Genome assembly of a symbiotic balantidia (Balantidium ctenopharyngodoni) in fish hindgut

Author:

Zhao Weishan,Xiong JieORCID,Li Ming,Bu Xialian,Jiang Chuanqi,Wang Guangying,Zhang Jing,Li Wenxiang,Zou Hong,Miao Wei,Chen Kai,Wang Guitang

Abstract

AbstractBalantidium ctenopharyngodoni is identified as the sole ciliate species that exclusively resides within the hindgut of grass carp with high prevalence and intensity. In this study, the successful cultivation of B. ctenopharyngodoni enabled us to collect enough cells for genome sequencing. Consequently, we acquired a high-quality genome assembly spanning 68.66 Mb, encompassing a total of 22,334 nanochromosomes. Furthermore, we predicted 29,348 protein-coding genes, and 95.5% of them was supported by the RNA-seq data. The trend of GC content in the subtelomeric regions of single-gene chromosomes was similar to other ciliates containing nanochromosomes. A large number of genes encoding carbohydrate-binding modules with affinities for starch and peptidoglycans was identified. The identification of mitochondrion-related organelles (MROs) within genome indicates its well-suited adaptation to the anaerobic conditions in the hindgut environment. In summary, our results will offer resources for understanding the genetic basis and molecular adaptations of balantidia to hindgut of herbivorous fish.

Funder

National Natural Science Foundation of China

Second Tibetan Plateau Scientific Expedition and Research Program (STEP)

China Postdoctoral Science Foundation

National Key Research and Development Program of China

Earmarked Fund for China Agriculture Research System

Publisher

Springer Science and Business Media LLC

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