National Engineering Research Center of Sugarcane, Fujian Agricultural and Forestry University, Fuzhou 350002, China.
National Engineering Research Center of Sugarcane, Fujian Agricultural and Forestry University, Fuzhou 350002, China.
Pestic Biochem Physiol. 2019 Jun;157:186-195. doi: 10.1016/j.pestbp.2019.03.023. Epub 2019 Apr 3.
The sugarcane shoot borer Chilo infuscatellus (Snellen) is known for causing severe damage to sugarcane yield in China. Methods have been developed to control this pest, including Cry toxin pesticide and transgenic Bt plants. In order to investigate the molecular mechanism of the Cry toxin binding process and provide a basis for understanding the insect's resistance mechanism, we used a high throughput sequencing platform to perform a de novo transcriptome assembly across different larval developmental stages and analyzed Cry toxin receptors based on our assembled transcripts. We cloned twelve Cry toxin receptor genes including 1 cadherin (Cad), 7 aminopeptidase-Ns (APNs), 3 alkaline phosphatases (ALPs), and 1 ATP-binding cassette transporter subfamily C2 (ABCC2), and three of them with full length. The sublethal dosage of Cry1Ac toxin was applied to sugarcane shoot borer and identified some Cry toxin receptor genes that were significantly induced after 48 h of exposure. Furthermore, quantitative RT-PCR was conducted to detect the expression profiles of these genes. Our transcriptome sequence data provided a valuable molecular resource for further study and the identified Cry toxin receptor data gave insights for improved research into the mechanism of Bt resistance.
中国的甘蔗钻心虫(Chilo infuscatellus (Snellen))以对甘蔗产量造成严重破坏而闻名。已经开发出一些方法来控制这种害虫,包括 Cry 毒素农药和转基因 Bt 植物。为了研究 Cry 毒素结合过程的分子机制,并为了解昆虫的抗药性机制提供依据,我们使用高通量测序平台对不同幼虫发育阶段进行从头转录组组装,并基于组装的转录本分析 Cry 毒素受体。我们克隆了 12 个 Cry 毒素受体基因,包括 1 个钙粘蛋白(Cad)、7 个氨肽酶-Ns(APNs)、3 个碱性磷酸酶(ALPs)和 1 个 ATP 结合盒转运蛋白亚家族 C2(ABCC2),其中 3 个具有全长。将亚致死剂量的 Cry1Ac 毒素施用于甘蔗钻心虫,并在暴露 48 小时后鉴定出一些 Cry 毒素受体基因显著诱导。此外,还进行了定量 RT-PCR 检测这些基因的表达谱。我们的转录组序列数据为进一步研究提供了有价值的分子资源,鉴定出的 Cry 毒素受体数据为深入研究 Bt 抗性机制提供了新的思路。