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| 1 | Some results of modeling D-D seismogenic pattern by the fracture model experiment of large-scale rock samples(1)显示文摘 | Yang Quanlu Jia Liuzhao Jia Dongqian | | 0,,02: | 1 |
| 2 | 显示文摘 | Li Quanlu | 2002 | The Journal of the Acoustical Society of America2002,111,2: | 1 |
| 3 | Reinforcement of polyurethane/epoxy inter-penetrating network nanocomposites with an organically modified palygorskite显示文摘 | Ziqiang Lei Quanlu Yang Shang Wu | 2009 | Journal of Applied Polymer Science2009,,111: | 1 |
| 4 | 显示文摘 | Gou Quanlu | 1998 | Radiation Protection Dosimetry1998,76,4: | 1 |
| 5 | Transportation: meeting the dual challenges of achieving energy security and reducing greenhouse gas emissions显示文摘 | Michael Quanlu Wang Hong Huo | 2009 | Frontiers of Energy and Power Engineering in China2009,,2: | 1 |
| 6 | Numerical Analysis of a New- style Ultrasonic Linear Array显示文摘 | Wang Yong LI Quanlu | 2011 | Applied Mechanics and Materials2011,60,: | 1 |
| 7 | Human circulating microRNA-1 and microRNA-126 as potential novel indicators for acute myocardial infarction显示文摘 | Guangwen Long Feng Wang Quanlu Duan | 2012 | International Journal biological Sciences2012,8,6: | 1 |
| 8 | Classification, preparation process and its equipment and applications of piezoelectric ceramic显示文摘The so-called piezoelectric ceramics are piezoelectric polycrystals, a functional ceramic material capable of converting mechanical energy and electric energy from each other. It belongs to inorganic nonmetallic materials. So far, the most widely used piezoelectric ceramic materials have both good piezoelectricity and ferroelectricity through the substitution and doping in a wide range to adjust its properties to meet the different needs of zirconium titanium lead (PZT) and its composite materials. Piezoelectric materials are also one of the many piezoelectric materials, accounting for about 1/3 of the entire functional ceramic materials. It is mainly used for transducers, sensors, resonators and drives. | Quanlu Zhao Juntao Zhao Xiangfeng Tan | 2019 | Materials Physics and Chemistry2019,1,1: | 0 |
| 9 | Improved pinene production in a recombinant yeast by fusion linker optimization and chaperon coexpression显示文摘Pinene is an active natural monoterpene from plants and has important applications in favorings,fragrances,and pesticides.Especially,pinene dimers are regarded as renewable fuels with high density.However,the microbial pinene production was limited by the low activity pinene synthase.In this study,the pinene synthase activity was improved by fusion linker optimization and chaperon coexpression.To construct the pinene pathway in Saccharomyces cerevisiae,YPL062W gene was deleted to increase the MVA pathway precursor acetyl-CoA.Truncated 3-hydroxyl-3-methylglutaryl-CoA reductase(tHMG1),isopentenyl-diphosphate isomerase(IDI1),and farnesyl diphosphate synthase mutant(ERG20F96W−N127W)were then integrated to improve the GPP pool.Pinene synthase tPt1 was expressed in the constructed engineered yeast,and the titer of pinene reached 0.166 mg/L.GPP is the direct precursor of pinene,ERG20ww and tPt1 were fused by diferent linkers and orders to improve the accessibility of GPP.Pinene titer reached 9.94 mg/L by fusion these proteins in the order of ERG20ww and tPt1 and with a fexible linker(G)8.After that,several chaperons were coexpressed and the chaperon Sil1p improved the pinene titer to 10.2 mg/L with a yield of 1.63 mg/L·OD600.The results presented here provide novel information on the applications of protein fusion and protein chaperons in microbial pinene production. | Quanlu Ren Yaxi He Xinyao Lu Hong Zong Bin Zhuge | 2022 | Systems Microbiology and Biomanufacturing2022,2,1: | 0 |
| 10 | Breeding and Cultivation Techniques for New Edible Orange-Fleshed Sweet Potato Variety Nanshu 012显示文摘The carotenoid in sweet potato has a high health value for the human body,and Harvest Plus has also carried out the breeding to improve the nutritional quality of sweet potatoes in order to address the health problems of people nutrient-deficient areas.Nanshu 012 is a new high-quality orange-fleshed sweet potato variety rich in carotenoid,bred by Nanchong Academy of Agricultural Sciences from the ' Boga × Sanheshu' hybrid.In the regional test of sweet potato varieties in Sichuan Province during 2009-2010,the average fresh potato yield was 24600 kg/ha,the average dry matter percentage was 29.0 % and the average preserved sweet potato yield was 7152.0 kg/ha;in the production test,the average fresh potato yield was 28410.0 kg/ha and the average preserved sweet potato yield was 8734.5 kg/ha.The multi-point sampling analysis showed that the total sugar content of fresh potato was 5.28 %,protein content was 1.43 %,vitamin C content was 28.9 mg/100 g and carotenoid content was 5.21 mg/100 g.This variety was identified by Sichuan Crop Variety Approval Committee in March 2012,with high fresh potato yield,sweetness,rich carotenoid and resistance to black spot.It is an orange-fleshed sweet potato variety suitable for eating and food processing,and it should be planted in the plot with moderate fertility or above,and should be planted and harvested as early as possible. | Mingshuang TANG Lisha LIU Quanlu ZHOU Yingdong HUANG Sulan HE Sheng LI Dongbo LI Hongqing ZHU Mei WANG Yujuan ZHANG Yuming LI | 2017 | Asian Agricultural Research2017,9,8: | 0 |