Papers › dna2vec: Consistent vector representations of variable-length k-mers

dna2vec: Consistent vector representations of variable-length k-mers

23 Jan 2017arXiv:1701.06279archive 2025-07-28

Patrick Ng

One of the ubiquitous representation of long DNA sequence is dividing it into shorter k-mer components. Unfortunately, the straightforward vector encoding of k-mer as a one-hot vector is vulnerable to the curse of dimensionality. Worse yet, the distance between any pair of one-hot vectors is equidistant. This is particularly problematic when applying the latest machine learning algorithms to solve problems in biological sequence analysis. In this paper, we propose a novel method to train distributed representations of variable-length k-mers. Our method is based on the popular word embedding model word2vec, which is trained on a shallow two-layer neural network. Our experiments provide evidence that the summing of dna2vec vectors is akin to nucleotides concatenation. We also demonstrate that there is correlation between Needleman-Wunsch similarity score and cosine similarity of dna2vec vectors.

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insert_snippet pnpnpn/dna2vec/attic_util/bio_util.py official repository unverified MIT (permissive) · ca48ce821a1cf8cc · report
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shuffle_dataframe pnpnpn/dna2vec/attic_util/util.py official repository unverified MIT (permissive) · ee6df32606f59bdb · report
shuffle_tuple pnpnpn/dna2vec/attic_util/util.py official repository unverified MIT (permissive) · 3a3067d9fe3fcf35 · report
split_Xy pnpnpn/dna2vec/attic_util/util.py official repository unverified MIT (permissive) · 08ed436e8f5c0e2f · report

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