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5篇 您的检索式:作者名="Zhan Huanyu"
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1Chromosome-scale genome assembly provides insights into the evolution and flavor synthesis of passion fruit (Passiflora edulis Sims)显示文摘Passion fruit(Passiflora edulis Sims)is an economically valuable fruit that is cultivated in tropical and subtropical regions of the world.Here,we report an~1341.7Mb chromosome-scale genome assembly of passion fruit,with 98.91%(~1327.18Mb)of the assembly assigned to nine pseudochromosomes.The genome includes 23,171 protein-coding genes,and most of the assembled sequences are repetitive sequences,with long-terminal repeats(LTRs)being the most abundant.Phylogenetic analysis revealed that passion fruit diverged after Brassicaceae and before Euphorbiaceae.Ks analysis showed that two whole-genome duplication events occurred in passion fruit at 65 MYA and 12 MYA,which may have contributed to its large genome size.An integrated analysis of genomic,transcriptomic,and metabolomic data showed that‘alpha-linolenic acid metabolism’,‘metabolic pathways’,and‘secondary metabolic pathways’were the main pathways involved in the synthesis of important volatile organic compounds(VOCs)in passion fruit,and this analysis identified some candidate genes,including GDP-fucose Transporter 1-like,Tetratricopeptide repeat protein 33,protein NETWORKED 4B isoform X1,and Golgin Subfamily A member 6-like protein 22.In addition,we identified 13 important gene families in fatty acid pathways and eight important gene families in terpene pathways.Gene family analysis showed that the ACX,ADH,ALDH,and HPL gene families,especially ACX13/14/15/20,ADH13/26/33,ALDH1/4/21,and HPL4/6,were the key genes for ester synthesis,while the TPS gene family,especially PeTPS2/3/4/24,was the key gene family for terpene synthesis.This work provides insights into genome evolution and flavor trait biology and offers valuable resources for the improved cultivation of passion fruit.Zhiqiang Xia Dongmei Huang Shengkui Zhang Wenquan Wang Funing Ma Bin Wu Yi Xu Bingqiang Xu Di Chen Meiling Zou Huanyu Xu Xincheng Zhou Rulin Zhan Shun Song 2021Horticulture Research2021,8,1:15
2Adsorption and desorption of copper ( ) from solution on a new spheroidal cellulose adsorbent显示文摘Liu Minghua Deng Yun Zhan Huanyu 2002Appl Polym Sci2002,84,:1
3Preliminary Results of SECRAL at 18 GHz显示文摘Sun Liangting Zhao Hongwei Zhang Xuezhen Guo Xiaohong He Wei Zhang Zimin Li Jinyu Feng Yucheng Cao Yun Wang Hui Ma Baohua Li Xixia Zhao Huanyu Shang Yong Lu Wang Li Jie Yuan Pin Song Mingtao Zhan Wenlong Wei Baowen D. Z. Xie 2006近代物理研究所和兰州重离子加速器实验室年报:英文版2006,,1:0
4Report of Training and Commissioning Results of SECRAL显示文摘SECRAL (Superconducting ECR Ion Source with Advanced design in Lanzhou) is a next generation ECR ion source, and aims at developing a very compact superconducting ECR ion source with an innovative magnet design, which realizes a minimum-B trap by means of six sextupole coils external to the three axial solenoidal coils, i. e. contrary to what is usually done in any ECR ion sources. In this way, theSun Liangting Zhao Hongwei Zhang Xuezhen Zhang Zimin Guo Xiaohong He Wei Li Jinyu Feng Yucheng Cao Yun Wang Hui Ma Baohua Li Xixia Zhao Huanyu Shang Yong Lu Wang Li Jie Yuan Pin Song Mingtao Zhan Wenlong Wei Baowen D. Z. Xie 2005近代物理研究所和兰州重离子加速器实验室年报:英文版2005,,1:0
5Narrow-bandwidth emissive carbon dots:A rising star in the fluorescent material family显示文摘Fluorescent carbon dots(CDs)have recently become a research hotspot in multidisciplinary fields owing to their distinctive advantages,including outstanding photoluminescence properties,high biocompatibility,low toxicity,and abundant raw materials.Among the promising CDs,narrow‐bandwidth emissive CDs with high color purity have emerged as a rising star in recent years because of their significant potential applications in bioimaging,information sensing,and photoelectric displays.In this review,the state-of-the-art advances of narrow-bandwidth emissive CDs are systematically summarized,and the factors influencing the emission bandwidth,preparation methods,and applications of narrow-bandwidth emissive CDs are described in detail.Besides,existing challenges and future perspectives for achieving high-performance narrow-bandwidth emissive CDs are also discussed.This overview paper is expected to generate more interest and promote the rapid development of this significant research area.Biao Zhao Huanyu Ma Mengyun Zheng Kunxiang Xu Chao Zou Songnan Qu Zhan'ao Tan 2022Carbon Energy2022,4,1:0
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