisms depending probably on the liberation of gonadrotrophins. 相似文献
83.
Francisco G. Acién Fernández Celeste Brindley Alias José A. Sánchez Pérez José M. Fernández Sevilla María J. Ibáñez González Emilio Molina Grima 《Journal of applied phycology》2003,15(2-3):229-237
An integrated process for the indoor production of 13C labelled PUFA from Phaeodactylum tricornutum is presented. The core of the process is a bubble column photobioreactor from which the exhaust gas from the reactor is returned to the culture by a low pressure compressor. To avoid accumulation of dissolved oxygen in the culture medium, the exhaust gas is bubbled through a sodium sulphite solution before returning it to the reactor. Carbon is removed from the medium before inoculating the alga, then labelled 13CO2 is injected for pH control and carbon supply. The reactor has been operated in semicontinuous mode at a dilution rate of 0.01 h–1, a biomass productivity of 0.1 g L–1 d–1 being obtained. Under this conditions both pH and dissolved oxygen were correctly controlled and the adequacy of the system for autotrophic production of labelled biomass was demonstrated. Analysis by GC-MS revealed that the fatty acids content of the biomass obtained was 10% d.wt., the content of eicosapentaenoic acid was 2.5% d.wt. All the fatty acids were labelled, more that 90% of the carbon present in these fatty acids was 13C. Element analysis of biomass and supernatant showed that 59.5% of injected carbon was assimilated into the biomass whereas 33% remained in the supernatant, and 7.5% remained undetected. Due to the high cost of 13CO2 different strategies for the optimisation of labelled carbon use are proposed. 相似文献
84.
Jonathan Martínez-Fábregas Irene Díaz-Moreno Katiuska González-Arzola Simon Janocha José A. Navarro Manuel Hervás Rita Bernhardt Antonio Díaz-Quintana Miguel á. De la Rosa 《Molecular & cellular proteomics : MCP》2013,12(12):3666-3676
Programmed cell death is an event displayed by many different organisms along the evolutionary scale. In plants, programmed cell death is necessary for development and the hypersensitive response to stress or pathogenic infection. A common feature in programmed cell death across organisms is the translocation of cytochrome c from mitochondria to the cytosol. To better understand the role of cytochrome c in the onset of programmed cell death in plants, a proteomic approach was developed based on affinity chromatography and using Arabidopsis thaliana cytochrome c as bait. Using this approach, ten putative new cytochrome c partners were identified. Of these putative partners and as indicated by bimolecular fluorescence complementation, nine of them bind the heme protein in plant protoplasts and human cells as a heterologous system. The in vitro interaction between cytochrome c and such soluble cytochrome c-targets was further corroborated using surface plasmon resonance. Taken together, the results obtained in the study indicate that Arabidopsis thaliana cytochrome c interacts with several distinct proteins involved in protein folding, translational regulation, cell death, oxidative stress, DNA damage, energetic metabolism, and mRNA metabolism. Interestingly, some of these novel Arabidopsis thaliana cytochrome c-targets are closely related to those for Homo sapiens cytochrome c (Martínez-Fábregas et al., unpublished). These results indicate that the evolutionarily well-conserved cytosolic cytochrome c, appearing in organisms from plants to mammals, interacts with a wide range of targets on programmed cell death. The data have been deposited to the ProteomeXchange with identifier PXD000280.Programmed cell death (PCD)1 is a fundamental event for the development of multicellular organisms and the homeostasis of their tissues. It is an evolutionarily conserved mechanism present in organisms ranging from yeast to mammals (1–3).In mammals, cytochrome c (Cc) and dATP bind to apoptosis protease-activating factor-1 (Apaf-1) in the cytoplasm, a process leading to the formation of the Apaf-1/caspase-9 complex known as apoptosome. This apoptosome subsequently activates caspases-3 and -7 (4, 5). In other organisms, such as Caenorhabditis elegans or Drosophila melanogaster, however, Cc is not essential for the assembly and activation of the apoptosome (6) despite the presence of proteins homologous to Apaf-1—cell death abnormality-4 (CED-4) in C. elegans and Drosophila Apaf-1-related killer (Dark) in D. melanogaster—which have been found to be essential for caspase cascade activation. Furthermore, other organisms such as Arabidopsis thaliana lack Apaf-1 (7). In fact, only highly distant caspase homologues (metacaspases) (8, 9), serine proteases (saspases) (10), phytaspases (11) and VEIDases (12–14) with caspase-like activity have been detected in plants; however, their targets remain veiled and whether they are activated by Cc remains unclear.Intriguingly, the release of Cc from mitochondria into the cytoplasm during the onset of PCD is an evolutionarily conserved event found in organisms ranging from yeast (15) and plants (16) to flies (17), and mammals (18). However, understanding of the roles of this phenomenon in different species can be said to be uneven at best. In fact, the release of Cc from mitochondria has thus far been considered a random event in all organisms, save mammals. Thus, the participation of Cc in the onset and progression of PCD needs to be further elucidated.Even in the case of mammals, the role(s) of Cc in the cytoplasm during PCD remain(s) controversial. Recently, new putative functions of Cc, going beyond the already-established apoptosome assembly process, have been proposed in the nucleus (19, 20) and the endoplasmic reticulum (21–23). Neither these newly proposed functions nor other arising functions, such as oxidative stress (24), are as yet fully understood. This current state of affairs demands deeper exploration of the additional roles played by Cc in nonmammalian species.In this study, putative novel Cc-partners involved in plant PCD were identified. For this identification, a proteomic approach was employed based on affinity chromatography and using Cc as bait. The Cc-interacting proteins were identified using nano-liquid chromatography tandem mass spectrometry (NanoLC-MS/MS). These Cc-partners were then further confirmed in vivo through bimolecular fluorescence complementation (BiFC) in A. thaliana protoplasts and human HEK293T cells, as a heterologous system. Finally, the Cc-GLY2, Cc-NRP1 and Cc-TCL interactions were corroborated in vitro using surface plasmon resonance (SPR).These results indicate that Cc is able to interact with targets in the plant cell cytoplasm during PCD. Moreover, they provide new ways of understanding why Cc release is an evolutionarily well-conserved event, and allow us to propose Cc as a signaling messenger, which somehow controls different essential events during PCD. 相似文献
85.
Jacqueline M. Chaparro Dayakar V. Badri Matthew G. Bakker Akifumi Sugiyama Daniel K. Manter Jorge M. Vivanco 《PloS one》2013,8(2)
Plant roots constantly secrete compounds into the soil to interact with neighboring organisms presumably to gain certain functional advantages at different stages of development. Accordingly, it has been hypothesized that the phytochemical composition present in the root exudates changes over the course of the lifespan of a plant. Here, root exudates of in vitro grown Arabidopsis plants were collected at different developmental stages and analyzed using GC-MS. Principle component analysis revealed that the composition of root exudates varied at each developmental stage. Cumulative secretion levels of sugars and sugar alcohols were higher in early time points and decreased through development. In contrast, the cumulative secretion levels of amino acids and phenolics increased over time. The expression in roots of genes involved in biosynthesis and transportation of compounds represented in the root exudates were consistent with patterns of root exudation. Correlation analyses were performed of the in vitro root exudation patterns with the functional capacity of the rhizosphere microbiome to metabolize these compounds at different developmental stages of Arabidopsis grown in natural soils. Pyrosequencing of rhizosphere mRNA revealed strong correlations (p<0.05) between microbial functional genes involved in the metabolism of carbohydrates, amino acids and secondary metabolites with the corresponding compounds released by the roots at particular stages of plant development. In summary, our results suggest that the root exudation process of phytochemicals follows a developmental pattern that is genetically programmed. 相似文献
86.
87.
In contrast to the attention attracted by temporal trends of phenology, the spatial patterns of arrivals, departures or stays
of trans-Saharan birds are still nowadays largely unknown in most of their European breeding areas. In the case of the white
stork (Ciconia ciconia), some studies have attempted to describe its migratory patterns throughout some European countries but, to our knowledge,
no one has related these patterns to some kind of explanatory variable which offers an ecologically-based explanation for
the heterogeneous phenology observable among populations. Here, arrivals, departures and stays of this species, recorded in
hundreds of Spanish localities, were related to a set of environmental, geographical, biological and spatial predictors, and
modeled by multiple regression. The best model for arrival dates accounted for up to 34% of variability of data and pointed
towards an earlier arrival in those populations located in south-western Iberia and with higher population densities. This
last relationship is probably due to the competition for nest-site fidelity maintenance. However, no variable was able to
explain properly the blurred spatial pattern recorded for departure dates. Departure decisions are strongly influenced by
social behavior in this species and depend on collective decisions influenced by peculiar local environmental conditions of
each year rather than macrogeographical gradients. Environmental, geographical or spatial variables also did not capture much
of the observed variability in the length of the stays among populations. However, this variable was strongly related to the
arrival and departure dates of populations. White storks stay longer in localities with earlier arrivals and, especially,
later departures. 相似文献
88.
The insecticidal Cry1 proteins of Bacillus thuringiensis form a typical bipyramidal parasporal crystal and their protoxins contain a highly conserved C-terminal region. A chimerical gene was constructed with the coding regions of the Cry3Aa protein's toxic domain, and of the Cry1Ac protoxin's C-terminal fragment. This chimerical construction expressed a truncated (70kDa) protein in the acrystalliferous strain 4Q7 of B. thuringiensis, assembled in spherical to amorphous parasporal crystals. This protein was recognized only by antibodies raised against the Cry3Aa protein. When the protease-deficient mutant BL21 of Escherichia coli was transformed with the same chimerical construction, a complete (140kDa) chimerical protein was expressed. However, the formation of a crystalline inclusion was unclear. This protein was recognized by antibodies raised against the proteins Cry1Ac and Cry3Aa. Both chimerical proteins showed toxicity against larvae of Leptinotarsa texana, being much more active when expressed truncated in B. thuringiensis. These results suggest that the formation of bipyramidal crystals requires more than just the presence of the C-terminal region of Cryl protoxins. They also suggest that proteolysis plays an important role during the post-translational processing of Cry proteins. 相似文献
89.
90.
Alfredo Saldaña Christopher H. Lusk Wilfredo L. Gonzáles Ernesto Gianoli 《Evolutionary ecology》2007,21(5):651-662
Unlike other species of the genus Blechnum, the fern Blechnum chilense occurs in a wide range of habitats in Chilean temperate rainforest, from shaded forest understories to abandoned clearings
and large gaps. We asked if contrasting light environments can exert differential selection on ecophysiological traits of
B. chilense. We measured phenotypic selection on functional traits related to carbon gain: photosynthetic capacity (A
max), dark respiration rate (R
d), water use efficiency (WUE), leaf size and leaf thickness in populations growing in gaps and understorey environments. We
assessed survival until reproductive stage and fecundity (sporangia production) as fitness components. In order to determine
the potential evolutionary response of traits under selection, we estimated the genetic variation of these traits from clonally
propagated individuals in common garden experiments. In gaps, survival of B. chilense was positively correlated with WUE and negatively correlated with leaf size. In contrast, survival in shaded understories
was positively correlated with leaf size. We found positive directional fecundity selection on WUE in gaps population. In
understories, ferns of lower R
d and greater leaf size showed greater fecundity. Thus, whereas control of water loss was optimized in gaps, light capture
and net carbon balance were optimized in shaded understories. We found a significant genetic component of variation in WUE,
R
d and leaf size. This study shows the potential for evolutionary responses to heterogeneous light environments in functional
traits of B. chilense, a unique fern species able to occupy a broad successional niche in Chilean temperate rainforest. 相似文献