Hellenic Centre for Marine Research (HCMR), Former U.S. Base of Gournes, Institute of Marine Biology, Biotechnology and Aquaculture (IMBBC), P.O. Box 2214, 71003, Heraklion, Crete, Greece.
School of Medicine, University of Crete, 71003, Heraklion, Crete, Greece.
BMC Res Notes. 2022 Mar 7;15(1):98. doi: 10.1186/s13104-022-05978-5.
The rapid progress in sequencing technology and related bioinformatics tools aims at disentangling diversity and conservation issues through genome analyses. The foremost challenges of the field involve coping with questions emerging from the swift development and application of new algorithms, as well as the establishment of standardized analysis approaches that promote transparency and transferability in research.
Here, we present SnakeCube, an automated and containerized whole de novo genome assembly pipeline that runs within isolated, secured environments and scales for use in High Performance Computing (HPC) domains. SnakeCube was optimized for its performance and tested for its effectiveness with various inputs, highlighting its safe and robust universal use in the field.
测序技术和相关生物信息学工具的快速发展旨在通过基因组分析来解决多样性和保护问题。该领域最首要的挑战涉及应对新算法迅速发展和应用所带来的问题,以及建立标准化的分析方法,以促进研究的透明度和可转移性。
在这里,我们提出了 SnakeCube,这是一个自动化和容器化的全从头基因组组装管道,在隔离、安全的环境中运行,并可扩展用于高性能计算 (HPC) 领域。我们对 SnakeCube 进行了性能优化,并针对各种输入进行了有效性测试,突出了其在该领域安全、稳健的通用用途。