Genomic and Transcriptomic Insights into the Evolution and Parasitic Strategy of the Woody-Plant Nematode Pratylenchus vulnus

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This study presents a chromosome-level genome assembly of <i>Pratylenchus vulnus</i>, revealing its evolutionary relationship to other nematodes and identifying genes involved in its parasitic strategy.

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This study reports a chromosome-level genome assembly of the woody-plant root-lesion nematode Pratylenchus vulnus (61.7 Mb across six chromosomes) and performs comparative genomic and transcriptomic analyses to understand its evolutionary history and parasitic strategy across its host range. The authors find high gene collinearity with the sedentary endoparasite Meloidogyne graminicola, while noting large genomic regions with no synteny, low GC content (<30%), and enrichment for lineage-specific genes; transcriptome data show stage-specific expression patterns related to parasitism, development, and metabolism. They further identify a large set of putative effector genes and lineage-specific expansions in cell wall–degrading enzyme families. The paper does not explicitly discuss limitations in the provided text. The paper does not explicitly discuss endometriosis or adenomyosis; it was included in the corpus via a keyword match in the upstream search index.

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Abstract

The root-lesion nematode Pratylenchus vulnus parasitizes a wide range of hosts including woody perennials such as walnut ( Juglans regia ) and grapevine ( Vitis vinifera ), significantly damaging roots and reducing yields. Here, we present a high-quality, chromosome-level genome assembly of P. vulnus (61.7 Mb across six chromosomes). Comparative genomic analysis revealed high collinearity in protein-coding genes between P. vulnus and the root-knot nematode Meloidogyne graminicola , indicating a closer evolutionary relationship with this sedentary endoparasite. Large chromosomal regions in P. vulnus lack synteny with other nematode genomes, have comparatively low GC content (<30%), and are enriched in genes with unique or lineage-specific functions. Transcriptome analysis highlighted dynamic, stage-specific expressions of genes involved in parasitism, development, and metabolism. Additionally, we identified an extensive repertoire of putative effector genes and characterized lineage-specific expansions of cell wall-degrading enzyme families. Overall, these findings provide insight into the genome organization, chromosome evolution, and parasitism-related gene repertoire in a woody-plant parasitizing nematode.
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Abstract The root-lesion nematode Pratylenchus vulnus parasitizes a wide range of hosts including woody perennials such as walnut (Juglans regia) and grapevine (Vitis vinifera), significantly damaging roots and reducing yields. Here, we present a high-quality, chromosome-level genome assembly of P. vulnus (61.7 Mb across six chromosomes). Comparative genomic analysis revealed high collinearity in protein-coding genes between P. vulnus and the root-knot nematode Meloidogyne graminicola, indicating a closer evolutionary relationship with this sedentary endoparasite. Large chromosomal regions in P. vulnus lack synteny with other nematode genomes, have comparatively low GC content (<30%), and are enriched in genes with unique or lineage-specific functions. Transcriptome analysis highlighted dynamic, stage-specific expressions of genes involved in parasitism, development, and metabolism. Additionally, we identified an extensive repertoire of putative effector genes and characterized lineage-specific expansions of cell wall-degrading enzyme families. Overall, these findings provide insight into the genome organization, chromosome evolution, and parasitism-related gene repertoire in a woody-plant parasitizing nematode. Competing Interest Statement The authors have declared no competing interest.

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License: CC-BY-NC-ND-4.0