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161.
Land use has greatly transformed Earth's surface. While spatial reconstructions of how the extent of land cover and land-use types have changed during the last century are available, much less information exists about changes in land-use intensity. In particular, global reconstructions that consistently cover land-use intensity across land-use types and ecosystems are missing. We, therefore, lack understanding of how changes in land-use intensity interfere with the natural processes in land systems. To address this research gap, we map land-cover and land-use intensity changes between 1910 and 2010 for 9 points in time. We rely on the indicator framework of human appropriation of net primary production (HANPP) to quantify and map land-use-induced alterations of the carbon flows in ecosystems. We find that, while at the global aggregate level HANPP growth slowed down during the century, the spatial dynamics of changes in HANPP were increasing, with the highest change rates observed in the most recent past. Across all biomes, the importance of changes in land-use areas has declined, with the exception of the tropical biomes. In contrast, increases in land-use intensity became the most important driver of HANPP across all biomes and settings. We conducted uncertainty analyses by modulating input data and assumptions, which indicate that the spatial patterns of land use and potential net primary production are the most critical factors, while spatial allocation rules and uncertainties in overall harvest values play a smaller role. Highlighting the increasing role of land-use intensity compared to changes in the areal extent of land uses, our study supports calls for better integration of the intensity dimension into global analyses and models. On top of that, we provide important empirical input for further analyses of the sustainability of the global land system.  相似文献   
162.
Hepatic cells are sensitive to internal and external signals. Ethanol is one of the oldest and most widely used drugs in the world. The focus on the mechanistic engine of the alcohol-induced injury has been in the liver, which is responsible for the pathways of alcohol metabolism. Ethanol undergoes a phase I type of reaction, mainly catalyzed by the cytoplasmic enzyme, alcohol dehydrogenase (ADH), and by the microsomal ethanol-oxidizing system (MEOS). Reactive oxygen species (ROS) generated by cytochrome (CYP) 2E1 activity and MEOS contribute to ethanol-induced toxicity. We aimed to: (1) Describe the cellular, pathophysiological and clinical effects of alcohol misuse on the liver; (2) Select the biomarkers and analytical methods utilized by the clinical laboratory to assess alcohol exposure; (3) Provide therapeutic ideas to prevent/reduce alcohol-induced liver injury; (4) Provide up-to-date knowledge regarding the Corona virus and its affect on the liver; (5) Link rare diseases with alcohol consumption. The current review contributes to risk identification of patients with alcoholic, as well as non-alcoholic, liver disease and metabolic syndrome. Additional prevalence of ethnic, genetic, and viral vulnerabilities are presented.  相似文献   
163.
The ribosome is a fundamental biomolecular complex that synthesizes proteins in cells. Nascent proteins emerge from the ribosome through a tunnel, where they may interact with the tunnel walls or small molecules such as antibiotics. These interactions can cause translational arrest with notable physiological consequences. Here, we studied the arrest caused by the regulatory peptide VemP, which is known to form α-helices inside the ribosome tunnel near the peptidyl transferase center under specific conditions. We used all-atom molecular dynamics simulations of the entire ribosome and circular dichroism spectroscopy to study the driving forces of helix formation and how VemP causes the translational arrest. To that aim, we compared VemP dynamics in the ribosome tunnel with its dynamics in solution. We show that the VemP peptide has a low helical propensity in water and that the propensity is higher in mixtures of water and trifluorethanol. We propose that helix formation within the ribosome is driven by the interactions of VemP with the tunnel and that a part of VemP acts as an anchor. This anchor might slow down VemP progression through the tunnel enabling α-helix formation, which causes the elongation arrest.  相似文献   
164.
Experiments on Adaptations to Sedimentation and Substrate in Fungiid Corals (Scleractinia, Fungiidae) Experimental evaluation of the sediment rejecting behaviour in fungiid corals shows: a). sediments easily slide off from cupolate coralla; b). some flat corals inflate the polyp to get rid off sediments; c). in most species sediments are entangled in mucus and removed by ciliary action. However mucus production is limited by the number of functioning mucous cells. During continuous stress by weighting sediments the tissue overlying the septal ridges gets cut and worn off. Damage instantly occurs in species with sharp septa, but relatively late in those with broad septa. Even minute tissue remains are capable of regenerating trophozoids attached to the old skeleton. Species which endure only low sedimentation rates, are mainly confined to hard bottoms (e.g. reef slope).  相似文献   
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Zusammenfassung Die um 3–4 dicke Cuticula des Regenwurms (Lumbricus terrestris L.) besteht aus 20–30 sich annähernd rechtwinklig kreuzenden Lagen von Cuticulafibrillen. Senkrecht zu und zwischen den sich kreuzenden Fibrillen verlaufen röhrenförmige Zellfortsätze, Cuticulakanälchen von der Oberfläche der Epithelzelle zur Epicuticula. Die Epicuticula bildet eine kontinuierliche, mit feinen, dicht stehenden Exkreszenzen besetzte Schicht. Die zelluläre, respektive extrazelluläre Natur der Cuticulastrukturen und ihr funktionelles Verhalten werden besprochen. Anmerkung bei der Korrektur. Die Herren D. Peters (Hamburg) und W. J. Schmidt (Gießen) machten uns auf die Untersuchung der Cuticulastruktur des Regenwurms durch Reed und Rudall (1948) aufmerksam.Die von den englischen Autoren gewonnenen Abdruckpräparate aus verschieden tiefen Schichten der Cuticula stimmen mit den hier gezeigten Schnittpräparaten vorzüglich überein und ergänzen sie durch die Aufsicht auf die freie Oberfläche. Mit der Abdrucktechnik sind jedoch die Cuticula-Kanälchen zwischen den Fibrillen nicht erkannt worden. Einige der Vermutungen über die Bildung der Cuticulafibrulen (s. auch Rudall 1950) dürften deshalb hinfällig geworden sein. Über die chemische Zusammensetzung der Cuticula und ihre chemischen Unterschiede gegenüber Kollagen s. Watson und Smith (1956).Mit dankenswerter Unterstützung durch das Kultusministerium des Landes Nordrhein-Westfalen durchgeführte Untersuchung.  相似文献   
167.
Diazaborine treatment of yeast cells was shown previously to cause accumulation of aberrant, 3'-elongated mRNAs. Here we demonstrate that the drug inhibits maturation of rRNAs for the large ribosomal subunit. Pulse-chase analyses showed that the processing of the 27S pre-rRNA to consecutive species was blocked in the drug-treated wild-type strain. The steady-state level of the 7S pre-rRNA was clearly reduced after short-term treatment with the inhibitor. At the same time an increase of the 35S pre-rRNA was observed. Longer incubation with the inhibitor resulted in a decrease of the 27S precursor. Primer extension assays showed that an early step in 27S pre-rRNA processing is inhibited, which results in an accumulation of the 27SA2 pre-rRNA and a strong decrease of the 27SA3, 27SB1L, and 27SB1S precursors. The rRNA processing pattern observed after diazaborine treatment resembles that reported after depletion of the RNA binding protein Nop4p/Nop77p. This protein is essential for correct pre-27S rRNA processing. Using a green fluorescent protein-Nop4 fusion, we found that diazaborine treatment causes, within minutes, a rapid redistribution of the protein from the nucleolus to the periphery of the nucleus, which provides a possible explanation for the effect of diazaborine on rRNA processing.  相似文献   
168.
In this paper we develop a reaction-diffusion system describing the calcium dynamics in an agarose gel system with resuspended vesicles from the sarcoplasmic reticulum (SR vesicles). We focus on a simple model: compared with living cells (e.g. cardiac myocytes) an important property of the agarose gel system is the absence of the sarcolemma and the spatial separation of the calcium release units (CRUs). Our model includes the kinetics of ryanodine sensitive receptors (RyRs), the activity of the SERCA pumps and the diffusion of free calcium. We describe numerical simulations which show a biphasic relationship between the density of the CRUs and the propagation velocity of spreading waves. The non-monotony can be explained by changes in the amplitude of the local calcium concentration. We formulate implications for the in vitro system which could be verified in future experiments.  相似文献   
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