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海岛棉GbCO基因的克隆和表达分析 被引量:1
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作者 顾超 吕学辰 +2 位作者 张坤 崔百明 黄先忠 《新疆农业科学》 CAS CSCD 北大核心 2013年第2期214-222,共9页
[目的]海岛棉GbCO基因的克隆和表达分析。[方法]利用RT-PCR技术,从海岛棉中克隆CONSTANS(CO)的同源基因,利用实时荧光定量PCR(qRT-PCR)技术分析基因的组织表达。[结果]从新海14号花后9 d的纤维中克隆得到了一个棉花CO蛋白基因,命名为GbC... [目的]海岛棉GbCO基因的克隆和表达分析。[方法]利用RT-PCR技术,从海岛棉中克隆CONSTANS(CO)的同源基因,利用实时荧光定量PCR(qRT-PCR)技术分析基因的组织表达。[结果]从新海14号花后9 d的纤维中克隆得到了一个棉花CO蛋白基因,命名为GbCO。GbCO eDNA的ORF为1 008 bp,编码335个氨基酸。序列分析表明GbCO和GhCO的相似性只有78.2%,棉花CO蛋白同蓖麻RcCO、苹果MaCO等亲缘关系较为接近。qRT-PCR结果表明,GbCO基因在棉花的根、茎、叶、花瓣等组织中均有表达,但在叶片中的表达相对较高。并且GbCO在棉花胚珠及纤维发育的起始和伸长阶段都有表达,在开花前1 d和开花后5 d的胚珠中表达量很高。GbCO基因的表达受到光周期的调节,在夜间表达量高于白天。[结论]GbCO基因可能在陆地棉的开花发育中起着重要的作用。 展开更多
关键词 海岛棉 gbco基因 早花 基因克隆
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Ceramic Nanocrystalline Superconductor Gadolinium Barium Copper Oxide (GdBaCuO) at Different Treating Temperatures
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作者 V. S. Vinila Reenu Jacob +6 位作者 Anusha Mony Harikrishnan G. Nair Sheelakumari Issac Sam Rajan Anitha S. Nair D. J. Satheesh Jayakumari Isac 《Journal of Crystallization Process and Technology》 2014年第3期168-176,共9页
With the discovery of high-TC superconducting materials like Yttrium Barium Cupric Oxide, Bismuth Strontium Calcium Copper Oxide and Thallium Calcium Barium Copper Oxide, tremendous interest has developed over the pas... With the discovery of high-TC superconducting materials like Yttrium Barium Cupric Oxide, Bismuth Strontium Calcium Copper Oxide and Thallium Calcium Barium Copper Oxide, tremendous interest has developed over the past two years in understanding these materials as well as utilizing them in a variety of applications. The thin films of these materials are expected to play an important role in the area of microelectronics, especially for interconnects in integrated circuits, Josephson junctions, magnetic field sensors and optical detectors. Here, the authors designed a new nanocrystalline ceramic type II high-TC superconductor, Gadolinium Barium Copper Oxide (GdBaCuO/GBCO). The GBCO perovskite phase structure was prepared by the conventional solid state thermochemical reaction technique involving mixing, milling, calcination and sintering. In GBCO system, the method for controlling microstructure and superconducting state is related to oxygen content consideration because small changes in oxygen concentration can often?lead to huge change in Tc. In order to show the viability of the proposed method, super-conducting powder was prepared in special furnace. The sample was analyzed by X-Ray Diffraction (XRD), an indispensible non-destructive tool for structural materials characterization and quality control which makes use of the Debye-Scherrer method. The comparison of XRD results with JCPDS files confirmed the orthorhombic structure of the sample. Micro-structural features are studied using Scanning Electron Microscopy (SEM) which revealed that its particle size is in the nanometer range. It also confirmed the calculated value of particle size from Debye Scherrer’s formula. EDX plot shows the presence of all the constituents. X-ray instrumental peak broadening analysis was used to evaluate the size and lattice strain by the Williamson-Hall Plot method. 展开更多
关键词 GADOLINIUM BARIUM Copper Oxide (gbco) NANOCRYSTALLINE XRD SEM EDX DEBYE Scherrer’s Formula Instrumental Broadening Williamson-Hall Plot Method
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