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Parallelizing Genetic Linkage Analysis: A Case Study for Applying Parallel Computation in Molecular Biology

机译:并行遗传连锁分析:在分子生物学中应用并行计算的案例研究

摘要

Parallel computers offer a solution to improve the lengthy computation time of many conventional, sequential programs used in molecular biology. On a parallel computer, different pieces of the computation are performed simultaneously on different processors. LINKMAP is a sequential program widely used by scientists to perform genetic linkage analysis. We have converted LINKMAP to run on a parallel computer, using the machine-independent parallel programming language, Linda. Using the parallelization of LINKMAP as a case study, the paper outlines an approach to converting existing highly iterative programs to a parallel form. The paper describes the steps involved in converting the sequential program to a parallel program. It presents performance benchmarks comparing the sequential version of LINKMAP with the parallel version running on the Encore Multimax parallel machine. The paper also discusses alternative approaches to the problem of “load balancing”, making sure the computational load is shared as evenly as possible among the available processors.
机译:并行计算机提供了一种解决方案,可以缩短分子生物学中使用的许多常规顺序程序的冗长计算时间。在并行计算机上,不同的计算部分在不同的处理器上同时执行。 LINKMAP是一个顺序程序,被科学家广泛用于执行遗传连锁分析。我们已经使用独立于机器的并行编程语言Linda将LINKMAP转换为在并行计算机上运行。本文以LINKMAP的并行化为案例研究,概述了一种将现有的高度迭代程序转换为并行形式的方法。本文介绍了将顺序程序转换为并行程序所涉及的步骤。它提供了性能基准,将LINKMAP的顺序版本与Encore Multimax并行计算机上运行的并行版本进行了比较。本文还讨论了解决“负载平衡”问题的替代方法,以确保计算负载在可用处理器之间尽可能平均地分配。

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