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Next-Generation Sequencing Reveals That Oxidative PhosphorylationMight Be a Key Pathway Differently Expressed in the Third and Fourth Stages Larvae of Angiostrongylus cantonensis
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نویسنده
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guo yue ,chang hong ,dong ying ,dong hai yan ,yao yun liang ,qian jing ,i zhang hu ,yu li xiao ,zhang zhong shan ,lin han bing ,zhou tian ,zhao meng jia ,ji tang qin ,wang run ze ,zhang feng ping
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منبع
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iranian journal of parasitology - 2020 - دوره : 15 - شماره : 4 - صفحه:587 -595
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چکیده
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Background: when angiostrongylus cantonensis develops from the third and fourth stage, it needs to change its host from the middle host, snail to the final host, rat.however, the mechanism involved in this change remains unclear.methods: the transcriptome differences of the third and fourth stages of a. cantonensiswere explored by next-generation illumina hiseq/miseq sequencing in china,in 2018.results: overall, 137 956 488 clean reads and 20 406 213 373 clean bases of thetwo stages larvae were produced. based on the queries against the gene ontology(go), ncbi non-redundant protein sequences (nr), swissprot, and kyoto encyclopediaof genes and genomes (kegg) databases, 14 204 differentially expressed genes (degs) were predicted. go enrichment analysis revealed 5660 degs with the top s categories as followings: biological process (go:0008150, related to 5345 degs), cellular component (go:0005575, related to 5297 degs),molecular function (go:0003674, related to 5290 degs). in kegg enrichmentanalysis, 116 genes were related to oxidative phosphorylation and 49 genes involvedin the glycolytic process.conclusion: metabolism changes, especially oxidative phosphorylation and glycolysis,might play a key role in a. cantonensis infection of its final rat host. manyother pathways might also contribute to the transcriptome changes between thesetwo life stages. overall, additional studies are needed for further details.
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کلیدواژه
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Angiostrongylus cantonensis;Transcriptional sequencing;Third stage larvae;Fourth stage larvae;Next-generation sequencing
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آدرس
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huzhou university, school of medicine, key laboratory of vector biology and pathogen control of zhejiang province, China, huzhou university, school of medicine, key laboratory of vector biology and pathogen control of zhejiang province, China, huzhou university, school of medicine, Chin, huzhou university, school of medicine, key laboratory of vector biology and pathogen control of zhejiang province, China, huzhou university, school of medicine, key laboratory of vector biology and pathogen control of zhejiang province, China, huzhou university, school of medicine, key laboratory of vector biology and pathogen control of zhejiang province, China, huzhou university, school of medicine, China, huzhou university, school of medicine, China, huzhou university, key laboratory of vector biology and pathogen control of zhejiang province, China, huzhou university, school of medicine, China, huzhou university, school of medicine, China, huzhou university, school of medicine, China, huzhou university, school of medicine, China, huzhou university, school of medicine, China, huzhou university, school of medicine, China
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Authors
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