<li id="jb1tr"><meter id="jb1tr"><th id="jb1tr"></th></meter></li>

      產(chǎn)品中心您的位置:網(wǎng)站首頁 > 產(chǎn)品中心 > 基因組學(xué)分析 > 被子植物353單拷貝核基因 > 被子植物353個單拷貝核基因靶向捕獲測序

      被子植物353個單拷貝核基因靶向捕獲測序

      更新時間:2024-08-07

      訪問量:3636

      廠商性質(zhì):生產(chǎn)廠家

      生產(chǎn)地址:

      簡要描述:
      藍(lán)景科信將探針雜交捕獲技術(shù)和NGS技術(shù)結(jié)合,提供被子植物353個單拷貝核基因靶向捕獲測序服務(wù)。為研究被子植物的系統(tǒng)進(jìn)化和分類、植物適應(yīng)性機(jī)制、種群進(jìn)化歷史、種群的結(jié)構(gòu)、基因滲透和漂移提供高效的整體解決方案。靶向捕獲測序技術(shù)服務(wù),使用帶有標(biāo)記的探針,捕獲被子植物353個單拷貝核基因。您可以提供新鮮植物樣本,臘葉標(biāo)本或者古老的博物館標(biāo)本,我們負(fù)責(zé)DNA提取、文庫構(gòu)建、靶向捕獲、測序和數(shù)據(jù)分析。

      藍(lán)景科信將探針雜交捕獲技術(shù)和NGS技術(shù)結(jié)合,提供被子植物353個單拷貝核基因靶向捕獲測序服務(wù)。為研究被子植物的系統(tǒng)進(jìn)化和分類、植物適應(yīng)性機(jī)制、種群進(jìn)化歷史、種群的結(jié)構(gòu)、基因滲透和漂移提供高效的整體解決方案。靶向捕獲測序技術(shù)服務(wù),使用標(biāo)記的探針,捕獲被子植物353個單拷貝核基因。您可以提供新鮮植物樣本,臘葉標(biāo)本或者古老的博物館標(biāo)本,我們負(fù)責(zé)DNA提取、文庫構(gòu)建、靶向捕獲、測序和數(shù)據(jù)分析。

      被子植物353個單拷貝核基因靶向捕獲測序服務(wù)技術(shù)流程:

      637939919681479330204.jpg

      實(shí)驗(yàn)數(shù)據(jù):

      Fig 1. Heatmap of Gene Recovery Efficiency. Each row is one sample, and each column is one gene. Colors indicate the percentage of the target length (calculated by the mean length of all k-medoid transcripts for each gene) recovered.

       

       

      Fig 2. Total Length of Sequence Recovery for Both Coding and Non-coding Regions Across 353 Loci for 42 Angiosperm Species. Reads were mapped back to either coding sequence (yellow) or coding sequence plus flanking non-coding (i.e. intron) sequence (purple)… The total length of coding sequence targeted was 260,802 bp. The median recovery of coding sequence was 137,046 bp and the median amount of non-coding sequence recovered was 216,816 bp (with at least 8x depth of coverage).

       

      參考文獻(xiàn):

      Johnson MG, Pokorny L, Dodsworth S, Botigué LR, Cowan RS, Devault A, Eiserhardt WL, Epitawalage N, Forest F, Kim JT, Leebens-Mack JH, Leitch IJ, Maurin O, Soltis DE, Soltis PS, Wong GK, Baker WJ, Wickett NJ. A Universal Probe Set for Targeted Sequencing of 353 Nuclear Genes from Any Flowering Plant Designed Using k-Medoids Clustering. Syst Biol. 2019. 68(4):594-606. doi: 10.1093/sysbio/syy086.

       

      使用被子植物353個單拷貝核基因捕獲探針進(jìn)行靶向捕獲測序,發(fā)表的部分文獻(xiàn):

      • Antonelli, A., Clarkson, J.J., Kainulainen, K., Maurin, O., Brewer, G.E., Davis, A.P., … Baker, W.J. (2021). Settling a family feud: a high-level phylogenomic framework for the Gentianales based on 353 nuclear genes and partial plastomes. American Journal of Botany 108, 1143–1165.

      • Baker, W.J., Bailey, P., Barber, V., Barker, A., Bellot, S., Bishop, D., … Forest, F. (2021). A Comprehensive Phylogenomic Platform for Exploring the Angiosperm Tree of Life. Systematic Biology.

      • Brewer, G.E., Clarkson, J.J., Maurin, O., Zuntini, A.R., Barber, V., Bellot, S., … Baker, W.J. (2019). Factors Affecting Targeted Sequencing of 353 Nuclear Genes From Herbarium Specimens Spanning the Diversity of Angiosperms. Front. Plant Sci. 0.

      • Buerki, S., Callmander, M.W., Acevedo-Rodriguez, P., Lowry, P.P., Munzinger, J., Bailey, P., … Forest, F. (2021). An updated infra-familial classification of Sapindaceae based on targeted enrichment data. American Journal of Botany 108, 1234–1251.

      • Clarkson, J.J., Zuntini, A.R., Maurin, O., Downie, S.R., Plunkett, G.M., Nicolas, A.N., … Baker, W.J., (2021). A higher-level nuclear phylogenomic study of the carrot family (Apiaceae). American Journal of Botany 108, 1252–1269.

      • Gaynor, M.L., Fu, C.-N., Gao, L.-M., Lu, L.-M., Soltis, D.E., Soltis, P.S. (2020). Biogeography and ecological niche evolution in Diapensiaceae inferred from phylogenetic analysis. Journal of Systematics and Evolution 58, 646–662.

      • Hendriks, K.P., Mandáková, T., Hay, N.M., Ly, E., Huysduynen, A.H. van, Tamrakar, R., … Bailey, C.D. (2021). The best of both worlds: Combining lineage-specific and universal bait sets in target-enrichment hybridization reactions. Applications in Plant Sciences 9.

      • Johnson, M., Pokorny, L., Dodsworth, S., Botigue, L.R., Cowan, R.S., Devault, A., … Wickett, N. (2019). A Universal Probe Set for Targeted Sequencing of 353 Nuclear Genes from Any Flowering Plant Designed Using k-medoids Clustering. Systematic Biology 68(4): 594-606.

      • Larridon, I., Villaverde, T., Zuntini, A.R., Pokorny, L., Brewer, G.E., Epitawalage, N., … Baker, W.J. (2020). Tackling Rapid Radiations With Targeted Sequencing. Frontiers in Plant Science 10: 1.

      留言框

      • 產(chǎn)品:

      • 您的單位:

      • 您的姓名:

      • 聯(lián)系電話:

      • 常用郵箱:

      • 省份:

      • 詳細(xì)地址:

      • 補(bǔ)充說明:

      • 驗(yàn)證碼:

        請輸入計算結(jié)果(填寫阿拉伯?dāng)?shù)字),如:三加四=7

      聯(lián)


      主站蜘蛛池模板: 精品免费视在线观看| 国产精品欧美一区二区三区不卡| 国产精品毛片无码| A级精品国产片在线观看| 国内少妇偷人精品视频免费| 欧美精品丝袜久久久中文字幕| 国产精品99久久99久久久| 四虎精品免费永久在线| 爽爽精品dvd蜜桃成熟时电影院| 日韩精品一二三区| 69国产成人综合久久精品| 日韩人妻无码精品久久免费一| 综合人妻久久一区二区精品| 亚洲高清国产AV拍精品青青草原| 久久亚洲私人国产精品| 国产在线精品一区二区不卡| 99久久亚洲综合精品网站| 国产精品哟女在线观看| 久久久一本精品99久久精品88| 亚洲国产成人精品久久久国产成人一区二区三区综| 91精品国产综合久久精品| 欧美精品一区二区久久| 国产成人精品福利网站在线观看| 亚洲AV无码成人精品区狼人影院| 亚洲精品无码久久一线| 91精品在线看| 精品乱子伦一区二区三区高清免费播放| 久久国产午夜精品一区二区三区| 亚洲精品中文字幕乱码三区| 999国产精品色在线播放| 国产精品久久久久久福利69堂| 老湿亚洲永久精品ww47香蕉图片| …久久精品99久久香蕉国产| 无码人妻精品一区二区三区久久久| 四虎影视国产精品永久在线| 老司机亚洲精品影院无码| 国产精品一二三区| 精品国产呦系列在线观看免费| 欧美成人精品第一区二区| 国产精品亚洲玖玖玖在线观看| 久久精品国产99国产精品澳门|