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  • Transcriptomic analysis of the rice white tip nematode, Aphelenchoides besseyi (Nematoda: Aphelenchoididae).

Transcriptomic analysis of the rice white tip nematode, Aphelenchoides besseyi (Nematoda: Aphelenchoididae).

PloS one (2014-03-19)
Feng Wang, Danlei Li, Zhiying Wang, Airong Dong, Lihong Liu, Buyong Wang, Qiaoli Chen, Xiaohan Liu
ABSTRACT

The rice white tip nematode Aphelenchoides besseyi, a devastating nematode whose genome has not been sequenced, is distributed widely throughout almost all the rice-growing regions of the world. The aims of the present study were to define the transcriptome of A. besseyi and to identify parasite-related, mortality-related or host resistance-overcoming genes in this nematode. Using Solexa/Illumina sequencing, we profiled the transcriptome of mixed-stage populations of A. besseyi. A total of 51,270 transcripts without gaps were produced based on high-quality clean reads. Of all the A. besseyi transcripts, 9,132 KEGG Orthology assignments were annotated. Carbohydrate-active enzymes of glycoside hydrolases (GHs), glycosyltransferases (GTs), carbohydrate esterases (CEs) and carbohydrate-binding modules (CBMs) were identified. The presence of the A. besseyi GH45 cellulase gene was verified by in situ hybridization. Given that 13 unique A. besseyi potential effector genes were identified from 41 candidate effector homologs, further studies of these homologs are merited. Finally, comparative analyses were conducted between A. besseyi contigs and Caenorhabditis elegans genes to look for orthologs of RNAi phenotypes, neuropeptides and peptidases. The present results provide comprehensive insight into the genetic makeup of A. besseyi. Many of this species' genes are parasite related, nematode mortality-related or necessary to overcome host resistance. The generated transcriptome dataset of A. besseyi reported here lays the foundation for further studies of the molecular mechanisms related to parasitism and facilitates the development of new control strategies for this species.

MATERIALS
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Roche
DIG DNA Labeling Kit, sufficient for 40 labeling reactions, kit of 1 (7 components), suitable for hybridization
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40 μL
Estimated to ship on 2025年4月21日
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¥2,517.13
Roche
DIG-High Prime DNA Labeling and Detection Starter Kit I, sufficient for 12 labeling reactions, sufficient for 24 blots, suitable for hybridization, suitable for Northern blotting, suitable for Southern blotting
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SKUPack SizeAvailabilityPriceQuantity
40 μL
Estimated to ship on 2025年4月21日
Details...
¥2,517.13