首页> 美国卫生研究院文献>Journal of Insect Science >Helicoverpa zea (Lepidoptera: Noctuidae) and Spodoptera frugiperda (Lepidoptera: Noctuidae) Responses to Sorghum bicolor (Poales: Poaceae) Tissues From Lowered Lignin Lines
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Helicoverpa zea (Lepidoptera: Noctuidae) and Spodoptera frugiperda (Lepidoptera: Noctuidae) Responses to Sorghum bicolor (Poales: Poaceae) Tissues From Lowered Lignin Lines

机译:降低木质素谱系对高粱双色(Poales:禾本科)组织的Helicoverpa zea(鳞翅目:夜蛾科)和Spodoptera frugiperda(鳞翅目:夜蛾科)响应

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摘要

The presence of lignin within biomass impedes the production of liquid fuels. Plants with altered lignin content and composition are more amenable to lignocellulosic conversion to ethanol and other biofuels but may be more susceptible to insect damage where lignin is an important resistance factor. However, reduced lignin lines of switchgrasses still retained insect resistance in prior studies. Therefore, we hypothesized that sorghum lines with lowered lignin content will also retain insect resistance. Sorghum excised leaves and stalk pith Sorghum bicolor (L.) Moench (Poales: Poaceae) from near isogenic brown midrib (bmr) 6 and 12 mutants lines, which have lowered lignin content and increased lignocellulosic ethanol conversion efficiency, were examined for insect resistance relative to wild-type (normal BTx623). Greenhouse and growth chamber grown plant tissues were fed to first-instar larvae of corn earworms, Helicoverpa zea (Boddie) and fall armyworms Spodoptera frugiperda (J.E. Smith) (Lepidoptera: Noctuidae), two sorghum major pests. Younger bmr leaves had significantly greater feeding damage in some assays than wild-type leaves, but older bmr6 leaves generally had significantly less damage than wild-type leaves. Caterpillars feeding on the bmr6 leaves often weighed significantly less than those feeding on wild-type leaves, especially in the S. frugiperda assays. Larvae fed the pith from bmr stalks had significantly higher mortality compared with those larvae fed on wild-type pith, which suggested that bmr pith was more toxic. Thus, reducing lignin content or changing subunit composition of bioenergy grasses does not necessarily increase their susceptibility to insects and may result in increased resistance, which would contribute to sustainable production.
机译:生物质中木质素的存在阻碍了液体燃料的生产。木质素含量和组成发生变化的植物更容易将木质纤维素转化为乙醇和其他生物燃料,但在木质素是重要的抗性因子的情况下,它们可能更容易受到昆虫的伤害。然而,在先前的研究中,柳枝switch的木质素线减少仍然保留了昆虫抗性。因此,我们假设木质素含量降低的高粱品系也将保留昆虫抗性。检查了来自近等基因棕色中脉(bmr)6和12突变体品系的高粱切叶和茎髓高粱双色(L.)Moench(Poales:禾本科),它们降低了木质素含量并提高了木质纤维素乙醇转化效率,相对于昆虫具有抗性为野生型(正常BTx623)。温室和生长室中生长的植物组织被喂食了玉米穗虫,Helicoverpa zea(Boddie)和秋夜蛾蠕虫Spodoptera frugiperda(J.E. Smith)(鳞翅目:Noctuidae)这两种高粱主要害虫的第一龄幼虫。在某些试验中,较年轻的bmr叶片比野生型叶片具有更大的进食损伤,但较老的bmr6叶片通常比野生型叶片具有明显更少的损伤。以bmr6叶片为食的毛毛虫的体重通常比以野生型叶片为食的毛毛虫轻得多,尤其是在S. frugiperda分析中。用bmr秸秆喂食幼虫的幼虫死亡率比用野生型髓取食幼虫的死亡率高得多,这表明bmr髓毒更具毒性。因此,降低木质素含量或改变生物能源草的亚基组成并不一定会增加其对昆虫的敏感性,并可能导致抗药性增加,这将有助于可持续生产。

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