The Genome of the Yellow Mealworm, Tenebrio molitor: It's Bigger Than You Think

被引:8
|
作者
Oppert, Brenda [1 ]
Dossey, Aaron T. [2 ,3 ]
Chu, Fu-Chyun [2 ,9 ]
Satovic-Vuksic, Eva [4 ]
Plohl, Miroslav [4 ]
Smith, Timothy P. L. [5 ]
Koren, Sergey [6 ]
Olmstead, Morgan L. [1 ,10 ]
Leierer, Dewey [7 ]
Ragan, Gail [1 ]
Johnston, J. Spencer [8 ]
Kuznetsova, Valentina G.
机构
[1] USDA ARS, Ctr Grain & Anim Hlth Res, 1515 Coll Ave, Manhattan, KS 66502 USA
[2] All Things Bugs LLC, 755 Res Pkwy,Suite 465, Oklahoma City, OK 73130 USA
[3] Invertebrate Studies Inst, 2211 Snapper Ln, Midwest City, OK 73130 USA
[4] Rudjer Boskovic Inst, Div Mol Biol, Bijenicka 54, Zagreb 10000, Croatia
[5] USDA ARS, US Meat Anim Res Ctr, Clay Ctr, NE 68933 USA
[6] Natl Human Genome Res Inst, Genome Informat Sect, Computat & Stat Genom Branch, NIH, Bethesda, MD 20894 USA
[7] Kansas State Univ, Dept Mol Biol & Biophys, Manhattan, KS 66506 USA
[8] Texas A&M Univ, Dept Entomol, College Stn, TX 77843 USA
[9] Arana Biosci, 75 Moulton St, Cambridge, MA 02138 USA
[10] North Carolina State Univ, Dept Entomol & Plant Pathol, Raleigh, NC 27606 USA
关键词
CRISPR Cas9 gene editing; insects as food and feed; insect genomics and genetics; stored product insect; Tenebrio molitor; yellow mealworm; SATELLITE DNA; WEB SERVER; SEQUENCE; ANNOTATION; ELEMENTS; BEETLE; FOOD;
D O I
10.3390/genes14122209
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Background: Insects are a sustainable source of protein for human food and animal feed. We present a genome assembly, CRISPR gene editing, and life stage-specific transcriptomes for the yellow mealworm, Tenebrio molitor, one of the most intensively farmed insects worldwide. Methods: Long and short reads and long-range data were obtained from a T. molitor male pupa. Sequencing transcripts from 12 T. molitor life stages resulted in 279 million reads for gene prediction and genetic engineering. A unique plasmid delivery system containing guide RNAs targeting the eye color gene vermilion flanking the muscle actin gene promoter and EGFP marker was used in CRISPR/Cas9 transformation. Results: The assembly is approximately 53% of the genome size of 756.8 +/- 9.6 Mb, measured using flow cytometry. Assembly was complicated by a satellitome of at least 11 highly conserved satDNAs occupying 28% of the genome. The injection of the plasmid into embryos resulted in knock-out of Tm vermilion and knock-in of EGFP. Conclusions: The genome of T. molitor is longer than current assemblies (including ours) due to a substantial amount (26.5%) of only one highly abundant satellite DNA sequence. Genetic sequences and transformation tools for an insect important to the food and feed industries will promote the sustainable utilization of mealworms and other farmed insects.
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页数:20
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  • [1] EPIZOOTICS AMONG POPULATIONS OF YELLOW MEALWORM TENEBRIO MOLITOR
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