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Unanticipated benefits and potential ecological costs associated with pyramiding leafhopper resistance loci in rice

机译:与水稻中的叶蝉抗性基因座相关联的意外收益和潜在的生态成本

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摘要

We tested the hypotheses that increasing the number of anti-herbivore resistance loci in crop plants will increase resistance strength, increase the spectrum of resistance (the number of species affected), and increase resistance stability. We further examined the potential ecological costs of pyramiding resistance under benign environments. In our experiments, we used 14 near-isogenic rice lines with zero (T65: recurrent parent), one, two or three resistance loci introgressed through marker-assisted selection. Lines with two or more loci that were originally bred for resistance to the green rice leafhopper, Nephotettix cincticeps, significantly reduced egg-laying by the green leafhopper, N. virescens. Declines in egg-number and in nymph weight were correlated with the numbers of resistance loci in the rice lines. To test the spectrum of resistance, we challenged the lines with a range of phloem feeders including the zig-zag leafhopper, Recilia dorsalis, brown planthopper, Nilaparvata lugens, and whitebacked planthopper, Sogatella furcifera. There was an increase in the number of tested species showing significant declines in egg-laying and nymph survival on lines with increasing numbers of loci. In a screen house trial that varied rates of nitrogenous fertilizer, a line with three loci had stable resistance against the green leafhopper and the grain yields of infested plants were maintained or increased (overcompensation). Under benign conditions, plant growth and grain yields declined with increasing numbers of resistance loci. However, under field conditions with natural exposure to herbivores, there were no significant differences in final yields. Our results clearly indicate the benefits, including unanticipated benefits such as providing resistance against multiple herbivore species, of pyramiding anti-herbivore resistance genes/loci in crop plants. We discuss our results as part of a review of existing research on pyramided resistance against leafhoppers and planthoppers in rice. We suggest that potential ecological costs may be overcome by the careful selection of gene combinations for pyramiding, avoidance of high (potentially redundant) loci numbers, and introgression of loci into robust plant types such as hybrid rice varieties.
机译:我们测试了以下假设:增加作物植物中的抗草食动物抗性基因座的数量将增加抗性强度,增加抗性谱(受影响物种的数量),并增加抗性稳定性。我们进一步研究了在良性环境下抗金字塔效应的潜在生态成本。在我们的实验中,我们使用14个近等基因水稻品系,其零位(T65:轮回亲本),通过标记辅助选择渗入的1个,2个或3个抗性基因座。最初育有两个或多个基因座的品系最初是对绿色稻飞虱(Nephotettix cincticeps)产生抗性而育成的,大大减少了绿色稻飞虱(N. virescens)产卵。卵数和若虫重量的下降与水稻品系中抗性基因座的数量相关。为了测试抗性谱,我们用一系列韧皮部喂食器挑战了这些韧皮系,包括曲折形叶蝉,黄Rec,棕飞虱,褐飞虱和白背飞虱。随着位点数量的增加,受试物种的数量增加,表明产卵和若虫的存活率显着下降。在不同氮肥施用量的筛选试验中,具有三个基因座的品系对绿叶蝉具有稳定的抗性,受侵染植物的谷物产量得以维持或增加(过度补偿)。在良性条件下,植物生长和谷物产量随抗性基因座数目的增加而下降。然而,在自然接触草食动物的田间条件下,最终产量没有显着差异。我们的结果清楚地表明了作物植物中抗草食动物抗性基因/基因座的金字塔效应,包括未曾预料到的益处,例如提供了对多种食草动物的抗性。我们讨论我们的结果,作为对水稻对叶蝉和飞虱的金字塔抗性的现有研究的综述的一部分。我们建议,通过精心选择用于金字塔的基因组合,避免高(潜在冗余)基因座数量以及将基因座渗入健壮植物类型(例如杂交水稻品种)中,可以克服潜在的生态成本。

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