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131.
Mammal Research - Foraging animals must contend with fluctuating environmental variables that affect foraging success, including conditions like wind noise, which could diminish the usefulness of...  相似文献   
132.
The characteristic maximum lifespan varies enormously across animal species from a few hours to hundreds of years. This argues that maximum lifespan, and the ageing process that itself dictates lifespan, are to a large extent genetically determined. Although controversial, this is supported by firm evidence that semelparous species display evolutionarily programmed ageing in response to reproductive and environmental cues. Parabiosis experiments reveal that ageing is orchestrated systemically through the circulation, accompanied by programmed changes in hormone levels across a lifetime. This implies that, like the circadian and circannual clocks, there is a master ‘clock of age’ (circavital clock) located in the limbic brain of mammals that modulates systemic changes in growth factor and hormone secretion over the lifespan, as well as systemic alterations in gene expression as revealed by genomic methylation analysis. Studies on accelerated ageing in mice, as well as human longevity genes, converge on evolutionarily conserved fibroblast growth factors (FGFs) and their receptors, including KLOTHO, as well as insulin-like growth factors (IGFs) and steroid hormones, as key players mediating the systemic effects of ageing. Age-related changes in these and multiple other factors are inferred to cause a progressive decline in tissue maintenance through failure of stem cell replenishment. This most severely affects the immune system, which requires constant renewal from bone marrow stem cells. Age-related immune decline increases risk of infection whereas lifespan can be extended in germfree animals. This and other evidence suggests that infection is the major cause of death in higher organisms. Immune decline is also associated with age-related diseases. Taking the example of Alzheimer's disease (AD), we assess the evidence that AD is caused by immunosenescence and infection. The signature protein of AD brain, Aβ, is now known to be an antimicrobial peptide, and Aβ deposits in AD brain may be a response to infection rather than a cause of disease. Because some cognitively normal elderly individuals show extensive neuropathology, we argue that the location of the pathology is crucial – specifically, lesions to limbic brain are likely to accentuate immunosenescence, and could thus underlie a vicious cycle of accelerated immune decline and microbial proliferation that culminates in AD. This general model may extend to other age-related diseases, and we propose a general paradigm of organismal senescence in which declining stem cell proliferation leads to programmed immunosenescence and mortality.  相似文献   
133.

Aim

Coastal fishes have a fundamental role in marine ecosystem functioning and contributions to people, but face increasing threats due to climate change, habitat degradation and overexploitation. The extent to which human pressures are impacting coastal fish biodiversity in comparison with geographic and environmental factors at large spatial scale is still under scrutiny. Here, we took advantage of environmental DNA (eDNA) metabarcoding to investigate the relationship between fish biodiversity, including taxonomic and genetic components, and environmental but also socio-economic factors.

Location

Tropical, temperate and polar coastal areas.

Time period

Present day.

Major taxa studied

Marine fishes.

Methods

We analysed fish eDNA in 263 stations (samples) in 68 sites distributed across polar, temperate and tropical regions. We modelled the effect of environmental, geographic and socio-economic factors on α- and β-diversity. We then computed the partial effect of each factor on several fish biodiversity components using taxonomic molecular units (MOTU) and genetic sequences. We also investigated the relationship between fish genetic α- and β-diversity measured from our barcodes, and phylogenetic but also functional diversity.

Results

We show that fish eDNA MOTU and sequence α- and β-diversity have the strongest correlation with environmental factors on coastal ecosystems worldwide. However, our models also reveal a negative correlation between biodiversity and human dependence on marine ecosystems. In areas with high dependence, diversity of all fish, cryptobenthic fish and large fish MOTUs declined steeply. Finally, we show that a sequence diversity index, accounting for genetic distance between pairs of MOTUs, within and between communities, is a reliable proxy of phylogenetic and functional diversity.

Main conclusions

Together, our results demonstrate that short eDNA sequences can be used to assess climate and direct human impacts on marine biodiversity at large scale in the Anthropocene and can further be extended to investigate biodiversity in its phylogenetic and functional dimensions.  相似文献   
134.
Cardiomyopathy is a progressive disease of the myocardium leading to impaired contractility. Genotoxic cancer therapies are known to be potent drivers of cardiomyopathy, whereas causes of spontaneous disease remain unclear. To test the hypothesis that endogenous genotoxic stress contributes to cardiomyopathy, we deleted the DNA repair gene Ercc1 specifically in striated muscle using a floxed allele of Ercc1 and mice expressing Cre under control of the muscle-specific creatinine kinase (Ckmm) promoter or depleted systemically (Ercc1−/D mice). Ckmm-Cre+/−;Ercc1−/fl mice expired suddenly of heart disease by 7 months of age. As young adults, the hearts of Ckmm-Cre+/−;Ercc1−/fl mice were structurally and functionally normal, but by 6-months-of-age, there was significant ventricular dilation, wall thinning, interstitial fibrosis, and systolic dysfunction indicative of dilated cardiomyopathy. Cardiac tissue from the tissue-specific or systemic model showed increased apoptosis and cardiac myocytes from Ckmm-Cre+/-;Ercc1−/fl mice were hypersensitive to genotoxins, resulting in apoptosis. p53 levels and target gene expression, including several antioxidants, were increased in cardiac tissue from Ckmm-Cre+/−;Ercc1−/fl and Ercc1−/D mice. Despite this, cardiac tissue from older mutant mice showed evidence of increased oxidative stress. Genetic or pharmacologic inhibition of p53 attenuated apoptosis and improved disease markers. Similarly, overexpression of mitochondrial-targeted catalase improved disease markers. Together, these data support the conclusion that DNA damage produced endogenously can drive cardiac disease and does so mechanistically via chronic activation of p53 and increased oxidative stress, driving cardiac myocyte apoptosis, dilated cardiomyopathy, and sudden death.  相似文献   
135.
Acute megakaryoblastic leukaemia (AMkL) is a rare subtype of acute myeloid leukaemia (AML) representing 5% of all reported cases, and frequently diagnosed in children with Down syndrome. Patients diagnosed with AMkL have low overall survival and have poor outcome to treatment, thus novel therapies such as CAR T cell therapy could represent an alternative in treating AMkL. We investigated the effect of a new CAR T cell which targets CD41, a specific surface antigen for M7-AMkL, against an in vitro model for AMkL, DAMI Luc2 cell line. The performed flow cytometry evaluation highlighted a percentage of 93.8% CAR T cells eGFP-positive and a limited acute effect on lowering the target cell population. However, the interaction between effector and target (E:T) cells, at a low ratio, lowered the cell membrane integrity, and reduced the M7-AMkL cell population after 24 h of co-culture, while the cytotoxic effect was not significant in groups with higher E:T ratio. Our findings suggest that the anti-CD41 CAR T cells are efficient for a limited time spawn and the cytotoxic effect is visible in all experimental groups with low E:T ratio.  相似文献   
136.
In connectivity models, land cover types are assigned cost values characterizing their resistance to species movements. Landscape genetic methods infer these values from the relationship between genetic differentiation and cost distances. The spatial heterogeneity of population sizes, and consequently genetic drift, is rarely included in this inference although it influences genetic differentiation. Similarly, migration rates and population spatial distributions potentially influence this inference. Here, we assessed the reliability of cost value inference under several migration rates, population spatial patterns and degrees of population size heterogeneity. Additionally, we assessed whether considering intra-population variables, here using gravity models, improved the inference when drift is spatially heterogeneous. We simulated several gene flow intensities between populations with varying local sizes and spatial distributions. We then fit gravity models of genetic distances as a function of (i) the ‘true’ cost distances driving simulations or alternative cost distances, and (ii) intra-population variables (population sizes, patch areas). We determined the conditions making the identification of the ‘true’ costs possible and assessed the contribution of intra-population variables to this objective. Overall, the inference ranked cost scenarios reliably in terms of similarity with the ‘true’ scenario (cost distance Mantel correlations), but this ‘true’ scenario rarely provided the best model goodness of fit. Ranking inaccuracies and failures to identify the ‘true’ scenario were more pronounced when migration was very restricted (<4 dispersal events/generation), population sizes were most heterogeneous and some populations were spatially aggregated. In these situations, considering intra-population variables helps identify cost scenarios reliably, thereby improving cost value inference from genetic data.  相似文献   
137.
Zusammenfassung Die Marginalborste auf der Marginalleiste der Rüsselscheibe von Calliphora und Phormia ist bei adulten Tieren und reifen Puppen lichtmikroskopisch untersucht worden. Sie besteht aus einer zweilumigen Borste, unter der sich ein Sack mit Sinneszellen und akzessorischen Zellen befindet. Der Sack baut sich aus zwei Hüllen auf, deren innere aus bindegewebigem Perilemm gebildet wird. Distal grenzt das Perilemm an die Basalmembran, proximal zieht es von der Basis des Sackes aus als Nervenscheide in das Labellum, wo es sich mit den Nervenscheiden anderer Marginalborsten vereinigt und an der Basis des Labellums in die Nervenscheide des Labialnerven mündet. Die äußere Hülle des Sackes besteht aus granuliertem Septum, das distal 2–25 unterhalb der Basalmembran endet und proximal die Nervenscheide etwa bis zur Mitte des Labellums eng anliegend überzieht. Dort löst es sich von der Nervenscheide und zieht unter die Basalmembran, unter der es auch im Haustellum und Rostrum vorkommt. Die trichogene Zelle der Marginalborste verschließt den Sack in Höhe der Basalmembran wie ein zugespitzter Korken. Die Membran ihrer Zelle im intrakutikulären Bereich wird beschrieben. Ein Scolops zieht als Fortsetzung vom engen Lumen der Borste durch die trichogene Zelle hindurch in den Sack hinein, wo sein freies Ende distale Nervenfortsätze aufnimmt. Zur Anzahl und Art der Zellen im Sack wird Stellung genommen. Ein Netz aus Fibrillen unbekannter Art um den Kern der Sinneszellen und der Verlauf einer mechanorezeptorischen Faser werden beschrieben. In den Nervenscheiden kommen biund tripolare Zellen mit kurzen Fasern vor, die für Perilemmzellen gehalten werden. Nach Berechnungen über die Anzahl der Sinneszellen je Labellum und nach Querschnitten durch den Labialnerven in Höhe des Haustellums besteht eine Reduktion der afferenten Axone von etwa 1000 Sinneszellen zu rund 250, was einer Reduktion von vier Axonen zu einem einzigen entspricht.Herrn Prof. Dr. R. Stämpfli danke ich sehr für sein großes Interesse und seine Anregungen, Herrn Prof. Dr. B. Hassenstein (Direktor des Instituts für Zoologie der Universität Freiburg) für die kritische Durchsicht des Manuskripts.  相似文献   
138.
    
Zusammenfassung Schon veröffentlichte Feststellungen über verringertes Heimfindevermögen von Brieftauben im Winter werden bestätigt.Durch wiederholte Auflassungen über die gleiche Kurzstrecke (von NNW 22 km nach SSO) wird gezeigt, daß die Einzeltaube regelmäßig wesentlich schlechter abschneidet, wenn sie die gleiche, im Sommer durchflogene Strecke im Winter wiederholt. Durch Verwendung einer hinreichenden Anzahl von Erstfliegern in beiden Jahreszeiten wird der Wintereffekt auch durch Vergleich von Heimkehrschnelligkeiten verschiedener Individuen sichergestellt.Es wird gezeigt, daß die Verwandlung des Landschaftsbildes nicht die Ursache des winterlichen Versagens sein kann. Es ist auch unwahrscheinlich, daß die im Winter geringere Höhe des Sonnenstandes schuld ist. Entgegen einer früher vonKramer geäußerten Meinung können auch weder niedrige Temperaturen als solche noch direkt mit ihnen streng gekoppelte Faktoren verantwortlich gemacht werden.Der Einwand, daß es sich beim Wintereffekt nicht um eine Orientierungsbehinderung, sondern um eine jahreszeitlich, vielleicht mit der Taglänge korrelierte Schwächung des Heimkehrimpulses handeln möge, wird kritisch besprochen. Gegen diesen Einwand wird geltend gemacht, daß nach den bisherigen Erfahrungen der März noch zu den Winter-Monaten zählt; sogar ein Aprilflug trug intermediäre Züge. Dagegen funktioniert das Heimkehrvermögen im September noch gut. — Eine Korrelation mit der Intensität des Fortpflanzungsverhaltens kann deswegen nicht vorliegen, weil die Fortpflanzungsaktivität schon im Februar erheblich gesteigert ist. Es wird der Nachweis geführt, daß bei gleichen Temperaturen im Winter signifikant verschiedene Heimkehrerfolge an nahe beisammenliegenden Daten (3. 1. und 26. 1. 1956) erzielt werden können.Auch für andere Strecken (36 km S — N, 41 km O — W, 94 km S — N) werden Vergleiche von Heimflügen im Sommer mit solchen im Winter angestellt. Die Winterergebnisse sind durchweg erheblich schlechter.Das Bestehen des Wintereffekts zeigt, daß die Orientierung bei der Heimkehr auch über kurze Strecken nicht auf dem visuellen Erkennen von Landschaftsstrukturen beruht. Der Orientierungsmechanismus ist vielmehr unbekannt. Es ist vorläufig zu vermuten, daß er identisch ist mit dem, der über weitere Distanzen wirksam ist.Mit Unterstützung der Deutschen Forschungsgemeinschaft, welche das Fahrzeug zur Verfügung stellte und die Betriebsmittel dafür trug.  相似文献   
139.
This work proposes a model of the metabolic branch-point between the methionine and threonine biosynthesis pathways in Arabidopsis thaliana which involves kinetic competition for phosphohomoserine between the allosteric enzyme threonine synthase and the two-substrate enzyme cystathionine gamma-synthase. Threonine synthase is activated by S-adenosylmethionine and inhibited by AMP. Cystathionine gamma-synthase condenses phosphohomoserine to cysteine via a ping-pong mechanism. Reactions are irreversible and inhibited by inorganic phosphate. The modelling procedure included an examination of the kinetic links, the determination of the operating conditions in chloroplasts and the establishment of a computer model using the enzyme rate equations. To test the model, the branch-point was reconstituted with purified enzymes. The computer model showed a partial agreement with the in vitro results. The model was subsequently improved and was then found consistent with flux partition in vitro and in vivo. Under near physiological conditions, S-adenosylmethionine, but not AMP, modulates the partition of a steady-state flux of phosphohomoserine. The computer model indicates a high sensitivity of cystathionine flux to enzyme and S-adenosylmethionine concentrations. Cystathionine flux is sensitive to modulation of threonine flux whereas the reverse is not true. The cystathionine gamma-synthase kinetic mechanism favours a low sensitivity of the fluxes to cysteine. Though sensitivity to inorganic phosphate is low, its concentration conditions the dynamics of the system. Threonine synthase and cystathionine gamma-synthase display similar kinetic efficiencies in the metabolic context considered and are first-order for the phosphohomoserine substrate. Under these conditions outflows are coordinated.  相似文献   
140.
To be able to understand cellular mechanisms, we require fully integrated data sets combining information about gene expression, protein expression, post-translational modification states, sub-cellular location and complex formation. Proteomics is a very powerful technique that can be applied to interrogate changes at the protein level. Studying this effectively requires specialised facilities within research institutes. Here, we describe the setting up and operation of such a facility, providing a resource for the Arabidopsis and Drosophila research communities.  相似文献   
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