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1.
Michael Steinert Manfred Ott P. Christian Lück Egbert Tannich Jörg Hacker 《FEMS microbiology ecology》1994,15(3-4):299-308
Abstract Legionella pneumophila strains isolated from different sources were tested for their host range in the protists Acanthamoeba castellanii, Hartmannella vermiformis and Entamoeba histolytica . It has been shown that A. castellanii and H. vermiformis but not E. histolytica support the intracellular replication of L. pneumophila . Furthermore it could be demonstrated that in vivo virulence in the guinea pig and the intracellular growth in U937 cells coincides with the capability to replicate intracellularly in A. castellanii at 37°C. The infectivity of L. pneumophila that had sustained a 48 hours nutrient deprivation was not significantly different from that of legionellae grown to log-phase on BCYE plates. In contrast the nutrient limitation on A. castellanii increased the amount of intracellular legionellae at the beginning of infection. An initial opsonin independent attachement stage of legionellae to U937 cells was demonstrated by scanning electron microscopy. In contrast, L. pneumophila's capability of stable or long term attachmennt to A. castellanii was shown to be inefficient. 相似文献
2.
Four fluorescence parameters [Fv/Fm = the intrinsic efficiency of energy conversion via photosystem 2 (PS2); Fv/Fm= the efficiency of energy conversion via PS2 in the light; P = fraction of absorbed radiant energy utilized for photosynthesis; and D = fraction of absorbed radiant energy dissipated as heat] were measured on leaves of seven species of succulents having epidermal windows. While the function of leaf windows has reportedly been to increase absorption of radiant energy and, hence, the rate of photosynthesis in these species, recent evidence indicates that this translucent portion of epidermal tissue, lacking chlorophyll, may also result in photoinhibition in these species, especially for those with growth habits aboveground. Species with aboveground and belowground growth habits were compared with their leaf windows covered with reflective tape and with windows unobstructed. Results showed no increase in photoinhibition for these species resulting from the radiant energy penetrating the window tissue. Although the efficiency of the photosynthetic mechanism was not significantly influenced by the additional radiant energy provided by the window for individual species, there were significant differences in the efficiencies of radiant energy capture (Fv/Fm) and utilization (P) between the two growth habits. Species with an aboveground growth habit were less efficient in radiant energy utilization compared with the species having a belowground growth habit. 相似文献
3.
Claudia Menzel Egbert Strauß Wilfried Meyer und Klaus Pohlmeyer 《Journal of Ornithology》2000,141(2):127-141
Zusammenfassung Von Januar bis September 1996 wurden in vier Gebieten Niedersachsens mit einer Gesamtfläche von 113 km2 Untersuchungen zur Bedeutung des Brutplatzangebotes für die Ausbildung unterschiedlicher Siedlungsdichten der Rabenkrähen (Corvus c. corone) durchgeführt. Ziele waren eine Bestandserfassung der Rabenkrähen sowie eine Beurteilung der Habitatstruktur als Regulationsmechanismus für ihre Verteilung und Siedlungsdichte. Die meisten Horste fanden sich in Baumreihen oder Alleen, in gebäudeumgebenden Gehölzen und auf den Stahlmasten von Hochspannungsleitungen. Waldränder wurden als Brutstandort nicht bevorzugt. Der mittlere Nestabstand aller Gebiete betrug 689 m, Reviergrößen schwankten zwischen 0,18 und 0,6 km2. Die Nisthöhen lagen zwischen 2,5 und 42 m; in Gehölzen dominierte eine Höhe von 13 m. Die Abundanzen schwankten zwischen 0,5 und 2,0 Paaren/km2 bei einer mittleren Abundanz von 1,4 Paaren/km2 und einer Gesamtzahl von 72 Nichtbrüterindividuen. Die Habitatstrukturen ermöglichten hypothetisch 3,2- bis 7,6fach höhere Brutpaardichten als real vorkamen. Nur 20% der Strukturen wurden als Nistplatz genutzt. Eine Abhängigkeit der Horstverteilung von der Verteilung der Habitatstrukturen wurde nicht gefunden. Weder die Habitatstrukturen an sich noch in Verbindung mit den Reviergrößen sind als ultimativer Regulationsmechanismus für die Revier- und Brutplatzwahl und damit für die Verteilung und Siedlungsdichte der Rabenkrähen anzusehen.
Significance of habitat structures as a regulatory mechanism for the breeding density of Carrion Crows (Corvus corone corone)
Summary In four regions of Lower Saxony with a total area of 113 km2 we examined woods and electricity pylons as habitat structures with respect to their frequency distribution and suitability as breeding places of carrion crows. We determined real population densities and calculated a hypothetical breeding density in relation to habitat structures in order to test a possible regulative effect of these structures on regional differences in settlement density ofCorvus c. corone. The regional capacities indicated a hypothetical breeding density 3.2 to 7.6 times higher than was proven in reality. Even in a medium-sized territory of 0.5 km2 (a value to be found in literature) a 1.4 times higher density is still possible. Furthermore, the regional nest distribution established by the index of dispersion was random, but the habitat structures showed clumping. Neither the habitat structures on their own nor in combination with territory size can be regarded as definite mechanisms of regulation in the choice of territory and breeding place and thence of the distribution and settlement density ofCorvus c. corone. The possible influence of food supply and non-breeding populations on distribution patterns and settlement densities is discussed.
Gefördert mit Jagdforschungsmitteln des Landes Niedersachsen 相似文献
4.
Tomas E. van den Berg Rameez Arshad Wojciech J. Nawrocki Egbert J. Boekema Roman Kouil Roberta Croce 《Plant physiology》2020,184(4):2040
PSI is an essential component of the photosynthetic apparatus of oxygenic photosynthesis. While most of its subunits are conserved, recent data have shown that the arrangement of the light-harvesting complexes I (LHCIs) differs substantially in different organisms. Here we studied the PSI-LHCI supercomplex of Botryococccus braunii, a colonial green alga with potential for lipid and sugar production, using functional analysis and single-particle electron microscopy of the isolated PSI-LHCI supercomplexes complemented by time-resolved fluorescence spectroscopy in vivo. We established that the largest purified PSI-LHCI supercomplex contains 10 LHCIs (∼240 chlorophylls). However, electron microscopy showed heterogeneity in the particles and a total of 13 unique binding sites for the LHCIs around the PSI core. Time-resolved fluorescence spectroscopy indicated that the PSI antenna size in vivo is even larger than that of the purified complex. Based on the comparison of the known PSI structures, we propose that PSI in B. braunii can bind LHCIs at all known positions surrounding the core. This organization maximizes the antenna size while maintaining fast excitation energy transfer, and thus high trapping efficiency, within the complex.The multisubunit-pigment-protein complex PSI is an essential component of the electron transport chain in oxygenic photosynthetic organisms. It utilizes solar energy in the form of visible light to transfer electrons from plastocyanin to ferredoxin.PSI consists of a core complex composed of 12 to 14 proteins, which contains the reaction center (RC) and ∼100 chlorophylls (Chls), and a peripheral antenna system, which enlarges the absorption cross section of the core and differs in different organisms (Mazor et al., 2017; Iwai et al., 2018; Pi et al., 2018; Suga et al., 2019; for reviews, see Croce and van Amerongen, 2020; Suga and Shen, 2020). For the antenna system, cyanobacteria use water-soluble phycobilisomes; green algae, mosses, and plants use membrane-embedded light-harvesting complexes (LHCs); and red algae contain both phycobilisomes and LHCs (Busch and Hippler, 2011). In the core complex, PsaA and PsaB, the subunits that bind the RC Chls, are highly conserved, while the small subunits PsaK, PsaL, PsaM, PsaN, and PsaF have undergone substantial changes in their amino acid sequences during the evolution from cyanobacteria to vascular plants (Grotjohann and Fromme, 2013). The appearance of the core subunits PsaH and PsaG and the change of the PSI supramolecular organization from trimer/tetramer to monomer are associated with the evolution of LHCs in green algae and land plants (Busch and Hippler, 2011; Watanabe et al., 2014).A characteristic of the PSI complexes conserved through evolution is the presence of “red” forms, i.e. Chls that are lower in energy than the RC (Croce and van Amerongen, 2013). These forms extend the spectral range of PSI beyond that of PSII and contribute significantly to light harvesting in a dense canopy or algae mat, which is enriched in far-red light (Rivadossi et al., 1999). The red forms slow down the energy migration to the RC by introducing uphill transfer steps, but they have little effect on the PSI quantum efficiency, which remains ∼1 (Gobets et al., 2001; Jennings et al., 2003; Engelmann et al., 2006; Wientjes et al., 2011). In addition to their role in light-harvesting, the red forms were suggested to be important for photoprotection (Carbonera et al., 2005).Two types of LHCs can act as PSI antennae in green algae, mosses, and plants: (1) PSI-specific (e.g. LHCI; Croce et al., 2002; Mozzo et al., 2010), Lhcb9 in Physcomitrella patens (Iwai et al., 2018), and Tidi in Dunaliela salina (Varsano et al., 2006); and (2) promiscuous antennae (i.e. complexes that can serve both PSI and PSII; Kyle et al., 1983; Wientjes et al., 2013a; Drop et al., 2014; Pietrzykowska et al., 2014).PSI-specific antenna proteins vary in type and number between algae, mosses, and plants. For example, the genomes of several green algae contain a larger number of lhca genes than those of vascular plants (Neilson and Durnford, 2010). The PSI-LHCI complex of plants includes only four Lhcas (Lhca1–Lhc4), which are present in all conditions analyzed so far (Ballottari et al., 2007; Wientjes et al., 2009; Mazor et al., 2017), while in algae and mosses, 8 to 10 Lhcas bind to the PSI core (Drop et al., 2011; Iwai et al., 2018; Pinnola et al., 2018; Kubota-Kawai et al., 2019; Suga et al., 2019). Moreover, some PSI-specific antennae are either only expressed, or differently expressed, under certain environmental conditions (Moseley et al., 2002; Varsano et al., 2006; Swingley et al., 2010; Iwai and Yokono, 2017), contributing to the variability of the PSI antenna size in algae and mosses.The colonial green alga Botryococcus braunii (Trebouxiophyceae) is found worldwide throughout different climate zones and has been targeted for the production of hydrocarbons and sugars (Metzger and Largeau, 2005; Eroglu et al., 2011; Tasić et al., 2016). Here, we have purified and characterized PSI from an industrially relevant strain isolated from a mountain lake in Portugal (Gouveia et al., 2017). This B. braunii strain forms colonies, and since the light intensity inside the colony is low, it is expected that PSI in this strain has a large antenna size (van den Berg et al., 2019). We provide evidence that B. braunii PSI differs from that of closely related organisms through the particular organization of its antenna. The structural and functional characterization of B. braunii PSI highlights a large flexibility of PSI and its antennae throughout the green lineage. 相似文献
5.
D S Grant J L Kinsella R Fridman R Auerbach B A Piasecki Y Yamada M Zain H K Kleinman 《Journal of cellular physiology》1992,153(3):614-625
Endothelial cells are known to bind to laminin, and two peptides derived from the laminin A (CTFALRGDNP) and B1 (CDPGYIGSR) chains block the capillary-like tube formation on a laminin-rich basement membrane matrix, Matrigel. In the present study, we have used various in vitro and in vivo assays to investigate the angiogenic-biologic effects of a third active site in the laminin A chain, CSRARKQAASIKVAVSADR (designated PA22-2) on endothelial cells. The SIKVAV-containing peptide was as active as the YIGSR-containing peptide for endothelial cell attachment but was less active than either the RGD-containing peptide or intact laminin. Endothelial cells seeded on this peptide appeared fibroblastic with many extended processes, unlike the normal cobblestone morphology observed on tissue culture plastic. In addition, in contrast to normal tube formation on Matrigel, short irregular structures formed, some of which penetrated the matrix and sprouting was more apparent. Analysis of endothelial cell conditioned media of cells cultured in the presence of this peptide indicated degradation of the Matrigel and zymograms demonstrated active collagenase IV (gelatinase) at 68 and 62 Kd. A murine in vivo angiogenesis assay and the chick yolk sac/chorioallantoic membrane assays with the peptide demonstrated increased endothelial cell mobilization, capillary branching, and vessel formation. These data suggest that the -SIKVAV-site may play an important role in initiating branching and formation of new capillaries from the parent vessels, a behavior that is observed in vivo in response to tumor growth or in the normal vascular response to injury. 相似文献
6.
Sabrina Sacconi Richard J.L.F. Lemmers Judit Balog Patrick J. van der Vliet Pauline Lahaut Merlijn P. van Nieuwenhuizen Kirsten R. Straasheijm Rashmie D. Debipersad Marianne Vos-Versteeg Leonardo Salviati Alberto Casarin Elena Pegoraro Rabi Tawil Egbert Bakker Stephen J. Tapscott Claude Desnuelle Silvère M. van der Maarel 《American journal of human genetics》2013
7.
Sabrina Sacconi Richard?J.L.F. Lemmers Judit Balog Patrick?J. van?der?Vliet Pauline Lahaut Merlijn?P. van?Nieuwenhuizen Kirsten?R. Straasheijm Rashmie?D. Debipersad Marianne Vos-Versteeg Leonardo Salviati Alberto Casarin Elena Pegoraro Rabi Tawil Egbert Bakker Stephen?J. Tapscott Claude Desnuelle Silvère?M. van?der?Maarel 《American journal of human genetics》2013,93(4):744-751
Facioscapulohumeral muscular dystrophy type 1 (FSHD1) is caused by contraction of the D4Z4 repeat array on chromosome 4 to a size of 1–10 units. The residual number of D4Z4 units inversely correlates with clinical severity, but significant clinical variability exists. Each unit contains a copy of the DUX4 retrogene. Repeat contractions are associated with changes in D4Z4 chromatin structure that increase the likelihood of DUX4 expression in skeletal muscle, but only when the repeat resides in a genetic background that contains a DUX4 polyadenylation signal. Mutations in the structural maintenance of chromosomes flexible hinge domain containing 1 (SMCHD1) gene, encoding a chromatin modifier of D4Z4, also result in the increased likelihood of DUX4 expression in individuals with a rare form of FSHD (FSHD2). Because SMCHD1 directly binds to D4Z4 and suppresses somatic expression of DUX4, we hypothesized that SMCHD1 may act as a genetic modifier in FSHD1. We describe three unrelated individuals with FSHD1 presenting an unusual high clinical severity based on their upper-sized FSHD1 repeat array of nine units. Each of these individuals also carries a mutation in the SMCHD1 gene. Familial carriers of the FSHD1 allele without the SMCHD1 mutation were only mildly affected, suggesting a modifier effect of the SMCHD1 mutation. Knocking down SMCHD1 in FSHD1 myotubes increased DUX4 expression, lending molecular support to a modifier role for SMCHD1 in FSHD1. We conclude that FSHD1 and FSHD2 share a common pathophysiological pathway in which the FSHD2 gene can act as modifier for disease severity in families affected by FSHD1. 相似文献
8.
The individual protein complexes of the oxidative phosphorylation system (OXPHOS complexes I to V) specifically interact and form defined supramolecular structures, the so-called “respiratory supercomplexes”. Some supercomplexes appear to associate into larger structures, or megacomplexes, such as a string of dimeric ATP synthase (complex V2). A row-like organization of OXPHOS complexes I, III and IV into respiratory strings has also been proposed. These transient strings cannot be purified after detergent solubilization. Hence the shape and composition of the respiratory string was approached by an extensive structural characterization of all its possible building blocks, which are the supercomplexes. About 400,000 molecular projections of supercomplexes from potato mitochondria were processed by single particle electron microscopy. We obtained two-dimensional projection maps of at least five different supercomplexes, including the supercomplex I + III2, III2 + IV1, V2, I + III2 + IV1 and I2 + III2 in different types of position. From these maps the relative position of the individual complexes in the largest unit, the I2 + III2 + IV2 supercomplex, could be determined in a coherent way. The maps also show that the I + III2 + IV1 supercomplex, or respirasome, differs from its counterpart in bovine mitochondria. The new structural features allow us to propose a consistent model of the respiratory string, composed of repeating I2 + III2 + IV2 units, which is in agreement with dimensions observed in former freeze-fracture electron microscopy data. 相似文献
9.
Floor A. Harms Wilhelmina J. Voorbeijtel Sander I.A. Bodmer Nicolaas J.H. Raat Egbert G. Mik 《Mitochondrion》2013,13(5):507-514
Progress in diagnosis and treatment of mitochondrial dysfunction in chronic and acute disease could greatly benefit from techniques for monitoring of mitochondrial function in vivo. In this study we demonstrate the feasibility of in vivo respirometry in skin. Mitochondrial oxygen measurements by means of oxygen-dependent delayed fluorescence of protoporphyrin IX are shown to provide a robust basis for measurement of local oxygen disappearance rate (ODR). The fundamental principles behind the technology are described, together with an analysis method for retrievel of respirometry data. The feasibility and reproducibility of this clinically useful approach are demonstrated in a series of rats. 相似文献
10.
Photosystem I (PSI) is a reaction center
associated with oxygenic photosynthesis. Unlike the monomeric reaction centers in
green and purple bacteria, PSI forms trimeric
complexes in most cyanobacteria with a 3-fold rotational symmetry that is primarily
stabilized via adjacent PsaL subunits; however, in plants/algae, PSI is monomeric. In this study, we discovered a
tetrameric form of PSI in the thermophilic
cyanobacterium Chroococcidiopsis sp TS-821 (TS-821). In TS-821,
PSI forms tetrameric and dimeric species.
We investigated these species by Blue Native PAGE, Suc density gradient
centrifugation, 77K fluorescence, circular dichroism, and single-particle analysis.
Transmission electron microscopy analysis of native membranes confirms the presence
of the tetrameric PSI structure prior to
detergent solubilization. To investigate why TS-821 forms tetramers instead of
trimers, we cloned and analyzed its psaL gene. Interestingly, this
gene product contains a short insert between the second and third predicted
transmembrane helices. Phylogenetic analysis based on PsaL protein sequences shows
that TS-821 is closely related to heterocyst-forming cyanobacteria, some of which
also have a tetrameric form of PSI. These
results are discussed in light of chloroplast evolution, and we propose that PSI evolved stepwise from a trimeric form to
tetrameric oligomer en route to becoming monomeric in plants/algae. 相似文献