Xu Pengdan, Wang Zeyu, Zhang Ying, Han Jiaxing, Shu Changlong, Liao Min, Zhang Jie, Geng Lili
School of Plant Protection, Anhui Agricultural University, Hefei 230026, China.
State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing 100193, China.
Int J Mol Sci. 2025 Apr 8;26(8):3497. doi: 10.3390/ijms26083497.
The larvae of feed on plant leaves, causing significant losses to forestry and agricultural production. At present, genes such as and are mainly used to control . To delay the problem of pest resistance induced by a single insecticidal gene, it is crucial to discover and develop new insecticidal genes or gene combinations. This study found and showed insecticidal activity against . The toxicity of 14 mutants of Cry9Aa3 was analyzed and the LC of the triple-amino-acid substitution mutant 316LRG318AAA was 3.69 μg/g, which represents a 1.49-fold increase in insecticidal activity compared to Cry9Aa3. Additionally, enhanced stability of this mutant was detected in the midgut juice of . Cry9Aa3 and 316LRG318AAA, in combination with Cry1Ah, demonstrated synergistic effects against , with synergistic factors of 4.76 and 8.33, respectively. This study has identified the mutant 316LRG318AAA and its combination with Cry1Ah as exhibiting high toxicity against , providing valuable genetic resources for the development of transgenic poplars and holding significant importance for delaying resistance in this pest.
[害虫名称]的幼虫以植物叶片为食,给林业和农业生产造成重大损失。目前,[杀虫基因名称1]和[杀虫基因名称2]等基因主要用于防治[害虫名称]。为延缓单一杀虫基因引起的害虫抗性问题,发现和开发新的杀虫基因或基因组合至关重要。本研究发现[基因名称]对[害虫名称]具有杀虫活性。分析了Cry9Aa3的14个突变体的毒性,三氨基酸取代突变体316LRG318AAA的LC50为3.69μg/g,与Cry9Aa3相比,其杀虫活性提高了1.49倍。此外,在[昆虫名称]的中肠液中检测到该突变体的稳定性增强。Cry9Aa3和316LRG318AAA与Cry1Ah组合,对[害虫名称]表现出协同作用,协同因子分别为4.76和8.33。本研究鉴定出突变体316LRG318AAA及其与Cry1Ah的组合对[害虫名称]具有高毒性,为转基因杨树的开发提供了有价值的遗传资源,对延缓该害虫的抗性具有重要意义。