header background-block header background-block header background-block header background-block

产品中心

HLS2 全自动超长DNA片段分选回收仪: 50kb-2Mb; 靶向长片段获取; 一步法提取线粒体DNA

 

• Sage Science 公司

位于美国马萨诸塞州,2010年成立,专注于核酸领域的样品制备

全球超过3000家客户的认可,国内装机数量400台左右

2万篇文献中应用,包括众多Nature、 Science、 Cell系列的文章

DNA片段筛选回收领域的行业金标准

 

• Sage HLS2 全自动超长DNA片段分选回收仪

整合了脉冲场电泳,直接从核酸样品中完成DNA超大片段的分选回收

回收范围:50kb-2Mb DNA;

用于Nanopore、华大、齐碳、普译等超长测序(Ultra long Sequencing)文库构建

用于CATCH技术获取的上百kb靶向克隆基因组片段回收

 

技术原理

 

产品特点

 

应用方向

 

典型案例

案例1:

Sage HLS2 用于超长测序(Ultra long Sequencing)文库构建,只保留50kb以上的DNA,提高Reads N50长度,降低测序成本

50kb High Pass超长基因组,去除50kb以下DNA

案例2:

经过SageHLS2自动化片段筛选,建库后Nanopore测序在单个cell上Reads N50可达143.3 kb

Reads N50可达143.3 kb(数据来源:希望组官方公众号)

 

     

       代表客户


 

 

发表文献

1.Eveleigh, Robert JM, et al. "Finding an optimal sequencing strategy to detect short and long genetic variants in a human genome." bioRxiv (2025): 2025-05.

2.Liu, Xin, et al. "Telomere‐to‐telomere reference genome reveals subgenome divergence and large structural variants in Capsella bursa‐pastoris (Brassicaceae)." Biological Diversity 2.1 (2025): 28-38.

3.Fang, Zhenyu, et al. "Experimental insights into genome reconstruction driven by horizontal transfer of supernumerary chromosomes in Magnaporthe oryzae." New Phytologist 248.1 (2025): 140-156.

4.Yadav, Hemant Kumar, et al. "Telomere‐to‐telomere genome assembly of linseed (Linum usitatissimum L.) for functional genomics and accelerated genetic improvement." Plant Biotechnology Journal (2025).

5.Wen, Huaming, et al. "TRFill: synergistic use of HiFi and Hi-C sequencing enables accurate assembly of tandem repeats for population-level analysis." Genome biology 26.1 (2025): 227.

6.Xia, Zhiqiang, et al. "Pan-genome and haplotype map of cassava cultivars and wild ancestors provide insights into its adaptive evolution and domestication." Molecular Plant 18.6 (2025): 1047-1071.

7.Zhou, Bo, et al. "Resolving the 22q11. 2 deletion using CTLR-Seq reveals chromosomal rearrangement mechanisms and individual variance in breakpoints." Proceedings of the National Academy of Sciences 121.31 (2024): e2322834121.

8.Cai, Yudong, et al. "Genome sequencing of ‘Fuji’apple clonal varieties reveals genetic mechanism of the spur-type morphology." Nature communications 15.1 (2024): 10082.

9.Gao, Shenghan, et al. "The centromere landscapes of four karyotypically diverse Papaver species provide insights into chromosome evolution and speciation." Cell Genomics 4.8 (2024).

10.Yang, Chentao, et al. "The complete and fully-phased diploid genome of a male Han Chinese." Cell Research 33.10 (2023): 745-761.


申请Demo或询价

* 星号标注为必填项