cloum2

Technical Service

CycloneSEQ测序是一种先进的纳米孔基因测序技术,它通过纳米孔蛋白和马达蛋白实现DNA测序。搭配CycloneSEQ-WT02中通量纳米孔基因国产测序仪,具有超长的长读长测序能力,能够覆盖从100 bp到Mbp级别的读长范围,适用于各项科学研究,包括基因组、转录组和表观基因组的读取与分析。该测序平台具备实时测序能力使其能够以350-420 nt/s的速度产出高达10Mb每分钟的数据,单次测序准确率为97%,在40x覆盖度下,一致性准确率可达99.99%。此外,CycloneSEQ长度长测序在扩增子测序、宏基因组测序、小型基因组全基因组测序、低深度人全基因组测序和全转录组测序等多个应用场景中表现出色,单芯片实验室实际最高数据产出可超过50 Gb,能够满足从紧急应用场景到常规科研的快速实时测序需求。

优势  01
优势 01

高性能测序能力



  • 超长读长:提供从100 bp到Mbp级别的读长,适合复杂和大基因组的研究。
  • 实时测序:以350-420 nt/s的速度实时产出数据,每分钟可产生高达10Mb的数据。
  • 高准确率:单次测序准确率为97%,在40x覆盖度下,一致性准确率可达99.99%。
优势  02
优势 02

灵活性和便捷性



  • 双芯片架构:支持独立运行,提供灵活的通量选择。
  • 灵活的运行时间:根据实验需求在10分钟至72小时内完成测序。
  • 便携性:设备小巧便携,适合各种实验室环境。
优势  03
优势 03

分析水平卓越



  • 出色的菌株生物合成基因簇(BGC)预测和抗菌性能评估能力
  • 配备经验丰富的生信团队。

Application

基因组组装
基因组组装
微生物基因组组装
人/动植物基因组组装
基因组重测序
基因组重测序
Call SV

Technical process

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case analysis

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3K Rice Sequencing & Pan-genome Research

Research background
Research Strategy
The 3,010 rice samples (from 89 countries and regions around the world) represent about 95% of the core germplasm diversity of 780,000 rice species worldwide. By whole genome resequencing, with an average sequencing depth of 14X per sample, a total of 32Mb of high-quality SNPs and InDels were detected using the resequencing data. The structure and differentiation of cultivated rice populations in Asia were described in a more detailed and accurate way. The traditional 5 populations were increased to 9, namely, indica rice populations in East Asia (China), indica rice in South Asia, indica rice in Southeast Asia and modern indica rice varieties. Three japonica rice populations, namely temperate japonica rice, tropical japonica rice and subtropical japonica rice in Southeast Asia, as well as Aus and fragrant rice from India and Bangladesh. This study reveals for the first time a large number of microstructural (> 100bp) variations (SVs, including translocations, deletions, inversions, and duplicates) among cultivated rice cultivars in Asia. The SVs of 453 strains with sequencing depth > 20X were studied. The phylogenetic tree constructed by SVs is similar to that of SNPS. A large number of SVs may be the genetic basis of different degrees of hybrid sterility and hybrid decay of XI and GJ. The pan-genome of Asian cultivated rice was constructed, including 12,770 (62.1%) core gene families and 9,050 (37.9%) distributed gene families. 12,000 new full-length genes and thousands of incomplete ones were discovered. The core genes are ancient, and most of the new genes appear younger and shorter in length.
Initially, 3,024 rice samples were sequenced, 14 samples were filtered out for quality control, and 3,010 rice samples were retained for research. The 3K RG sequencing data alignment to the reference genome Nipponbare for detection of SNPs and InDels. The pan-genome was constructed by the Nipponbare genome sequence and the newly assembled genome sequence without redundancy. Perform SVs and PAVs analysis on 453 rice materials with sequencing depth > 20X and alignment depth > 15X.a. PAVs gene family b. The components of a pan-genome and a separate genomec. Simulated pan-genome and core genome based on 500 randomly selected rice genomesd. Proportion of core and distributed gene familiese. Average difference in the number of gene families between two strainsf. 5733 Main group unbalanced gene family characteristics
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