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将小麦中抗麦二叉蚜(同翅目:蚜科)基因进行聚合的效果

Efficacy of pyramiding greenbug (Homoptera: Aphididae) resistance genes in wheat.

作者信息

Porter D R, Burd J D, Shufran K A, Webster J A

机构信息

Plant Science and Water Conservation Research Laboratory, United States Department of Agriculture, Agricultural Research Service, Stillwater, OK 74075-2714, USA.

出版信息

J Econ Entomol. 2000 Aug;93(4):1315-8. doi: 10.1603/0022-0493-93.4.1315.

Abstract

Durable resistance to greenbug, Schizaphis graminum (Rondani), in wheat is a goal of wheat improvement teams, and one that has been complicated by the regular occurrence of damaging biotypes. Simulation modeling studies suggest that pyramiding resistance genes, i.e., combining more than one resistance gene in a single cultivar or hybrid, may provide more durable resistance than sequential releases of single genes. We examined this theory by pyramiding resistance genes in wheat and testing a series of greenbug biotypes. Resistance genes Gb2, Gb3, and Gb6, and pyramided genes Gb2/Gb3, Gb2/Gb6, and Gb3/Gb6 were tested for effectiveness against biotypes E, F, G, H, and I. By comparing reactions of plants with pyramided genes to those with single resistance genes, we found that pyramiding provided no additional protection over that conferred by the single resistance genes. Based on the results of this test, we concluded that the sequential release of single resistance genes, combined with careful monitoring of greenbug population biotypes, is the most effective gene deployment strategy for greenbug resistance in wheat.

摘要

培育对麦二叉蚜(Schizaphis graminum (Rondani))具有持久抗性的小麦品种是小麦改良团队的目标之一,但由于具有破坏性的生物型频繁出现,这一目标变得复杂。模拟建模研究表明,将抗性基因聚合,即在单一品种或杂交种中组合多个抗性基因,可能比逐个释放单个基因提供更持久的抗性。我们通过在小麦中聚合抗性基因并测试一系列麦二叉蚜生物型来检验这一理论。对抗性基因Gb2、Gb3和Gb6以及聚合基因Gb2/Gb3、Gb2/Gb6和Gb3/Gb6针对生物型E、F、G、H和I的有效性进行了测试。通过比较聚合基因植株与单个抗性基因植株的反应,我们发现聚合并没有比单个抗性基因提供额外的保护。基于该测试结果,我们得出结论,逐个释放单个抗性基因,并结合对麦二叉蚜种群生物型的仔细监测,是小麦抗麦二叉蚜最有效的基因部署策略。

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