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Scenario Framework for ERP Testing and Training;SF-ETT
박광호,김호택,안윤지 한국경영정보학회 2007 한국경영정보학회 학술대회논문집 Vol.2007 No.-
Effective Training has been recognized as one of the most important success factors for enterprise resource planning (ERP) system operations. However, both ERP system vendors and user companies have failed to provide an effective training method for users because practical business process cases cannot be formalized. Also, incomplete testing by ERP system vendors results in insufficient and ineffective user training. This paper suggests a scenario framework for ERP testing and training (SF-ETT). SF-ETT is constructed by expanding the practice-based ERP testing scenario construction framework designed for uniERPII. SF-ETT contains concrete business process entities that users understand actually and provides practice definition, notation, and architecture.
Ashokraj Shanmugam,Arif Hasan Khan Robin,Senthil Kumar Thamilarasan,Harshavardhanan Vijayakumar,Sathishkumar Natarajan,김호택,박종인,노일섭 한국식물학회 2017 Journal of Plant Biology Vol.60 No.5
The Minichromosome maintenance protein [MCM(2-7)] complex is associated with helicase activity for replicationfork formation during DNA replication. We identified andcharacterized each 12 putative MCM genes from Brassicaoleracea and Brassica rapa. MCM genes were classified intonine groups according to their evolutionary relationships. Ahigh number of syntenic regions were present on chromosomesC03 and A03 in B. oleracea and B. rapa, respectively, comparedto the other chromosomes. Expression analysis showed thatmost of the MCM(2-7) helicase-subunit genes and their coregulatingMCM genes were upregulated during hydroxyurea(HU) induced stress in B. oleracea. In B. rapa, MCM(2-7)helicase genes BrMCM2_2, BrMCM7_1, BrMCM7_2 and theirco-regulating genes were upregulated during replicationstress. During cold stress, BoMCM6 in B. oleracea andBrMCM5 in B. rapa were remarkably upregulated. Duringsalt stress, BoMCM6_2, BoMCM7_1, BoMCM8, BoMCM9,and BoMCM10 were markedly upregulated in B. oleracea. Hence, our study identified the candidate MCM family genesthose possess abiotic stress-responsive behavior and DNAreplication stress tolerance. As the first genome-wide analysis ofMCM genes in B. oleracea and B. rapa, this work providesa foundation to develop stress responsive plants. Furtherfunctional and molecular studies on MCM genes will behelpful to enhance stress tolerance in plants.