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Fast and Accurate NCBI BLASTP: Acceleration with Multiphase FPGA-Based Prefiltering

机译:快速准确的NCBI BLASTP:加速与基于多相FPGA的预过滤器

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NCBI BLAST has become the de facto standard in bioin-formatic approximate string matching and so its acceleration is of fundamental importance. The problem is that it uses complex heuristics which make it difficult to simultaneously achieve both substantial speed-up and exact agreement with the original output. We have previously described how a novel FPGA-based prefilter that performs exhaustive ungapped alignment (EUA) could be used to reduce the computation by over 99.9% without loss of sensitivity. The primary contribution here is to show how the EUA filter can be combined with another filter, this one based on standard 2-hit seeding. The result is a doubling of performance over the previous best implementation, which itself is an order of magnitude faster than the unaccelerated original. Other contributions include new algorithms for both the original EUA and the 2-hit filters and experimental results demonstrating their utility. This new multiphase FPGA-accelerated NCBI BLASTP scales easily and is appropriate for use in large FPGA-based servers such as the Novo-G.
机译:NCBI BLAST已成为生物素 - 形成近似串匹配的事实标准,因此其加速度是重要的重要性。问题是它使用复杂的启发式,这使得难以同时实现与原始输出的大量加速和完全一致。我们此前已经描述了如何使用令人遗憾的未拍摄对准(EUA)的新型FPGA的预滤器来减少超过99.9%而不会损失灵敏度。这里的主要贡献是展示EUA滤波器如何与另一个过滤器相结合,这是基于标准的2-次播种。结果是对先前最佳实现的性能的加倍,它本身比未加工的原件快。其他贡献包括原始EUA和2-击中过滤器的新算法以及展示其实用程序的实验结果。这种新的MultiPase FPGA加速的NCBI BLASTP轻松秤,适用于用于大型FPGA的服务器,例如Novo-g。

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