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| 1 | Identity Based Encryption and Biometric Authentication Scheme for Secure Data Access in Cloud Computing显示文摘 | CHENG Hongbing RONG Chunming TAN Zhenghua ZENG Qingkai | 2012 | Chinese Journal of Electronics2012,21,2: | 10 |
| 2 | Genome of a citrus rootstock and global DNA demethylation caused by heterografting显示文摘Grafting is an ancient technique used for plant propagation and improvement in horticultural crops for at least 1,500 years.Citrus plants,with a seed-to-seed cycle of 5–15 years,are among the fruit crops that were probably domesticated by grafting.Poncirus trifoliata,a widely used citrus rootstock,can promote early flowering,strengthen stress tolerance,and improve fruit quality via scion–rootstock interactions.Here,we report its genome assembly using PacBio sequencing.We obtained a final genome of 303 Mb with a contig N50 size of 1.17Mb and annotated 25,680 protein-coding genes.DNA methylome and transcriptome analyses indicated that the strong adaptability of P.trifoliata is likely attributable to its special epigenetic modification and expression pattern of resistance-related genes.Heterografting by using sweet orange as scion and P.trifoliata as rootstock and autografting using sweet orange as both scion and rootstock were performed to investigate the genetic effects of the rootstock.Single-base methylome analysis indicated that P.trifoliata as a rootstock caused DNA demethylation and a reduction in 24-nt small RNAs(sRNAs)in scions compared to the level observed with autografting,implying the involvement of sRNA-mediated graft-transmissible epigenetic modifications in citrus grafting.Taken together,the assembled genome for the citrus rootstock and the analysis of graft-induced epigenetic modifications provide global insights into the genetic effects of rootstock–scion interactions and grafting biology. | Yue Huang Yuantao Xu Xiaolin Jiang Huiwen Yu Huihui Jia Chunming Tan Gang Hu Yibo Hu Muhammad Junaid Rao Xiuxin Deng Qiang Xu | 2021 | Horticulture Research2021,8,1: | 4 |
| 3 | Digital Proxy Blind Signature Schemes Based on DLP and ECDLP显示文摘 | Tan Zuowen Liu Zhuojun Tang Chunming | 2002 | MM Research Preprints2002,,21: | 1 |
| 4 | Digital Proxy Blind Signature Schemes Based on DLP and ECDLP显示文摘 | Tan Zuowen Liu Zhuojun Tang Chunming | 2002 | MM Resarch Pre-prints2002,,21: | 1 |
| 5 | Digital proxy blind signature schemes based on DLP and ECDLP 显示文摘 | Zuowen Tan Zhuojun Liu Chunming Tang | | MM Research Preprints0,2002,: | 1 |
| 6 | Digital proxy blind signature schemes based on DLP and ECDLP 显示文摘 | TAN ZUOWEN LIU ZHUOJUN TANG CHUNMING | 2002 | MM Research Preprints2002,21,7: | 1 |
| 7 | Digital proxy blind signature schemes based on DLP and ECDLP显示文摘 | Tan Zhuowen Liu Zuojun Tang Chunming | 2002 | M M Research Preprints2002,21,7: | 1 |
| 8 | Digital proxy blind signature schemes based on DLP and ECDLP显示文摘 | Tan Zuowen Liu Zhuojun Tang Chunming | 2002 | MM Research Preprints2002,21,7: | 1 |
| 9 | Digital proxy blind signature schemes based on DLP and ECDLP显示文摘 | TAN ZUOWEN LIN ZHOUJUN TANG CHUNMING | 2002 | MM Research Preprints2002,21,7: | 1 |
| 10 | FRICTION AND WEAR BEHAVIOUR OF SINTERED BRASS显示文摘FRICTIONANDWEARBEHAVIOUROFSINTEREDBRASSFRICTIONANDWEARBEHAVIOUROFSINTEREDBRASS¥LiXibin;TanLinying;SuChunming;LiMeiying(Powder... | Li Xibin Tan Linying Su Chunming Li Meiying(Powder Metallurgy Research Institute, Central South University of Technology, Changsha, 410083, China) | 1994 | Journal of Central South University1994,6,1: | 0 |
| 11 | Analysis of tight oil accumulation conditions and prediction of sweet spots in Ordos Basin: A case study显示文摘Tight sandstone reservoirs are widely developed in the Mesozoic Yanchang Formation of the Ordos Basin,China.There is a lack of understanding on the sedimentary setting,source-reservoir relationship and oil accumulation conditions in this area.In this study,through the comprehensive analysis of the distri-bution of tight oil,we evaluated the properties and petrological features of reservoir,geochemical characteristics of source rocks,the source-reservoir relationship,as well as the trapping,preservation and accumulation conditions of tight oil in the Chang 7 Member,and predicted the sweet spots of tight oil in the study area.The results show that the Chang 7 Member is a typical low-porosity and ultra-low permeability reservoir with great tightness,small pore throat and high capillary pressure,and must have been of near-source accumulation.The source rocks are mainly developed in the Chang 7_(3) submember,and the reservoirs mainly occur in the Chang 7_(1) and Chang 7_(2) submembers,forming a combination mode of“lower source rock and upper reservoir”.Sandbodies with good connectivity and fractures being well developed in local areas are the main hydrocarbon transport systems.The abnormal high pressure caused by hydrocarbon generation and pressurization is the main driving force of tight oil accumulation.The mode of hydrocarbon transportation is dominated by the vertical or lateral migration from under-lying source rocks or adjacent source rocks to reservoirs within a short distance.Following the integrated evaluation of lithology,physical properties and oil saturation of reservoirs and geochemical character-istics of source rocks,we grouped the sweet spots of Chang 7 Member into three types:Type I,Type II and Type III.Among others,the Type I sweet spots are the best in terms of porosity,permeability and source rock thickness and hydrocarbon enrichment which should be the focus of oilfield development.This study lays an important foundation for the economic and efficient development of tight oil in the Chang 7 Member of Heshui area,and has important implications on tight sandstone reservoirs in other regions of Ordos Basin in China. | Ying Tang Shihao Tan Ruifei Wang Hao Wang Chunming Xia Kaiyun Chen | 2022 | Energy Geoscience2022,3,4: | 0 |
| 12 | Weizmannia coagulans:an ideal probiotic for gut health显示文摘Weizmannia coagulans(formerly Bacillus coagulans)is a spore-forming and lactic acid-producing bacterium.It has recently attracted much attention from researchers and food manufacturers due to its probiotic functions and stability in processing and storage.W.coagulans is capable of improving gut health through the regulation of gut microbiota,modulation of immunity,and improving digestibility and metabolism.Spores,germinated cells and metabolites of W.coagulans modulate the gut micro-environment and further affect other organs.W.coagulans is an environment-friendly probiotic since it can contribute to the host by reconstructing the balance of gut microbiota and only temporarily resides in the intestine after administration.W.coagulans has been generally recognized as safe(GRAS)by the US Food and Drug Administration(FDA),thus it is an ideal probiotic for improving gut health.The merit of its stability in processing and storage provides W.coagulans spores many possibilities for its use in various types of functional foods.This review presents an overview of the characteristics of W.coagulans that make it an ideal probiotic candidate and highlights the proposed health benefits with scientific evidence conferred by the administration of W.coagulans. | Shiqi Zhang Pinglan Li Suwon Lee Yu Wang Chunming Tan Nan Shang | 2024 | Food Science and Human Wellness2024,13,1: | 0 |