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首页> 外文期刊>Anzeiger fur Schadlingskunde >Interactions between the striped stem borer Chilo suppressalis (Walk.) (Lep., Pyralidae) larvae and rice plants in response to nitrogen fertilization
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Interactions between the striped stem borer Chilo suppressalis (Walk.) (Lep., Pyralidae) larvae and rice plants in response to nitrogen fertilization

机译:氮肥对条带化bore蛀虫幼虫和水稻植株之间的相互作用

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摘要

A screenhouse experiment was conducted to examine the damage and compensation in rice plants when injured by the striped stem borer, Chilo suppressalis (Walker), larvae at tillering stage, as well as larval survival and development of the insect at different nitrogen (N) fertilization levels. Potted plants were fertilized at late seedling stage at the rates 0, 200, 400, 600 and 800 mgN/pot, respectively. More deadheads were caused as fertilization increased. Plants compensated well for injury at the fertilization concentrations of 200 and 400 mgN/pot by producing new tillers, but such compensation did not take place at 600 and 800 mgN/pot. Two weeks after infestation, the highest number of remaining healthy tillers was found in plants fertilized at 400 mgN/pot. Larval survival varied little among the treatments 200 to 800 mgN/pot. Larval weight attainment and/or developmental rate increased with increasing fertilization level from 200 to 600 mgN/pot, but both declined rapidly as fertilization reached 800 mgN/pot, indicating the great dependence of plant suitability on N fertilization levels. Conclusively, both the compensation response of rice plants and their suitability for C. suppressalis larvae could be significantly affected by N fertilization levels.
机译:进行了一个筛选试验,以检查水稻在条带化bore虫,Chilohibialis(Walker),分lar期幼虫受伤时的伤害和补偿,以及在不同氮肥条件下昆虫的幼虫存活和发育。水平。盆栽植物在幼苗后期分别以0、200、400、600和800 mgN / pot的速度施肥。随着施肥的增加,造成更多的死角。通过生产新的分till,植物在200和400 mgN /盆的施肥浓度下能很好地补偿伤害,但是在600和800 mgN /盆的施肥条件下却没有补偿。侵染两周后,在以400 mgN /盆施肥的植物中发现了最多的健康分till。在200至800 mgN /罐的处理中,幼虫存活率变化很小。随着施肥水平从200 mgN /盆提高到幼虫体重和/或发育速率增加,但当施肥水平达到800 mgN /盆时两者均迅速下降,表明植物适应性对N施肥水平的依赖性很大。结论是,施氮水平显着影响水稻的补偿反应及其对抑制隐孢子虫幼虫的适应性。

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