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基因导入方法及其在赤拟谷盗(鞘翅目:拟步甲科)中具有强烈抗磷化氢能力的基因的潜在成本。

The Gene Introgression Approach and the Potential Cost of Genes that Confer Strong Phosphine Resistance in Red Flour Beetle (Coleoptera: Tenebrionidae).

机构信息

Department of Agriculture and Fisheries, Queensland, Ecosciences Precinct, Brisbane, QLD, Australia.

Department of Zoology, University of Otago, Dunedin, New Zealand.

出版信息

J Econ Entomol. 2020 Jun 6;113(3):1547-1554. doi: 10.1093/jee/toaa033.

DOI:10.1093/jee/toaa033
PMID:32170301
Abstract

Resistance in pest insects to the grain fumigant phosphine (PH3) poses a threat to trade and food security. The possible pleiotropic effects of PH3 resistance on development and reproduction were investigated in the red flour beetle, Tribolium castaneum (Herbst), by introgressing two genes known to be major contributors to strong resistance (tc_rph1 and tc_rph2) into a susceptible background. The tc_rph2 allele was the G135S variant, whereas the identity of tc_rph1 allele was unknown but could have been one of the three known variants (L119W, V123F, or S349G). The introgressed resistant strain was 288× more resistant than the susceptible strain, based on mortality after a 20 h fumigation with PH3. Molecular screening confirmed that the introgressed strain was homozygous for the resistance genes, but was otherwise indistinguishable from the susceptible strain based on screening with 12 neutral DNA markers. We found no differences of consequence in developmental time between the susceptible and introgressed resistant strains. Similarly, the number of F1 adults produced by these strains was more or less equal, as was the weight of individual F1 adults. The conclusions remained the same regardless of whether the experiments were conducted on a flour-based medium or wheat. Thus, we found no evidence that being fully strongly PH3 resistant (i.e., homozygous for tc_rph1 and tc_rph2) has major consequences in terms of development or reproduction in T. castaneum.

摘要

害虫对谷物熏蒸剂磷化氢(PH3)的抗性对贸易和粮食安全构成威胁。本研究通过将两个已知对强抗性有主要贡献的基因(tc_rph1 和 tc_rph2)导入敏感背景,调查了红粉甲虫(Tribolium castaneum(Herbst))中 PH3 抗性对发育和繁殖的可能多效性影响。tc_rph2 等位基因是 G135S 变体,而 tc_rph1 等位基因的身份未知,但可能是三个已知变体之一(L119W、V123F 或 S349G)。基于 PH3 熏蒸 20 小时后的死亡率,导入的抗性品系比敏感品系抗性高 288 倍。分子筛选证实,导入的品系对抗性基因纯合,但基于 12 个中性 DNA 标记的筛选,与敏感品系无法区分。我们没有发现敏感品系和导入的抗性品系之间在发育时间上有任何显著差异。同样,这些品系产生的 F1 成虫数量或多或少相等,个体 F1 成虫的体重也相等。无论实验是在面粉基培养基还是小麦上进行,结论都是一样的。因此,我们没有发现完全强烈 PH3 抗性(即 tc_rph1 和 tc_rph2 纯合)在 T. castaneum 的发育或繁殖方面有重大影响的证据。

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引用本文的文献

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Mol Biol Rep. 2023 Aug;50(8):6569-6578. doi: 10.1007/s11033-023-08605-z. Epub 2023 Jun 20.