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Zanthoxylum-specific whole genome duplication and recent activity of transposable elements in the highly repetitive paleotetraploid Z.bungeanum genome 被引量:7
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作者 Shijing Feng Zhenshan Liu +13 位作者 Jian Cheng Zihe Li Lu Tian Min Liu Tuxi Yang Yulin Liu Yonghong Liu he dai Zujun Yang Qing Zhang Gang Wang Jisen Zhang Huifeng Jiang Anzhi Wei 《Horticulture Research》 SCIE 2021年第1期2834-2848,共15页
Zanthoxylum bungeanum is an important spice and medicinal plant that is unique for its accumulation of abundant secondary metabolites,which create a characteristic aroma and tingling sensation in the mouth.Owing to th... Zanthoxylum bungeanum is an important spice and medicinal plant that is unique for its accumulation of abundant secondary metabolites,which create a characteristic aroma and tingling sensation in the mouth.Owing to the high proportion of repetitive sequences,high heterozygosity,and increased chromosome number of Z.bungeanum,the assembly of its chromosomal pseudomolecules is extremely challenging.Here,we present a genome sequence for Z.bungeanum,with a dramatically expanded size of 4.23 Gb,assembled into 68 chromosomes.This genome is approximately tenfold larger than that of its close relative Citrus sinensis.After the divergence of Zanthoxylum and Citrus,the lineage-specific whole-genome duplication event q-WGD approximately 26.8 million years ago(MYA)and the recent transposable element(TE)burst~6.41 MYA account for the substantial genome expansion in Z.bungeanum.The independent Zanthoxylum-specific WGD event was followed by numerous fusion/fission events that shaped the genomic architecture.Integrative genomic and transcriptomic analyses suggested that prominent speciesspecific gene family expansions and changes in gene expression have shaped the biosynthesis of sanshools,terpenoids,and anthocyanins,which contribute to the special flavor and appearance of Z.bungeanum.In summary,the reference genome provides a valuable model for studying the impact of WGDs with recent TE activity on gene gain and loss and genome reconstruction and provides resources to accelerate Zanthoxylum improvement. 展开更多
关键词 SHAPED elements REPETITIVE
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城市放射性废物库区域γ剂量监测系统的设计
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作者 唐辉 谷洪 +5 位作者 刘佩 徐彬 赵强 李元东 何岱 毛昱璇 《核电子学与探测技术》 CAS 北大核心 2023年第5期1014-1020,共7页
为满足城市放射性废物库γ剂量监测的需求,设计了区域γ剂量监测系统。该系统设计了γ探测器、就地声光报警器、数据采集主机、管理软件等模块,采用有线和无线网络对各模块进行链接和整合,实现了对库房的全域实时监控,并将剂量监控报警... 为满足城市放射性废物库γ剂量监测的需求,设计了区域γ剂量监测系统。该系统设计了γ探测器、就地声光报警器、数据采集主机、管理软件等模块,采用有线和无线网络对各模块进行链接和整合,实现了对库房的全域实时监控,并将剂量监控报警与库区其他安防设施实现了连锁管理;强化了城市放射性废物库的辐射监测能力和安防能力,提高库区的管理水平和辐射事故应急处置能力,可为其他城市放射性废物库剂量监测系统的设计提供技术支持和参考。 展开更多
关键词 城市放射性废物库 γ剂量 区域测量
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电动汽车用短型线涡旋压缩机补气特性
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作者 何戴 曹健 +2 位作者 李康 苏林 单彦广 《化学工程》 CAS CSCD 北大核心 2023年第4期28-33,共6页
为探究电动汽车用短型线涡旋压缩机在不同工况下的补气特性及制热COP与补气系数k之间的联系,采用第二制冷剂量热器法进行实验研究。结果表明:补气主要对总质量流量的增量和压缩机功率的增量有影响,两者增长的强弱共同决定了该压缩机性... 为探究电动汽车用短型线涡旋压缩机在不同工况下的补气特性及制热COP与补气系数k之间的联系,采用第二制冷剂量热器法进行实验研究。结果表明:补气主要对总质量流量的增量和压缩机功率的增量有影响,两者增长的强弱共同决定了该压缩机性能的变化趋势;蒸发温度越低则补气效果越明显,蒸发温度为-22℃时制热量可提高15.9%;排气温度随补气压力的增大先降低后逐渐升高,在补气压力较低时,压缩机效率可以得到一定的提升;蒸发温度在-22—-1℃的范围内,制热COP随补气系数k呈先增后降的趋势,并且制热COP在补气系数k为0.65—0.85的范围内最优。 展开更多
关键词 短型线涡旋压缩机 补气增焓 补气压力 补气系数 电动汽车
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两阶段悬浮液超音速火焰喷涂多相流模拟研究
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作者 何戴 焦建梁 单彦广 《上海理工大学学报》 CAS CSCD 北大核心 2023年第6期591-601,共11页
为研究两阶段悬浮液超音速火焰喷涂过程中的流场分布以及液滴/颗粒行为,采用三维Euler-Lagrange耦合建模方法,模拟悬浮液在流场中破碎雾化、运动换热、蒸发扩散并最终被基板捕捉的过程。悬浮液物性由基于实验的拟合函数编译,并考虑了液... 为研究两阶段悬浮液超音速火焰喷涂过程中的流场分布以及液滴/颗粒行为,采用三维Euler-Lagrange耦合建模方法,模拟悬浮液在流场中破碎雾化、运动换热、蒸发扩散并最终被基板捕捉的过程。悬浮液物性由基于实验的拟合函数编译,并考虑了液滴形状变化的影响。结果表明:通过调节氮气质量流量,可以在不影响焰流速度的前提下,调节焰流温度,以满足不同温敏材料涂层制备的工艺要求。通过调节悬浮液的体积流量,可以使悬浮液到达焰流中心被充分加热加速。适当减小悬浮液的体积流量有助于提高颗粒被基板捕捉时的温度与速度,适当提高或降低悬浮液的颗粒浓度可以在不影响颗粒被基板捕捉时速度的前提下,提高单位时间内的颗粒输出量或降低颗粒粒径,可以根据不同的工艺要求进行相应的调整。 展开更多
关键词 悬浮液 超音速火焰喷涂 数值模拟 多相流 TIO2
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A Chromosome-Scale Genome Assembly of Paper Mulberry(Bmussonetia papyrifera)Provides New Insights into Its Forage and Papermaking Usage 被引量:22
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作者 Xianjun Peng Hui Liu +21 位作者 Peilin Chen Feng Tang Yanmin Hu Fenfen Wang Zhi Pi Meiling Zhao Naizhi Chen Hui Chen Xiaokang Zhang Xueqing Yan Min Liu Xiaojun Fu Guofeng Zhao Pu Yao Lili Wang he dai Xuming Li Wei Xiong Wencai Xu Hongkun Zheng Haiyan Yu Shihua Shen 《Molecular Plant》 SCIE CAS CSCD 2019年第5期661-677,共17页
Paper mulberry(Broussonetia papyrifera)is a well-known woody tree historically used for Cai Lun papermaking,one of the four great inventions of ancient China.More recently,Paper mulberry has also been used as forage t... Paper mulberry(Broussonetia papyrifera)is a well-known woody tree historically used for Cai Lun papermaking,one of the four great inventions of ancient China.More recently,Paper mulberry has also been used as forage to address the shortage of feedstuff because of its digestible crude fiber and high protein contents.In this study,we obtained a chromosome-scale genome assembly for Paper mulberry using integrated approaches,including Illumina and PacBio sequencing platform as well as Hi-C,optical,and genetic maps.The assembled Paper mulberry genome consists of 386.83 Mb,which is close to the estimated size,and 99.25%(383.93 Mb)of the assembly was assigned to 13 pseudochromosomes.Comparative genomic analysis revealed the expansion and contraction in the flavonoid and lignin biosynthetic gene families,respectively,accounting for the enhanced flavonoid and decreased lignin biosynthesis in Paper mulberry.Moreover,the increased ratio of syringyl-lignin to guaiacyl-lignin in Paper mulberry underscores its suitability for use in medicine,forage,papermaking,and barkcloth making.We also identified the rootassociated microbiota of Paper mulberry and found that Pseudomonas and Rhizobia were enriched in its roots and may provide the source of nitrogen for its stems and leaves via symbiotic nitrogen fixation.Collectively,these results suggest that Paper mulberry might have undergone adaptive evolution and recruited nitrogen-fixing microbes to promote growth by enhancing flavonoid production and altering lignin monomer composition.Our study provides significant insights into genetic basis of the usefulness of Paper mulberry in papermaking and barkcloth making,and as forage.These insights will facilitate further domestication and selection as well as industrial utilization of Paper mulberry worldwide. 展开更多
关键词 FORAGE PLANT barkcloth making nitrogen fixation comparative GENOMICS GENOMICS plant-microbe interactio ns
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