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12篇 您的检索式:作者名="DARZENTAS"
    题名 作者 年代 出处 被引量
1PuReD-MCL:a graph -based PubMed document clustering methodology显示文摘Theodosiou T Darzentas N Angelis L 2008Bioinformatics(S1367-4803)2008,24,17:1
2Beyond specifications: towards a practical methodology for evaluating web accessibility显示文摘Koutsabasis P Vlachogiannis E Darzentas J S 2010Journal of Usability Studies2010,5,4:1
3A Discrete Location Model with Fuzzy Accessibility Measures 显示文摘DARZENTAS J 1987Fuzzy Sets and Systems1987,23,1:1
4Is there a role for antigen selection in mantle cell lympho-ma? Immunogenetic support from a series of 807 cases 显示文摘HADZIDIMITRIOU A AGATHANGELIDIS A DARZENTAS N 2011BW2011,118,11:1
5Freemovers followers and others:A reconsideration of headway distributions显示文摘Ovuworie G C Darzentas J McDowell M R C Traffic Engineering and Control0,28,89:1
6Analysis of xyloglucan endotransglyeosylase/hydrolase (XTH) genes from allotetraploid ( Gossypium hirsuturn) cotton and its diploid progenitors expressed during fiber elongation 显示文摘Michailidis G Argiriou A Darzentas N 2009Journal of Plant Physiology2009,166,4:1
7Free movers,followers and others:a reconsideration of headway distributions显示文摘OVUWORIE G DARZENTAS J MCDOWELL M R C 0,,08:1
8Stereotyped B-cell receptors in one-third of chronic lymphocytic leukemia:a molecular classification with implications for targeted therapies显示文摘Agathangelidis A Darzentas N Hadzidimitriou A 2012{H}Blood2012,,19:1
9Over 30% of pa?tients with splenic marginal zone lymphoma expressthe same immu?noglobulin heavy variable gene: ontogenetic implications 显示文摘Bikos V Darzentas N Hadzidimitriou A 2012Leu?kemia2012,26,7:1
10Stereotyped patterns of somatic hypermutation in subsets of patients with chronic lymphocytic leukemia: implications for the role of antigen selection in leukemogenesis 显示文摘Murray F Darzentas N Hadzidimitriou A 2008Blood2008,111,3:1
11Analysis of xyloglucan endotransglycosylase/hydrolase (XTH) genes from allotetraploid (Gossypium hirsutum) cotton and its diploid progenitors expressed during fiber elongation 显示文摘MICHAILIDIS G ARGIRIOU A DARZENTAS N 2009Journal of Plant Physiology2009,166,4:1
12Gene capture by transposable elements leads to epigenetic conflict in maize显示文摘Transposable elements(TEs)regularly capture fragments of genes.When the host silences these TEs,siRNAs homologous to the captured regions may also target the genes.This epigenetic crosstalk establishes an intragenomic conflict:silencing the TEs has the cost of silencing the genes.If genes are important,however,natural selection may maintain function by moderating the silencing response,which may also advantage the TEs.In this study,we examined this model by focusing on Helitrons,Pack-MULEs,and Sirevirus LTR retrotransposons in the maize genome.We documented 1263 TEs containing exon fragments from 1629 donor genes.Consistent with epigenetic conflict,donor genes mapped more siRNAs and were more methylated than genes with no evidence of capture.However,these patterns differed between syntelog versus translocated donor genes.Syntelogs appeared to maintain function,as measured by gene expression,consistent with moderation of silencing for functionally important genes.Epigenetic marks did not spread beyond their captured regions and 24nt crosstalk siRNAs were linked with CHH methylation.Translocated genes,in contrast,bore the signature of silencing.They were highly methylated and less expressed,but also overrepresented among donor genes and located away from chromosomal arms,which suggests a link between capture and gene movement.Splitting genes into potential functional categories based on evolutionary constraint supported the synteny-based findings.TE families captured genes in different ways,but the evidence for their advantage was generally less obvious;nevertheless,TEs with captured fragments were older,mapped fewer siRNAs,and were slightly less methylated than TEs without captured fragments.Collectively,our results argue that TE capture triggers an intragenomic conflict that may not affect the function of important genes but may lead to the pseudogenization of less-constrained genes.Aline Muyle Danelle Seymour Nikos Darzentas Elias Primetis Brandon S.Gaut Alexandros Bousios 2021Molecular Plant2021,14,2:0
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