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Genetic Diversity and DNA Barcoding of Yam Accessions from Southern Nigeria
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作者 George N. Ude David O. Igwe +13 位作者 Julian McCormick Onyinye Ozokonkwo-Alor jonathan harper Daniel Ballah Cecille Aninweze Obih Chosen Michael Okoro Christabel Ene Venatus Chieze Mariam Unachukwu Christie Onyia George Acquaah James Ogbonna Aditi Das 《American Journal of Plant Sciences》 2019年第1期179-207,共29页
Knowledge of genetic diversity and barcoding of yam is lacking in Enugu and Ebonyi States of southern Nigeria. Therefore, DNA barcoding was used to facilitate identification and biodiversity studies of yam species fro... Knowledge of genetic diversity and barcoding of yam is lacking in Enugu and Ebonyi States of southern Nigeria. Therefore, DNA barcoding was used to facilitate identification and biodiversity studies of yam species from Southern Nigeria. Seventy five yam accessions were collected from Enugu and Ebonyi States, including International Institute of Tropical Agriculture for DNA extraction and amplification using a chloroplast DNA (cpDNA) ribulose-1,5-bisphosphate carboxylase (rbcL) marker. There was high level of similarity among the accessions and presence of 534 conserved and 7 variable sites. A transversional mutation of G/T at a consensus position of 335 was identified followed by transitions at 362 (A/G), 368 (A/G), 371 (C/T) and 391 (C/T) within the accessions. Phylogeny resolved the yam accessions into ten major groups with their bootstrap values ranging from 0 - 100. Phylogenetic diversity was highest in group X, followed by VII, VI and IX. The inter-group genetic distance based on Kimura 2-parameter model ranged from 0.5000 ± 0.4770 - 5.0560 ± 2.5760, while the intra-group had 0.5250 ± 0.5000 - 2.0103 ± 1.2579. The mean genetic diversity within the entire population was 0.7970 ± 0.06910. BLAST analysis of total bit score, query coverage, and percentage identity were in the ranges of 411 - 1011, 99% - 100% and 97% - 100%, respectively. However, the rbcL could not resolve the yam accessions well following the comparative assessment of some discrepancies in the detected number of species from phylogenetic groupings, genetic diversity indices and NCBI BLAST hits, thereby, exposing the inefficiency of this marker in discriminating the yam accessions. It was demonstrated that rbcL is not an effective marker;therefore, it should not be recommended as a standard-alone marker of choice for DNA barcoding of yam accessions, especially, when accurate identification, discrimination and estimation of genetic diversity of this vital crop are of paramount importance for crop improvement and germplasm conservation. 展开更多
关键词 BLAST Kimura 2-Parameter PHYLOGENETIC Diversity RBCL Transitional Mutation
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如何实现高功率密度的工业电源
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作者 jonathan harper Michael Weirich Alfred Hesener 《世界电子元器件》 2009年第6期43-46,共4页
工业电源必需满足一些特殊的要求,如低功耗(以减轻机箱冷却方面的负担)、高功率密度(以减小空间要求)、高可靠性和高耐用性,以及其它在普通电源中不常见的特性,如易于并联、遥控和某些过载保护功能等。
关键词 高功率密度 工业电源 过载保护功能 高可靠性 低功耗 小空间 耐用性 并联
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选择正确的MOSFET:工程师所需要知道的
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作者 jonathan harper Enrique Rodriguez 《今日电子》 2007年第11期32-33,共2页
随着制造技术的发展和进步,系统设计人员必须跟上技术的发展步伐,才能为其设计挑选最合适的电子器件。MOSFET是电气系统中的基本部件,工程师需要深入了解它的关键特性及指标才能做出正确选择。本文将讨论如何根据RDS(ON)、热性能、雪... 随着制造技术的发展和进步,系统设计人员必须跟上技术的发展步伐,才能为其设计挑选最合适的电子器件。MOSFET是电气系统中的基本部件,工程师需要深入了解它的关键特性及指标才能做出正确选择。本文将讨论如何根据RDS(ON)、热性能、雪崩击穿电压及开关性能指标来选择正确的MOSFET。 展开更多
关键词 MOSFET 工程师 RDS(ON) 雪崩击穿电压 制造技术 设计人员 电气系统 电子器件
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电源模块设计考量及逆变器电机驱动的优化
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作者 jonathan harper 《变频器世界》 2020年第9期89-91,共3页
当今的电机驱动器使用变频器来控制电机的速度和转矩。使用变频器不仅可以提高在全速运行时的能效,而且进一步节能。智能功率模块(IPM)是用于可变速驱动器的一项赋能技术,把逆变器和内部驱动器集成在单个模块中。对于低功率工业三相交... 当今的电机驱动器使用变频器来控制电机的速度和转矩。使用变频器不仅可以提高在全速运行时的能效,而且进一步节能。智能功率模块(IPM)是用于可变速驱动器的一项赋能技术,把逆变器和内部驱动器集成在单个模块中。对于低功率工业三相交流输入应用,IPM模块和凝胶填充模块都已得到广泛使用。安森美半导体TMPIM系列可以将转移成型模块的使用范围扩大到更高的功率水平,还为工业电机驱动器的逆变器设计人员提供方便、紧凑、可靠的方案。 展开更多
关键词 变频器 智能功率模块 三相交流输入变频器逆变器制动(CIB)模块 安森美半导体 TMPIM
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