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81.
Background
The ability to withstand thermal stress is considered to be of crucial importance for individual fitness and species'' survival. Thus, organisms need to employ effective mechanisms to ensure survival under stressful thermal conditions, among which phenotypic plasticity is considered a particularly quick and effective one.Methodology/Principal Findings
In a series of experiments we here investigate phenotypic adjustment in temperature stress resistance following environmental manipulations in the butterfly Bicyclus anynana. Cooler compared to warmer acclimation temperatures generally increased cold but decreased heat stress resistance and vice versa. In contrast, short-time hardening responses revealed more complex patterns, with, e.g., cold stress resistance being highest at intermediate hardening temperatures. Adult food stress had a negative effect on heat but not on cold stress resistance. Additionally, larval feeding treatment showed interactive effects with adult feeding for heat but not for cold stress resistance, indicating that nitrogenous larval resources may set an upper limit to performance under heat stress. In contrast to expectations, cold resistance slightly increased during the first eight days of adult life. Light cycle had marginal effects on temperature stress resistance only, with cold resistance tending to be higher during daytime and thus active periods.Conclusions/Significance
Our results highlight that temperature-induced plasticity provides an effective tool to quickly and strongly modulate temperature stress resistance, and that such responses are readily reversible. However, resistance traits are not only affected by ambient temperature, but also by, e.g., food availability and age, making their measurement challenging. The latter effects are largely underexplored and deserve more future attention. Owing to their magnitude, plastic responses in thermal tolerance should be incorporated into models trying to forecast effects of global change on extant biodiversity. 相似文献82.
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Smeele KM ter Horst LH Koeman A Heikkinen S Laakso M Weber NC Hollmann MW Zuurbier CJ 《Laboratory animals》2011,45(3):160-166
In the present study, we examined whether standard chow (SDS versus Purina 5001; both low fat, high carbohydrate) and reductions in hexokinase (HK) II (wild-type versus HKII(+/-) mice) affect (1) growth parameters, (2) HK levels in cardiac and skeletal muscle and (3) low-flow cardiac ischaemia-reperfusion (IR) injury. Total HK activity and HKI and HKII expressions were determined, and low-flow IR injury was examined in isolated hearts subjected to 40 min 5% low-flow ischaemia and 120 min reperfusion. Standard chow, but not HKII reductions, significantly affected body weight, heart weight and cardiac hypertrophy. Both standard chow and reduced HKII diminished total cardiac and skeletal muscle HK activity. For the heart, the Purina chow-induced decrease in total HK activity was through decreases in HKI expression, whereas for skeletal muscle post-translational mechanisms are suggested. Both standard chow and reduced HKII demonstrated a non-significant trend for affecting cardiac IR damage. However, the low-flow ischaemia model was associated with mild sublethal injury only (~1% cell death). In conclusion, standard chow affects body weight, heart weight and HK activity and HKI expression in the heart, without altering HKII expression. This implicates standard chow as an important factor in genomic, physiological research models and demonstrates that large differences in fat or carbohydrates in the diet are not necessary to affect growth. In a cardiac low-flow IR model, resulting in only mild injury, standard chow or reduced HKII does not significantly affect IR damage. 相似文献
85.
van der Heijden AM Lee TC van Rantwijk F van Bekkum H 《Carbohydrate research》2002,337(21-23):1993-1998
Glycosidation of saccharides combines the essential characteristics of two major renewable classes, viz. triglycerides and carbohydrates, leading to biofriendly surfactants and emulsifiers. The development of the alkylglycosides derived from reducing disaccharides has lagged, because no efficient synthesis was available. We have found that ordered mesoporous materials of the MCM-41 type are active and selective catalysts for the glycosidation of disaccharides containing fructose at the reducing end, i.e., isomaltulose, lactulose and leucrose. No alcoholysis or hydrolysis of the glycosidic bond was observed, demonstrating the mildness of the MCM-41 catalyst. Leucrose was found to be less reactive than the two other disaccharides, in accordance with the absence of furanose forms in leucrose. 相似文献
86.
Leonardo Marcel Paiz Lucas Baumgartner Rafaela Maria Moresco Fernando Rodrigo Treco Weferson Júnio da Graça Vladimir Pavan Margarido 《Reviews in Fish Biology and Fisheries》2014,24(1):399-407
Australoheros is represented by species of Cichlidae spread over different Brazilian river systems. Individuals of Australoheros angiru were collected in isolated lagoons at 950 m of altitude in a dividing plateau between the basins of the Iguassu River and the Uruguay River, located in the São Lourenço do Oeste region (Santa Catarina State), and subject to basic and molecular cytogenetic analyzes. Moreover, a review about the occurrence and collections sites of A. angiru was used to the clarification of biogeographical issues of Australoheros and other species of fish that are common between the basins of the Uruguay River and Iguassu River. The analysis by conventional staining with Giemsa found a diploid number of 48 chromosomes (18 submetacentric + 30 subtelocentric/acrocentric) for males and females, without sex chromosome differentiation. The nucleolar organizing regions identified by silver impregnation and by fluorescence in situ hybridization with 18S rDNA probes showed to be simple, located on the end of the short arm of subtelocentric chromosome pair 15. Heterochromatin was observed in the centromeric region of most of the chromosomes of the complement, in addition to coincide with the nucleolar organizing regions. The data presented in this study are the first reports on the location of sites of 5S rDNA for Australoheros, being located in interstitial position on the long arm of subtelocentric chromosome pair 11. The basic and molecular cytogenetic data presented here contribute to the better understanding of chromosomal evolution of Cichlidae, act as interesting tools for taxonomy and phylogeny of the group, in addition to help in understanding the dispersion of A. angiru between the two hydrographic basins. 相似文献
87.
Gerrit M. Daubner Anneke Brümmer Cristina Tocchini Stefan Gerhardy Rafal Ciosk Mihaela Zavolan Frédéric H.-T. Allain 《Nucleic acids research》2014,42(12):8092-8105
The STAR family comprises ribonucleic acid (RNA)-binding proteins that play key roles in RNA-regulatory processes. RNA recognition is achieved by a KH domain with an additional α-helix (QUA2) that seems to extend the RNA-binding surface to six nucleotides for SF1 (Homo sapiens) and seven nucleotides for GLD-1 (Caenorhabditis elegans). To understand the structural basis of this probable difference in specificity, we determined the solution structure of GLD-1 KH-QUA2 with the complete consensus sequence identified in the tra-2 gene. Compared to SF1, the GLD-1 KH-QUA2 interface adopts a different conformation resulting indeed in an additional sequence-specific binding pocket for a uracil at the 5′end. The functional relevance of this binding pocket is emphasized by our bioinformatics analysis showing that GLD-1 binding sites with this 5′end uracil are more predictive for the functional response of the messenger RNAs to gld-1 knockout. We further reveal the importance of the KH-QUA2 interface in vitro and that its alteration in vivo affects the level of translational repression dependent on the sequence of the GLD-1 binding motif. In conclusion, we demonstrate that the QUA2 domain distinguishes GLD-1 from other members of the STAR family and contributes more generally to the modulation of RNA-binding affinity and specificity of KH domain containing proteins. 相似文献
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90.
Tjakko J. van Ham Colleen A. Brady Ruby D. Kalicharan Nynke Oosterhof Jeroen Kuipers Anneke Veenstra-Algra Klaas A. Sjollema Randall T. Peterson Harm H. Kampinga Ben N. G. Giepmans 《Disease models & mechanisms》2014,7(7):857-869
Many brain diseases involve activation of resident and peripheral immune cells to clear damaged and dying neurons. Which immune cells respond in what way to cues related to brain disease, however, remains poorly understood. To elucidate these in vivo immunological events in response to brain cell death we used genetically targeted cell ablation in zebrafish. Using intravital microscopy and large-scale electron microscopy, we defined the kinetics and nature of immune responses immediately following injury. Initially, clearance of dead cells occurs by mononuclear phagocytes, including resident microglia and macrophages of peripheral origin, whereas amoeboid microglia are exclusively involved at a later stage. Granulocytes, on the other hand, do not migrate towards the injury. Remarkably, following clearance, phagocyte numbers decrease, partly by phagocyte cell death and subsequent engulfment of phagocyte corpses by microglia. Here, we identify differential temporal involvement of microglia and peripheral macrophages in clearance of dead cells in the brain, revealing the chronological sequence of events in neuroinflammatory resolution. Remarkably, recruited phagocytes undergo cell death and are engulfed by microglia. Because adult zebrafish treated at the larval stage lack signs of pathology, it is likely that this mode of resolving immune responses in brain contributes to full tissue recovery. Therefore, these findings suggest that control of such immune cell behavior could benefit recovery from neuronal damage.KEY WORDS: Brain, Intravital microscopy, Leukocytes, Microglia, Neurodegeneration, Zebrafish 相似文献