将杀虫杂交基因工程植入马铃薯叶绿体基因组,有望控制科罗拉多马铃薯甲虫(鞘翅目:蝶形目)。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-12-01 Epub Date: 2023-09-14 DOI:10.1007/s11248-023-00366-6
Md Jakir Hossain, Allah Bakhsh, Faiz Ahmad Joyia, Emre Aksoy, Neslihan Zahide Özturk Gökçe, Muhammad Sarwar Khan
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引用次数: 0

摘要

用密码子优化合成的杂交啼哭基因(SN19)转化马铃薯叶绿体,以减轻科罗拉多马铃薯甲虫(CPB)对作物造成的损失。轰击后的外植体(叶片和节间)在添加了 BAP(2.0 毫克/升)、NAA(0.2 毫克/升)、TDZ(2.0 毫克/升)和 GA3(0.1 毫克/升)的 MS 培养基上培养;培养基中使用 50 毫克/升的光谱霉素作为选择剂。栽培品种黑田的叶片外植体诱导出的胼胝体比例最高(92%),栽培品种三泰产生的转殖体芽比例最高(85.7%)。三泰和挑战者的芽再生率为 9.6%,其次是简单红(8.8%)。在 21 个对光谱霉素有抗性的植株中,PCR 扩增得到了 16 个阳性的移殖体植株。目标基因整合通过 PCR 和 Southern 印迹得到确认,而 RT-qPCR 则用于评估转基因的表达水平。激光扫描共聚焦显微镜跟踪了视觉标记基因 gfp 的定位,证实了它在叶肉细胞叶绿体中的表达。转殖体植株确保了幼虫和成虫的高死亡率。与对照植物相比,以转殖体叶片为饲料的 CPB 的叶片消耗量和增重都较低。当前研究成果的成功实施将为解决CPB导致的全球马铃薯损失问题提供可行的解决方案。
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Engineering of insecticidal hybrid gene into potato chloroplast genome exhibits promising control of Colorado potato beetle, Leptinotarsa decemlineata (Coleoptera: Chrysomelidae).

The potato chloroplast was transformed with codon optimized synthetic hybrid cry gene (SN19) to mitigate crop losses by Colorado potato beetle (CPB). The bombarded explants (leaves and internode) were cultured on MS medium supplemented with BAP (2.0 mg/l), NAA (0.2 mg/l), TDZ (2.0 mg/l) and GA3 (0.1 mg/l); spectinomycin 50 mg/l was used as a selection agent in the medium. Leaf explants of cultivar Kuroda induced highest percentage (92%) of callus where cultivar Santae produced the highest percentage (85.7%) of transplastomic shoots. Sante and Challenger showed 9.6% shoot regeneration efficiency followed by cultivar Simply Red (8.8%). PCR amplification yielded 16 postive transplastomic plantlets out of 21 spectinomycin resistant ones. Target gene integration was confirmed by PCR and Southern blot, whereas RT-qPCR was used to assess the expression level of transgene. The localization of visual marker gene gfp was tracked by laser scanning confocal microscopy which confirmed its expression in chloroplasts of leaf cells. The transplastomic plants ensured high mortality to both larvae and adult CPB. Foliage consumption and weight gain of CPB fed on transplastomic leaves were lower compared to the control plants. Sucessful implementation of current research findings can lead to a viable solution to CPB mediated potato losses globally.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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