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The genomes of two parasitic wasps that parasitize the diamondback moth

作者:Min Shi, Zhizhi Wang, Xiqian Ye, Hongqing Xie, Fei Li, Xiaoxiao Hu, Zehua Wang, Chuanlin Yin, Yuenan Zhou, Qijuan Gu, Jiani Zou, Leqing Zhan, Yuan Yao, Jian Yang, Shu‐Jun Wei, Rongmin Hu, Dianhao Guo, Jiangyan Zhu, Yanping Wang, Jianhua Huang, Francesco Pennacchio, Michael R. Strand, Xue‐Xin Chen · 发表于:BMC Genomics · 年份:2019 · DOI:10.1186/s12864-019-6266-0 · 被引用次数:32 · 研究领域:Invertebrate Immune Response Mechanisms、Neurobiology and Insect Physiology Research、Insect-Plant Interactions and Control

BACKGROUND: Parasitic insects are well-known biological control agents for arthropod pests worldwide. They are capable of regulating their host's physiology, development and behaviour. However, many of the molecular mechanisms involved in host-parasitoid interaction remain unknown. RESULTS: We sequenced the genomes of two parasitic wasps (Cotesia vestalis, and Diadromus collaris) that parasitize the diamondback moth Plutella xylostella using Illumina and Pacbio sequencing platforms. Genome assembly using SOAPdenovo produced a 178 Mb draft genome for C. vestalis and a 399 Mb draft genome for D. collaris. A total set that contained 11,278 and 15,328 protein-coding genes for C. vestalis and D. collaris, respectively, were predicted using evidence (homology-based and transcriptome-based) and de novo prediction methodology. Phylogenetic analysis showed that the braconid C. vestalis and the ichneumonid D. collaris diverged approximately 124 million years ago. These two wasps exhibit gene gains and losses that in some cases reflect their shared life history as parasitic wasps and in other cases are unique to particular species. Gene families with functions in development, nutrient acquisition from hosts, and metabolism have expanded in each wasp species, while genes required for biosynthesis of some amino acids and steroids have been lost, since these nutrients can be directly obtained from the host. Both wasp species encode a relative higher number of neprilysins (NEPs) thus far re...