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An angiosperm <i>NLR</i> atlas reveals that <i>NLR</i> gene reduction is associated with ecological specialization and signal transduction component deletion

2021-02-10

Abstract excerpt

Nucleotide-binding site-leucine-rich repeat receptor ( NLR ) genes comprise the largest family of plant disease resistance genes. NLR genes are phylogenetically divided into the TNL, CNL, and RNL subclasses. NLR copy numbers and subclass composition vary tremendously across angiosperm genomes. However, the evolutionary associations between genomic NLR content and plant lifestyle, or between NLR content and...

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Literature Corpus work
987ebfa2-b12d-5910-a8e0-2b967edfbc6e
DOI
10.1101/2021.02.10.430603
Open publication

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An angiosperm <i>NLR</i> atlas reveals that <i>NLR</i> gene reduction is associated with ecological specialization and signal transduction component deletionDOI 10.1101/2021.02.10.430603
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