首页> 外文期刊>Acta tropica: Journal of Biomedical Sciences >Towards mosquito sterile insect technique programmes: Exploring genetic, molecular, mechanical and behavioural methods of sex separation in mosquitoes
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Towards mosquito sterile insect technique programmes: Exploring genetic, molecular, mechanical and behavioural methods of sex separation in mosquitoes

机译:迈向蚊子不育昆虫技术计划:探索蚊子性别分离的遗传,分子,机械和行为方法

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When considering a mosquito release programme, one of the first issues to be addressed is how to eliminate/separate the females. The greatest number of options might eventually be available for those who can use transgenic mosquitoes, but the inherent characteristics of the target species may also provide possibilities for interim measures until more efficient methods can be developed. Differences in intrinsic size, in behaviour and in development rate between females and males are often available and useful for sexing. Efficient species-specific systems for eliminating females at the embryo stage have been developed, but most have since been discarded due to lack of use. Ideal systems specifically kill female embryos using some treatment that can be manipulated during production. Such killing systems are far more efficient than using intrinsic sexual differences, but they systems require selectable genetic markers and sex-linkage created by rare random chromosomal rearrangements. While intrinsic sexual differences should not be considered as long-term candidates for the development of robust and efficient sexing approaches, in the absence of these, the accessibility and integration of less efficient systems can provide a stop-gap measure that allows rapid start up with a minimum of investment. The International Atomic Energy Agency is funding over a 5 year period (2013-2018) a new Coordinated Research Project on "Exploring Genetic, Molecular, Mechanical and Behavioural Methods of Sex Separation in Mosquitoes" to network researchers and to address the critical need of genetic sexing strains for the implementation of the sterile insect technique (using radiation-sterilised or transgenic male mosquitoes) and for insect incompatibility technique programmes against disease-transmitting mosquitoes.
机译:在考虑释放蚊子的方案时,要解决的首要问题之一是如何消除/分隔雌性。最终可能会为使用转基因蚊子的人提供最大数量的选择,但是目标物种的固有特征也可能为采取临时措施提供可能性,直到可以开发出更有效的方法为止。男女之间内在的大小,行为和发育速度上的差异通常是可用的,并且有助于进行性别区分。已经开发出在胚胎阶段消除雌性的有效物种特异性系统,但是由于缺乏使用,大多数系统已被丢弃。理想的系统使用可以在生产过程中操纵的某些处理方法专门杀死雌性胚胎。这种杀人系统比使用内在的性别差异要有效得多,但是它们需要选择性的遗传标记和由罕见的随机染色体重排产生的性别联系。虽然内在的性别差异不应该被视为开发可靠,高效的性爱方法的长期候选者,但是如果没有这些,则效率较低的系统的可访问性和集成性可以提供一个权宜之计,从而可以快速启动。最少的投资。国际原子能机构将在5年内(2013-2018年)资助一项新的协调研究项目,即“探索蚊子中性别分离的遗传,分子,机械和行为方法”,以联系网络研究人员并解决遗传的关键需求性菌株,用于实施无菌昆虫技术(使用经过辐射灭菌或转基因的雄性蚊子)以及针对疾病传播蚊子的昆虫不相容技术计划。

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