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91.
Patterns of molecular evolution associated with two selective sweeps in the Tb1-Dwarf8 region in maize 下载免费PDF全文
Camus-Kulandaivelu L Chevin LM Tollon-Cordet C Charcosset A Manicacci D Tenaillon MI 《Genetics》2008,180(2):1107-1121
We focused on a region encompassing a major maize domestication locus, Tb1, and a locus involved in the flowering time variation, Dwarf8 (D8), to investigate the consequences of two closely linked selective sweeps on nucleotide variation and gain some insights into maize geographical diffusion, through climate adaptation. First, we physically mapped D8 at approximately 300 kb 3' of Tb1. Second, we analyzed patterns of nucleotide variation at Tb1, D8, and seven short regions (400-700 bp) located in the Tb1-D8 region sequenced on a 40 maize inbred lines panel encompassing early-flowering temperate and late-flowering tropical lines. The pattern of polymorphism along the region is characterized by two valleys of depleted polymorphism while the region in between exhibits an appreciable amount of diversity. Our results reveal that a region approximately 100 kb upstream of the D8 gene exhibits hallmarks of divergent selection between temperate and tropical lines and is likely closer than the D8 gene to the target of selection for climate adaptation. Selection in the tropical lines appears more recent than in the temperate lines, suggesting an initial domestication of early-flowering maize. Simulation results indicate that the polymorphism pattern is consistent with two interfering selective sweeps at Tb1 and D8. 相似文献
92.
Vincent Oliéric Philippe Wolff Akiko Takeuchi Guillaume Bec Catherine Birck Marc Vitorino Bruno Kieffer Artemy Beniaminov Giorgio Cavigiolio Elizabeth Theil Christine Allmang Alain Krol Philippe Dumas 《Biochimie》2009
Selenocysteine (Sec) is co-translationally incorporated into selenoproteins at a reprogrammed UGA codon. In mammals, this requires a dedicated machinery comprising a stem-loop structure in the 3′ UTR RNA (the SECIS element) and the specific SECIS Binding Protein 2. In this report, disorder-prediction methods and several biophysical techniques showed that ca. 70% of the SBP2 sequence is disordered, whereas the RNA binding domain appears to be folded and functional. These results are consistent with a recent report on the role of the Hsp90 chaperone for the folding of SBP2 and other functionally unrelated proteins bearing an RNA binding domain homologous to SBP2. 相似文献
93.
Sabine Pereyre Pascal Sirand-Pugnet Laure Beven Alain Charron Hélène Renaudin Aurélien Barré Philippe Avenaud Daniel Jacob Arnaud Couloux Valérie Barbe Antoine de Daruvar Alain Blanchard Cécile Bébéar 《PLoS genetics》2009,5(10)
Mycoplasma hominis is an opportunistic human mycoplasma. Two other pathogenic human species, M. genitalium and Ureaplasma parvum, reside within the same natural niche as M. hominis: the urogenital tract. These three species have overlapping, but distinct, pathogenic roles. They have minimal genomes and, thus, reduced metabolic capabilities characterized by distinct energy-generating pathways. Analysis of the M. hominis PG21 genome sequence revealed that it is the second smallest genome among self-replicating free living organisms (665,445 bp, 537 coding sequences (CDSs)). Five clusters of genes were predicted to have undergone horizontal gene transfer (HGT) between M. hominis and the phylogenetically distant U. parvum species. We reconstructed M. hominis metabolic pathways from the predicted genes, with particular emphasis on energy-generating pathways. The Embden–Meyerhoff–Parnas pathway was incomplete, with a single enzyme absent. We identified the three proteins constituting the arginine dihydrolase pathway. This pathway was found essential to promote growth in vivo. The predicted presence of dimethylarginine dimethylaminohydrolase suggested that arginine catabolism is more complex than initially described. This enzyme may have been acquired by HGT from non-mollicute bacteria. Comparison of the three minimal mollicute genomes showed that 247 CDSs were common to all three genomes, whereas 220 CDSs were specific to M. hominis, 172 CDSs were specific to M. genitalium, and 280 CDSs were specific to U. parvum. Within these species-specific genes, two major sets of genes could be identified: one including genes involved in various energy-generating pathways, depending on the energy source used (glucose, urea, or arginine) and another involved in cytadherence and virulence. Therefore, a minimal mycoplasma cell, not including cytadherence and virulence-related genes, could be envisaged containing a core genome (247 genes), plus a set of genes required for providing energy. For M. hominis, this set would include 247+9 genes, resulting in a theoretical minimal genome of 256 genes. 相似文献
94.
Julie Orjuela François Sabot Sophie Chéron Yves Vigouroux Hélène Adam Harold Chrestin Kayode Sanni Mathias Lorieux Alain Ghesquière 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》2014,127(10):2211-2223
Key message
We present here the first curated collection of wild and cultivated African rice species. For that, we designed specific SNPs and were able to structure these very low diverse species.Abstract
Oryza glaberrima, the cultivated African rice, is endemic from Africa. This species and its direct ancestor, O. barthii, are valuable tool for improvement of Asian rice O. sativa in terms of abiotic and biotic stress resistance. However, only a few limited studies about the genetic diversity of these species were performed. In the present paper, and for the first time at such extend, we genotyped 279 O. glaberrima, selected both for their impact in current breeding and for their geographical distribution, and 101 O. barthii, chosen based on their geographic origin, using a set of 235 SNPs specifically designed for African rice diversity. Using those data, we were able to structure the individuals from our sample in three populations for O. barthii, related to geography, and two populations in O. glaberrima; these two last populations cannot be linked however to any currently phenotyped trait. Moreover, we were also able to identify misclassification in O. glaberrima as well as in O. barthii and identified new form of O. sativa from the set of African varieties. 相似文献95.
96.
Cyril Ribeyre Judith Lopes Jean-Baptiste Boul Aurle Piazza Aurore Gudin Virginia A. Zakian Jean-Louis Mergny Alain Nicolas 《PLoS genetics》2009,5(5)
In budding yeast, the Pif1 DNA helicase is involved in the maintenance of both nuclear and mitochondrial genomes, but its role in these processes is still poorly understood. Here, we provide evidence for a new Pif1 function by demonstrating that its absence promotes genetic instability of alleles of the G-rich human minisatellite CEB1 inserted in the Saccharomyces cerevisiae genome, but not of other tandem repeats. Inactivation of other DNA helicases, including Sgs1, had no effect on CEB1 stability. In vitro, we show that CEB1 repeats formed stable G-quadruplex (G4) secondary structures and the Pif1 protein unwinds these structures more efficiently than regular B-DNA. Finally, synthetic CEB1 arrays in which we mutated the potential G4-forming sequences were no longer destabilized in pif1Δ cells. Hence, we conclude that CEB1 instability in pif1Δ cells depends on the potential to form G-quadruplex structures, suggesting that Pif1 could play a role in the metabolism of G4-forming sequences. 相似文献
97.
A wide diversity of models have been proposed to account for the spiking response of central neurons, from the integrate-and-fire
(IF) model and its quadratic and exponential variants, to multiple-variable models such as the Izhikevich (IZ) model and the
well-known Hodgkin–Huxley (HH) type models. Such models can capture different aspects of the spiking response of neurons,
but there is few objective comparison of their performance. In this article, we provide such a comparison in the context of
well-defined stimulation protocols, including, for each cell, DC stimulation, and a series of excitatory conductance injections,
arising in the presence of synaptic background activity. We use the dynamic-clamp technique to characterize the response of
regular-spiking neurons from guinea-pig visual cortex by computing families of post-stimulus time histograms (PSTH), for different
stimulus intensities, and for two different background activities (low- and high-conductance states). The data obtained are
then used to fit different classes of models such as the IF, IZ, or HH types, which are constrained by the whole data set.
This analysis shows that HH models are generally more accurate to fit the series of experimental PSTH, but their performance
is almost equaled by much simpler models, such as the exponential or pulse-based IF models. Similar conclusions were also
reached by performing partial fitting of the data, and examining the ability of different models to predict responses that
were not used for the fitting. Although such results must be qualified by using more sophisticated stimulation protocols,
they suggest that nonlinear IF models can capture surprisingly well the response of cortical regular-spiking neurons and appear
as useful candidates for network simulations with conductance-based synaptic interactions. 相似文献
98.
Patrelle C Ohst T Picard D Pagano A Sourice S Dallay MG Plötner J 《Molecular ecology resources》2011,11(1):200-205
We describe a non‐invasive, PCR‐RFLP‐based method that allows reliable determination of the European water frog species Pelophylax lessonae and Pelophylax ridibundus and the hybrid form Pelophylax esculentus. Maximum‐likelihood analysis of ITS2 sequences revealed two robust monophyletic clades corresponding to water frogs of the P. lessonae and P. ridibundus groups. Three restriction enzymes (KpnI, HaeII, and SmaI) were used to digest three conserved ITS2 domains. Taxonomic identification was unambiguous; the three restriction enzymes gave the same results. A French reference sample was identified using allozyme electrophoresis. Our PCR‐RFLP method confirmed circa 83% of identification of the allozyme method. We conclude that the difference between identifications was caused by introgression. 相似文献
99.
100.
Dedicated Roles of Plastid Transketolases during the Early Onset
of Isoprenoid Biogenesis in Pepper Fruits 总被引:14,自引:1,他引:14 下载免费PDF全文
Florence Bouvier Alain d''Harlingue Claude Suire Ralph A. Backhaus Bilal Camara 《Plant physiology》1998,117(4):1423-1431
Isopentenyl diphosphate (IPP), which is produced from mevalonic acid or other nonmevalonic substrates, is the universal precursor of isoprenoids in nature. Despite the presence of several isoprenoid compounds in plastids, enzymes of the mevalonate pathway leading to IPP formation have never been isolated or identified to our knowledge. We now describe the characterization of two pepper (Capsicum annuum L.) cDNAs, CapTKT1 and CapTKT2, that encode transketolases having distinct and dedicated specificities. CapTKT1 is primarily involved in plastidial pentose phosphate and glycolytic cycle integration, whereas CapTKT2 initiates the synthesis of isoprenoids in plastids via the nonmevalonic acid pathway. From pyruvate and glyceraldehyde-3-phosphate, CapTKT2 catalyzes the formation of 1-deoxy-xylulose-5-phosphate, the IPP precursor. CapTKT1 is almost constitutively expressed during the chloroplast-to-chromoplast transition, whereas CapTKT2 is overexpressed during this period, probably to furnish the IPP necessary for increased carotenoid biosynthesis. Because deoxy-xylulose phosphate is shared by the plastid pathways of isoprenoid, thiamine (vitamin B1), and pyridoxine (vitamin B6) biosynthesis, our results may explain why albino phenotypes usually occur in thiamine-deficient plants. 相似文献