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131.
Cookie‐cutter shark Isistius spp. predation upon different tuna species from the south‐western Atlantic Ocean
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Y. V. Niella L. A. G. Duarte V. R. Bandeira O. Crespo D. Beare F. H. V. Hazin 《Journal of fish biology》2018,92(4):1082-1089
The predation of cookie‐cutter sharks Isistius spp. upon the early life stages of yellowfin tuna Thunnus albacares, skipjack tuna Katsuwonus pelamis and little tunny Euthynnus alletteratus are described. New evidence suggesting a connection between commercial fishing and predation by Isistius sp. is presented, with these sharks biting tunas hooked in surface waters during daylight. The healing patterns of the wounds made by the sharks are described in detail and, although such damage is known to negatively influence market price elsewhere, it is not the case on the south‐east Brazilian coast. 相似文献
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Joost Willebrords Michaël Maes Isabel Veloso Alves Pereira Tereza Cristina da Silva Veronica Mollica Govoni Valéria Veras Lopes Sara Crespo Yanguas Valery I. Shestopalov Marina Sayuri Nogueira Inar Alves de Castro Anwar Farhood Inge Mannaerts Leo van Grunsven Jephte Akakpo Margitta Lebofsky Hartmut Jaeschke Bruno Cogliati Mathieu Vinken 《生物化学与生物物理学报:疾病的分子基础》2018,1864(3):819-830
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135.
Electron Transport Controls Glutamine Synthetase Activity in the Facultative Heterotrophic Cyanobacterium Synechocystis sp. PCC 6803
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Glutamine synthetase (GS) from Synechocystis sp. PCC 6803 was inactivated in vivo by transferring cells from light to darkness or by incubation with the photosynthetic inhibitor 3-(3,4-dichlorophenyl)-1,1-dimethylurea but not with 2,5-dibromo-3-methyl-6-isopropyl-p-benzoquinone. Addition of glucose prevented both dark and 3-(3,4-dichlorophenyl)-1,1-dimethylurea GS inactivation. In a Synechocystis psbE-psbF mutant (T1297) lacking photosystem II, glucose was required to maintain active GS, even in the light. However, in nitrogen-starved T1297 cells the removal of glucose did not affect GS activity. The fact that dark-inactivated GS was reactivated in vitro by the same treatments that reactivate the ammonium-inactivated GS points out that both nitrogen metabolism and redox state of the cells lead to the same molecular regulatory mechanism in the control of GS activity. Using GS antibodies we detected that dark-inactivated GS displayed a different electrophoretic migration with respect to the active form in nondenaturing polyacrylamide gel electrophoresis but not in sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The possible pathway to modulate GS activity by the electron transport flow in Synechocystis cells is discussed. 相似文献
136.
Molecular phylogenetics at the population/species interface in cave spiders of the southern Appalachians (Araneae:Nesticidae:Nesticus) 总被引:5,自引:0,他引:5
This paper focuses on the relationship between population genetic structure
and speciation mechanisms in a monophyletic species group of Appalachian
cave spiders (Nesticus). Using mtDNA sequence data gathered from 256
individuals, I analyzed patterns of genetic variation within and between
populations for three pairs of closely related sister species. Each
sister-pair comparison involves taxa with differing distributional and
ecological attributes; if these ecological attributes are reflected in
basic demographic differences, then speciation might proceed differently
across these sister taxa comparisons. Both frequency-based and gene tree
analyses reveal that the genetic structure of the Nesticus species studied
is characterized by similar and essentially complete population
subdivision, regardless of differences in general ecology. These findings
contrast with results of prior genetic studies of cave-dwelling arthropods
that have typically revealed variation in population structure
corresponding to differences in general ecology. Species fragmentation
through both extrinsic and intrinsic evolutionary forces has resulted in
discrete, perhaps independent, populations within morphologically defined
species. Large sequence divergence values observed between populations
suggest that this independence may extend well into the past. These
patterns of mtDNA genealogical structure and divergence imply that species
as morphological lineages are currently more inclusive than basal
evolutionary or phylogenetic units, a suggestion that has important
implications for the study of speciation mechanisms.
相似文献
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Maria D Crespo Geoffrey W Platt Roger Bofill Mark S Searle 《European journal of biochemistry》2004,271(22):4474-4484
Substitution of trans-proline at three positions in ubiquitin (residues 19, 37 and 38) produces significant context-dependent effects on protein stability (both stabilizing and destabilizing) that reflect changes to a combination of parameters including backbone flexibility, hydrophobic interactions, solvent accessibility to polar groups and intrinsic backbone conformational preferences. Kinetic analysis of the wild-type yeast protein reveals a predominant fast-folding phase which conforms to an apparent two-state folding model. Temperature-dependent studies of the refolding rate reveal thermodynamic details of the nature of the transition state for folding consistent with hydrophobic collapse providing the overall driving force. Br?nsted analysis of the refolding and unfolding rates of a family of mutants with a variety of side chain substitutions for P37 and P38 reveals that the two prolines, which are located in a surface loop adjacent to the C terminus of the main alpha-helix (residues 24-33), are not significantly structured in the transition state for folding and appear to be consolidated into the native structure only late in the folding process. We draw a similar conclusion regarding position 19 in the loop connecting the N-terminal beta-hairpin to the main alpha-helix. The proline residues of ubiquitin are passive spectators in the folding process, but influence protein stability in a variety of ways. 相似文献
139.
Plant growth‐promoting Burkholderia species isolated from annual ryegrass in Portuguese soils
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