The chromosome-level genome of Chinese praying mantis Tenodera sinensis (Mantodea: Mantidae) reveals its biology as a predator

Author:

Yuan Ruizhong12ORCID,Zheng Boying12ORCID,Li Zekai12,Ma Xingzhou12,Shu Xiaohan123ORCID,Qu Qiuyu123,Ye Xiqian12,Li Sheng45ORCID,Tang Pu12ORCID,Chen Xuexin123ORCID

Affiliation:

1. Institute of Insect Sciences, College of Agriculture and Biotechnology, Zhejiang University , Hangzhou 310058 , China

2. State Key Lab of Rice Biology, Ministry of Agriculture Key Lab of Molecular Biology of Crop Pathogens and Insects, and Zhejiang Provincial Key Laboratory of Biology of Crop Pathogens and Insects, Zhejiang University , Hangzhou 310058 , China

3. Hainan Institute, Zhejiang University , Sanya 572025 , China

4. Guangdong Provincial Key Laboratory of Insect Developmental Biology and Applied Technology, Institute of Insect Science and Technology, School of Life Sciences, South China Normal University , Guangzhou 510631 , China

5. Guangmeiyuan R&D Center, Guangdong Provincial Key Laboratory of Insect Developmental Biology and Applied Technology, South China Normal University , Meizhou 514779 , China

Abstract

Abstract Background The Chinese praying mantis, Tenodera sinensis (Saussure), is a carnivorous insect that preys on a variety of arthropods and small vertebrates, including pest species. Several studies have been conducted to understand its behavior and physiology. However, there is limited knowledge about the genetic information underlying its genome evolution, digestive demands, and predatory behaviors. Findings Here we have assembled the chromosome-level genome of T. sinensis, representing the first sequenced genome of the family Mantidae, with a genome size of 2.54 Gb and scaffold N50 of 174.78 Mb. Our analyses revealed that 98.6% of BUSCO genes are present, resulting in a well-annotated assembly compared to other insect genomes, containing 25,022 genes. The reconstructed phylogenetic analysis showed the expected topology placing the praying mantis in an appropriate position. Analysis of transposon elements suggested the Gypsy/Dirs family, which belongs to long terminal repeat (LTR) transposons, may be a key factor resulting in the larger genome size. The genome shows expansions in several digestion and detoxification associated gene families, including trypsin and glycosyl hydrolase (GH) genes, ATP-binding cassette (ABC) transporter, and carboxylesterase (CarE), reflecting the possible genomic basis of digestive demands. Furthermore, we have found 1 ultraviolet-sensitive opsin and 2 long-wavelength-sensitive (LWS) opsins, emphasizing the core role of LWS opsins in regulating predatory behaviors. Conclusions The high-quality genome assembly of the praying mantis provides a valuable repository for studying the evolutionary patterns of the mantis genomes and the gene expression profiles of insect predators.

Funder

National Natural Science Foundation of China

Provincial Key Research and Development Plan of Zhejiang

Fundamental Research Funds for the Central Universities

Publisher

Oxford University Press (OUP)

Subject

Computer Science Applications,Health Informatics

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