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To test ecological niche theory, this study investigated the spatial patterns and the environmental niches of native and non-native fishes within the invaded Great Fish River system, South Africa. For the native fishes, there were contrasting environmental niche breadths that varied from being small to being large and overlapped for most species, except minnows that were restricted to headwater tributaries. In addition, there was high niche overlap in habitat association among fishes with similar distribution. It was therefore inferred that habitat filtering-driven spatial organisation was important in explaining native species distribution patterns. In comparison, most non-native fishes were found to have broad environmental niches and these fishes showed high tolerance to environmental conditions, which generally supported the niche opportunity hypothesis. The proliferation of multiple non-native fishes in the mainstem section suggest that they form a functional assemblage that is probably facilitated by the anthropogenic modification of flow regimes through inter-basin water transfer. Based on the distribution patterns observed in the study, it was inferred that there was a likelihood of negative interactions between native and non-native fishes. Such effects are likely to be exacerbated by altered flow regime that was likely to have negative implications for native ichthyofauna. 相似文献
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Laura Martínez-álvarez Carolina Pi?a-Vázquez Wilbert Zarco Luis Padilla-Noriega 《Memórias do Instituto Oswaldo Cruz》2013,108(4):421-428
A hallmark of group/species A rotavirus (RVA) replication in MA-104
cells is the logarithmic increase in viral mRNAs that occurs four-12 h
post-infection. Viral protein synthesis typically lags closely behind mRNA
synthesis but continues after mRNA levels plateau. However, RVA non-structural
protein 1 (NSP1) is present at very low levels throughout viral replication
despite showing robust protein synthesis. NSP1 has the contrasting properties of
being susceptible to proteasomal degradation, but being stabilised against
proteasomal degradation by viral proteins and/or viral mRNAs. We aimed to
determine the kinetics of the accumulation and intracellular distribution of
NSP1 in MA-104 cells infected with rhesus rotavirus (RRV). NSP1 preferentially
localises to the perinuclear region of the cytoplasm of infected cells, forming
abundant granules that are heterogeneous in size. Late in infection, large NSP1
granules predominate, coincident with a shift from low to high NSP1 expression
levels. Our results indicate that rotavirus NSP1 is a late viral protein in
MA-104 cells infected with RRV, presumably as a result of altered protein
turnover. 相似文献
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Raymond van der Ham Gijs Grob Wilbert Hetterscheid Wim Star Bertie Joan van Heuven 《Grana》2013,52(4):252-265
A strict consensus tree based on chloroplast and nuclear sequences (rbcL, matK, trnL, FLint2) from 46 Amorphophallus species, two Pseudodracontium species and six outgroups is used to develop a hypothesis for the evolution of ornamentation and ectexine ultrastructure in the pollen of Amorphophallus. There are four main clades: an exclusively African, largely psilate clade (‘African clade’), an Asian, largely psilate clade (‘Asian psilate clade’) and an Asian, largely striate clade consisting of a mainly continental SE Asian clade (‘continental SE Asian striate clade’) and one centred in Malesia (‘Malesian striate clade’). Ultrastructure provides a valuable contribution towards understanding pollen ornamentation in Amorphophallus. Pollen with a thin psilate ectexine without dark granules might be plesiomorphic in Amorphophallus. Then the diverse striate type would be derived. Within both striate clades, reversals to the psilate type occur. Striate pollen with psilate caps, which is nested in the continental SE Asian striate clade, is a synapomorphy of Pseudodracontium. The fossulate type is also diverse, and its distribution in the tree indicates a polyphyletic origin. Areolate, echinate and verrucate ornamentation, occur in single species in the tree, but are found also in species not included in the molecular analysis. All three are heterogeneous and probably polyphyletic too. Reticulate, scabrate and striate/scabrate ornamentation are autapomorphies, of which the reticulate type and the striate/scabrate type may derive from psilate and striate ornamentation, respectively. Of the four main clades, the Asian psilate and African clade seem to be basal, while both striate clades might have evolved from the Asian psilate clade via a species like A. rhizomatosus. Dark granules evolved more than once, which might explain their diverse size, shape and distribution. 相似文献
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Wilbert T. Kadye Albert Chakona Lightone T. Marufu Tendai Samukange 《Hydrobiologia》2013,720(1):75-88
Non-native trout species have been associated with many negative effects in receiving ecosystems. The first aim of this study was to determine the impact of non-native rainbow trout Oncorhynchus mykiss on distribution and abundance of native mountain catfish Amphilius uranoscopus within Afro-montane streams in Nyanga Mountains, eastern Zimbabwe. The second aim was to compare macro-invertebrate community responses to the presence of the trout and the catfish. We examined trout impact on catfish’s habitat associations, whereas macro-invertebrate composition was compared using open fish and fish exclosure experiments in habitats with and without trout. Trout influenced both the distribution and abundance of the catfish that occupied shallow reaches possibly to avoid predation from trout that occurred in the deeper habitats. Within trout invaded reaches, most macro-invertebrate taxa were more abundant in exclosure than open treatments. By contrast, within trout-free reaches, most macro-invertebrates either did not differ between treatments or were generally more abundant in open than exclosure treatments. This suggests that the macro-invertebrate communities responded differently within invaded and non-invaded reaches. By influencing distribution and abundance of native biota, non-native rainbow trout may have wider ecological effects, such as influencing trophic interrelationships within invaded habitats. 相似文献
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Hisham Mohammed Clive D’Santos Aurelien A. Serandour H. Raza Ali Gordon D. Brown Alan Atkins Oscar M. Rueda Kelly A. Holmes Vasiliki Theodorou Jessica L.L. Robinson Wilbert Zwart Amel Saadi Caryn S. Ross-Innes Suet-Feung Chin Suraj Menon John Stingl Carlo Palmieri Carlos Caldas Jason S. Carroll 《Cell reports》2013,3(2):342-349
Highlights? A proteomic method identifies protein-protein interaction in primary tumors ? GREB1 is the top estrogen-induced ER-interacting protein ? GREB1 is an essential ER cofactor recruited to chromatin ? GREB1 is an independent prognostic marker 相似文献
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Ecological niche theory predicts that coexistence is facilitated by resource partitioning mechanisms that are influenced by abiotic and biotic interactions. Alternative hypotheses suggest that under certain conditions, species may become phenotypically similar and functionally equivalent, which invokes the possibility of other mechanisms, such as habitat filtering processes. To test these hypotheses, we examined the coexistence of the giant redfin Pseudobarbus skeltoni, a newly described freshwater fish, together with its congener Pseudobabus burchelli and an anabantid Sandelia capensis by assessing their scenopoetic and bionomic patterns. We found high habitat and isotope niche overlaps between the two redfins, rendering niche partitioning a less plausible sole mechanism that drives their coexistence. By comparison, environment–trait relationships revealed differences in species–environment relationships, making habitat filtering and functional equivalence less likely alternatives. Based on P. skeltoni's high habitat niche overlap with other species, and its large isotope niche width, we inferred the likelihood of differential resource utilization at trophic level as an alternative mechanism that distinguished it from its congener. In comparison, its congener P. burchelli appeared to have a relatively small trophic niche, suggesting that its trophic niche was more conserved despite being the most abundant species. By contrast, S. capensis was distinguished by occupying a higher trophic position and by having a trophic niche that had a low probability of overlapping onto those of redfins. Therefore, trophic niche partitioning appeared to influence the coexistence between S. capensis and redfins. This study suggests that coexistence of these fishes appears to be promoted by their differences in niche adaptation mechanisms that are probably shaped by historic evolutionary and ecological processes. 相似文献
20.
Dr. Hubert Wilbert 《Zoomorphology》1961,50(5):576-615
Zusammenfassung Die Arbeit verzichtet bewußt auf empirische Beweise jeder Art, weil sie sich mit Vorgängen befaßt, die sich über lange Zeit erstrecken und deshalb der Beobachtung und dem Experiment einstweilen nicht zugänglich sind. Alle derartigen Versuche konnen bisher nicht überzeugen.Regulation der Populationsdichte liegt vor, wenn es irgendwelche endlichen Grenzen gibt, die vor ihr auf die Dauer nicht über- bzw. unterschritten werden. Da die Populationsdichte die auf sie ausgeübten Einflüsse im Laufe der Zeit summiert bzw. multipliziert, vermögen Zufallsfaktoren die Einhaltung solcher Grenzen nicht zu garantieren. Die Wetterereignisse konnen in ihrem zeitlichen Ablauf in periodischer und eventuell auch in aperiodischer Art von der Zufallserwartung abweichen, ohne dadurch aber die Überschreitung der Grenzen durch wetterbedingten Massenwechsel zu verhindern oder wesentlich zu verzögern. Auch das Zusammenw-irken mehrerer dichteunabhängiger Faktoren führt nicht zur Regulation.Wanderungen von Insekten können nur darn regulierend wirken, wenn sie in Abhängigkeit vor der Populationsdichte auftreten. Der regulierende Einfluß schützender Stellen im Biotop ist eine Folge intraspezifischer Konkurrenz. Änderungen in der Häufigkeit vor Genen oder Genanordnungen, welche eventuell mit dem Massenwechsel verbunden sind, können ebenfalls höchstens dann eine regulierende Wirkung haben, wenn sie dichteabhängig erfolgen.Alle dichteabhängigen Faktoren werden nicht nur vor der Populationsdichte, sondern auch vor anderen (diehteunabhängigen) Umweltkomponenten beeinflußt. Trotzdem ist die Dichteabhängigkeit das einzig mögliche regulierende Prinzip. Das Begriffssystem der Kybernetik gestattet eine eindeutige Beschreibung der Regulationsvorgänge. Dabei zeigt es sich, daß die Einhaltung irgendwelcher endlichen Dichtegrenzen und die Bestimmung der mittleren Populationsdichte zwei zwar zusammengehörige, aber wesensmäßig verschiedene Prozesse sind. Dichteunabhängige Faktoren (vor allem das Wetter) wirken einerseits als Führungsgröße, andererseits als kausales Agens für die Störgröße, dichteabhängige, vor allem die intraspezifische Konkurrenz, als Regler.Zur Beseitigung der bestehenden begrifflichen Schwierigkeiten wird vorgeschlagen, die Bezeichnung Regulation auf den Vorgang im Regelkreis (Populationsdichte — dichteabhängiger Faktor — dichteabhängige Sterblichkeit und Fruchtbarkeit - Populationsdichte) zu beschränken und die Festlegung der mittleren Populationsdichte als Determination zu bezeichnen. Das Wetter ist kein Regulations-, sondern ein Massenwechselfaktor, das Klima dagegen ist ein Determinationsfaktor.Die bisherigen Meinungsverschiedenheiten haben außer Mißverständnissen hauptsächlich drei Ursachen: 1. die ungenügende begriffliche Trennung zwischen Massenwechsel und Regulation, 2. ungenaue Vorstellungen über die Auswirkung dichteunabhängiger Faktoren, 3. fehlende Unterscheidung zwischen Regulation und Determination. 相似文献