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An improved draft genome sequence of hybrid Populus alba×Populus glandulosa 被引量:2
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作者 Xiong Huang Song Chen +9 位作者 Xiaopeng Peng Eun-Kyung Bae Xinren Dai Guiming Liu Guanzheng Qu Jae-Heung Ko Hyoshin Lee Su Chen Quanzi Li Mengzhu Lu 《Journal of Forestry Research》 SCIE CAS CSCD 2021年第4期1663-1672,共10页
Populus alba × P.glandulosa clone 84 K,derived from South Korea,is widely cultivated in China and used as a model in the molecular research of woody plants because of hi gh gene transformation efficiency.Here,we ... Populus alba × P.glandulosa clone 84 K,derived from South Korea,is widely cultivated in China and used as a model in the molecular research of woody plants because of hi gh gene transformation efficiency.Here,we combined63-fold coverage Illumina short reads and 126-fold coverage PacBio long reads to assemble the genome.Due to the hi gh heterozygosity level at 2.1% estimated by k-mer analysis,we exploited TrioCanu for genome assembly.The PacBio clean subreads of P.alba × P.glandulosa were separated into two parts according to the similarities,compared with the parental genomes of P.alba and P.glandulosa.The two parts of the subreads were assembled to two sets of subgenomes comprising subgenome A(405.31 Mb,from P.alba)and subgenome G(376.05 Mb,from P.glandulosa) with the contig N50 size of 5.43 Mb and 2.15 Mb,respectively.A high-quality P.alba × P.glandulosa genome assembly was obtained.The genome size was 781.36 Mb with the contig N50 size of 3.66 Mb and the longest contig was 19.47 Mb.In addition,a total of 176.95 Mb(43.7%),152.37 Mb(40.5%)of repetitive elements were identified and a total of 38,701 and 38,449 protein-coding genes were predicted in subgenomes A and G,respectively.For functional annotation,96.98% of subgenome A and 96.96% of subgenome G genes were annotated with public databases.This de novo assembled genome will facilitate systematic and comprehensive study,such as multi-omics analysis,in the model tree P.alba X P.glandulosa. 展开更多
关键词 Genome assembly Gene annotation Hybrid poplar populus alba×p.glandulosa cl.84 k
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超量表达FBL1对84K杨根系和生长量影响研究 被引量:2
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作者 舒文波 赵树堂 +2 位作者 章晶晶 周艺华 卢孟柱 《林业科学研究》 CSCD 北大核心 2015年第6期871-876,共6页
生长素及其信号转导系统对植物的生长发育具有重要的影响。本研究从银腺杨‘84K’(Populus alba×P.glandulosa cl.‘84K’)中分离了生长素受体基因Ptr FBL1,利用PMDC32构建了PMDC32-Ptr FBL1超量表达载体,并通过遗传转化获得了超... 生长素及其信号转导系统对植物的生长发育具有重要的影响。本研究从银腺杨‘84K’(Populus alba×P.glandulosa cl.‘84K’)中分离了生长素受体基因Ptr FBL1,利用PMDC32构建了PMDC32-Ptr FBL1超量表达载体,并通过遗传转化获得了超量表达植株17个。对温室定植的3个转基因株系和对照植株的根系、生长量和光合指标等性状分析结果显示:转基因株系总根长和总根面积达到显著或极显著差异,而根系干质量、平均不定根系长度、平均不定根直径差异不显著;株高、平均节间长、地径和高径比皆高于对照,且大多数转基因株系达到显著差异;除气孔限制值(Ls)低于对照外,气孔导度(Cd)、水分利用效率(WUE)、光能利用效率(LUE)和叶绿素相对含量皆高于对照,且大多数转基因株系达到显著或极显著差异。以上结果表明,可能是FBL1超表达增加了转基因株系根系面积,提高了水分和养分的吸收利用,进而导致转基因株系光能吸收和转化效率提高,引起转基因株系生长加快。 展开更多
关键词 超量表达 FBL1 84k 根系 生长量
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