CRISPR/Cas9-mediated knockout of scarlet gene produces eye color mutants in the soybean looper, Chrysodeixis includens

IF 1.5 4区 农林科学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Archives of Insect Biochemistry and Physiology Pub Date : 2024-03-19 DOI:10.1002/arch.22100
Sujin Lee, Seung-Joon Ahn
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Abstract

The CRISPR/Cas9 technology has greatly progressed research on non-model organisms, demonstrating successful applications in genome editing for various insects. However, its utilization in the case of the soybean looper, Chrysodeixis includens, a notable pest affecting soybean crops, has not been explored due to constraints such as limited genomic information and the embryonic microinjection technique. This study presents successful outcomes in generating heritable knockout mutants for a pigment transporter gene, scarlet, in C. includens through CRISPR/Cas9-mediated mutagenesis. The scarlet locus identified in the genome assembly of C. includens consists of 14 exons, with a coding sequence extending for 1,986 bp. Two single guide RNAs (sgRNAs) were designed to target the first exon of scarlet. Microinjection of these two sgRNAs along with the Cas9 protein into fresh embryos resulted in the successful production of variable phenotypes, particularly mutant eyes. The observed mutation rate accounted for about 16%. Genotype analysis revealed diverse indel mutations at the target site, presumably originating from double-strand breaks followed by the nonhomologous end joining repair, leading to a premature stop codon due to frame shift. Single-pair mating of the mutant moths produced G1 offspring, and the establishment of a homozygous mutant strain occurred in G2. The mutant moths exhibited lightly greenish or yellowish compound eyes in both sexes, confirming the involvement of scarlet in pigmentation in C. includens. Notably, the CRISPR/Cas9-mediated genome editing technique serves as a visible phenotypic marker, demonstrating its proof-of-concept applicability in C. includens, as other pigment transporter genes have been utilized as visible markers to establish genetic control for various insects. These results provide the first successful case that the CRISPR/Cas9 method effectively induces mutations in C. includes, an economically important soybean insect pest.

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CRISPR/Cas9 介导的猩红色基因敲除产生了大豆环斑虫 Chrysodeixis includens 的眼色突变体。
CRISPR/Cas9 技术极大地推动了对非模式生物的研究,成功应用于各种昆虫的基因组编辑。然而,由于基因组信息有限和胚胎显微注射技术等限制,该技术在影响大豆作物的著名害虫大豆环斑虫(Chrysodeixis includens)中的应用尚未得到探索。本研究介绍了通过 CRISPR/Cas9 介导的诱变,在 C. includens 中产生色素转运体基因 scarlet 遗传敲除突变体的成功结果。在 C. includens 的基因组组装中确定的猩红基因座由 14 个外显子组成,编码序列长达 1,986 bp。针对猩红的第一个外显子设计了两种单导核糖核酸(sgRNA)。将这两种 sgRNA 与 Cas9 蛋白一起显微注射到新鲜胚胎中,成功地产生了不同的表型,尤其是突变眼。观察到的突变率约为 16%。基因型分析表明,在目标位点上出现了多种嵌合突变,这些突变可能来自双链断裂后的非同源末端连接修复,从而导致因帧移位而过早出现终止密码子。突变蛾的单对交配产生了 G1 后代,并在 G2 中建立了同源突变株。突变蛾的雌雄复眼均呈淡绿色或淡黄色,证实了猩红参与了 C. includeens 的色素沉着。值得注意的是,CRISPR/Cas9 介导的基因组编辑技术可作为一种可见的表型标记,这证明了它在 C. includeens 中的概念验证适用性,因为其他色素转运体基因已被用作可见标记来建立各种昆虫的遗传控制。这些结果提供了第一个成功案例,说明 CRISPR/Cas9 方法能有效诱导包括 C. 在内的一种具有重要经济价值的大豆害虫发生突变。
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来源期刊
CiteScore
4.30
自引率
4.50%
发文量
115
审稿时长
12 months
期刊介绍: Archives of Insect Biochemistry and Physiology is an international journal that publishes articles in English that are of interest to insect biochemists and physiologists. Generally these articles will be in, or related to, one of the following subject areas: Behavior, Bioinformatics, Carbohydrates, Cell Line Development, Cell Signalling, Development, Drug Discovery, Endocrinology, Enzymes, Lipids, Molecular Biology, Neurobiology, Nucleic Acids, Nutrition, Peptides, Pharmacology, Pollinators, Proteins, Toxicology. Archives will publish only original articles. Articles that are confirmatory in nature or deal with analytical methods previously described will not be accepted.
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