نتایج جستجو برای: genome analysis

تعداد نتایج: 2981438  

2003
Richard J. Roberts Marlene Belfort Timothy Bestor Ashok S. Bhagwat Thomas A. Bickle Jurate Bitinaite Robert M. Blumenthal Sergey Kh. Degtyarev David T. F. Dryden Kevin Dybvig Keith Firman Elizaveta S. Gromova Richard I. Gumport Stephen E. Halford Stanley Hattman Joseph Heitman David P. Hornby Arvydas Janulaitis Albert Jeltsch Jytte Josephsen Antal Kiss Todd R. Klaenhammer Ichizo Kobayashi Huimin Kong Detlev H. KruÈger Sanford Lacks Martin G. Marinus Michiko Miyahara Richard D. Morgan Noreen E. Murray Valakunja Nagaraja Andrzej Piekarowicz Alfred Pingoud Elisabeth Raleigh Desirazu N. Rao Norbert Reich Vladimir E. Repin Eric U. Selker Pang-Chui Shaw Daniel C. Stein Barry L. Stoddard Waclaw Szybalski Thomas A. Trautner James L. Van Etten Jorge M. B. Vitor Geoffrey G. Wilson Shuang-yong Xu

A nomenclature is described for restriction endonucleases, DNA methyltransferases, homing endonucleases and related genes and gene products. It provides explicit categories for the many different Type II enzymes now identi®ed and provides a system for naming the putative genes found by sequence analysis of microbial genomes.

MdMYB10 gene expression results in accumulation of anthocyanin in many tissues including flesh of applefruit. The MdMYB1 and MdMYBA genes are close homologues to MdMYB10 gene and both are responsiblefor red color phenotype in apple fruit skin. In the current study, an apple genome sequence draft analysisindicated that these three genes are located in a unique contig. Further a...

حیدری, محمد مهدی , خاتمی, مهری ,

Introduction: Long QT Syndrome is one of the arrhythmic disorders of the heart that causes sudden cardiac death in patients. Most of the investigations have focused on nuclear genome for finding genetic defects in these disorders, but some of the cases with LQTS cannot be explained by mutations of identified genes. It prompted the authors to focus on the mitochondrial DNA and monitor rearrangem...

A recently published article describing the draft genome of Erwiniamallotivora BT-Mardi (1), the causal pathogen of papaya dieback infection in Peninsular Malaysia, hassignificant potential to overcome and reduce the effect of this vulnerable crop (2). The authors found that the draft genome sequenceis approximately 4824 kbp and the G+C content of the genomewas 52-54%, which is very similarto t...

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