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柔嫩艾美耳球虫组蛋白去乙酰化酶2A基因的克隆表达及转录动态分析 被引量:1
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作者 左云云 马雪婷 +4 位作者 龚振兴 殷昊 刘保红 韩政岚 蔡建平 《畜牧与兽医》 北大核心 2016年第10期7-12,共6页
为研究柔嫩艾美耳球虫(Eimeria tenella)组蛋白去乙酰化酶2A(Et Sir2A)的生化功能及其对生活史发育的潜在调节作用,以柔嫩艾美耳球虫甘肃株为例,检测其在不同发育阶段表达量的差异。以基因组数据预测的编码序列为模板设计引物,采用RT-PC... 为研究柔嫩艾美耳球虫(Eimeria tenella)组蛋白去乙酰化酶2A(Et Sir2A)的生化功能及其对生活史发育的潜在调节作用,以柔嫩艾美耳球虫甘肃株为例,检测其在不同发育阶段表达量的差异。以基因组数据预测的编码序列为模板设计引物,采用RT-PCR的方法扩增得到Et Sir2A的全长ORF,构建p MAL-C2X-Et Sir2A重组表达质粒并进行原核表达;提取未孢子化卵囊、孢子化7h卵囊、孢子化卵囊、子孢子和第二代裂殖子5个发育阶段/时期的总RNA,采用qRT-PCR方法检测Et Sir2A的转录动态变化。测序结果显示,克隆的Et Sir2A ORF序列全长909 bp,编码302个氨基酸,并能在大肠杆菌原核系统中成功表达;qRT-PCR结果显示,Et Sir2A在不同发育阶段mRNA转录水平差异显著,在未孢子化卵囊阶段最高,第二代裂殖子阶段最低。结果为进一步研究Et Sir2A功能和开发新型抗球虫药物提供了数据基础。 展开更多
关键词 柔嫩艾美耳球虫 沉默信息调节因子2A 表达差异 QRT-PCR
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Copper nanowire/multi-walled carbon nanotube com- posites as all-nanowire flexible electrode for fast-charging/ discharging lithium-ion battery 被引量:2
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作者 zhenxing yin Sanghun Cho +3 位作者 Duck-Jae You Yong-keon Ahn Jeeyoung Yoo Youn Sang Kim 《Nano Research》 SCIE EI CAS CSCD 2018年第2期769-779,共11页
A novel lightweight three-dimensional (3D) composite anode for a fast-charging] discharging Li-ion battery (LIB) was fabricated entirely using one-dimensional (1D) nanomaterials, i.e., Cu nanowires (CuNWs) and... A novel lightweight three-dimensional (3D) composite anode for a fast-charging] discharging Li-ion battery (LIB) was fabricated entirely using one-dimensional (1D) nanomaterials, i.e., Cu nanowires (CuNWs) and multi-walled C nanotubes (MWCNTs). Because of the excellent electrical conductivity, high-aspect ratio structures, and large surface areas of these nanomaterials, the CuNW-MWCNT composite (CNMC) with 3D structure provides significant advantages regarding the transport pathways for both electrons and ions. As an advanced binder-free anode, a CuNW-MWCNT composite film with a controllable thickness (~ 600 prn) exhibited a considerably low sheet resistance, and internal cell resistance. Furthermore, the random CuNW network with 3D structure acting as a rigid framework not only prevented MWCNT shrinkage and expansion due to aggregation and swelling but also minimized the effect of the volume change during the charge/discharge process. Both a half cell and a full cell of LIBs with the CNMC anode exhibited high specific capacities and Coulombic efficiendes, even at a high current. More importantly, we for the first time overcame the limitation of MWCNTs as anode materials for fast-charging]discharging LIBs (both half cells and full cells) by employing CuNWs, and the resulting anode can be applied to flexible LIBs. This innovative anode structure can lead to the development of ultrafast chargeable LIBs for electric vehides. 展开更多
关键词 three-dimensional (3D)composite all-nanowire electrode fast chargeable batter3 fuN-cell Li-ion batteries(L1Bs) flexible battery
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