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首页> 外文期刊>Entomologia Experimentalis et Applicata >Silicon impedes stalk penetration by the borer Eldana saccharina in sugarcane
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Silicon impedes stalk penetration by the borer Eldana saccharina in sugarcane

机译:硅阻碍了蛀虫Eldana saccharina在甘蔗中的茎秆渗透

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摘要

Many plants grown in soils amended with silicon (Si) display increased levels of resistance to attack by insect herbivores. This study aimed to determine if Si treatment impeded Eldana saccharina Walker (Lepidoptera: Pyralidae) stalk penetration and subsequent damage, as well as borer mass gain, on the node and internode of a susceptible (N11) and a resistant (N33) sugarcane cultivar. Sugarcane [Saccharum spp. (Poaceae)] cultivars were grown in a pot trial in Si-deficient river sand, with (Si+) and without (Si-) calcium silicate. Sugarcane was infested with 2-week-old E. saccharina larvae and harvested at four times, 24, 48, 72, and 96 h after infestation. Silicon-treated plants showed significant increases in Si content compared to controls, and the external rind was significantly harder for Si+ cane than Si- cane. Silicon treatment significantly decreased borer penetration, stalk damage, and larval mass gain. The results are consistent with the hypothesis that Si contributes to sugarcane stalk borer resistance by impeding larval penetration. Silicon appears to contribute to the suppression of E. saccharina directly through reduced larval growth and feeding damage to the crop, and indirectly by delaying stalk penetration, resulting most likely in increased exposure time of young larvae to natural enemies, adverse climatic factors, or control measures that target young larvae (e.g., insecticides).
机译:在用硅(Si)改良过的土壤中生长的许多植物显示出更高的抵抗昆虫食草动物攻击的能力。这项研究旨在确定Si处理是否会影响易感性(N11)和抗性(N33)甘蔗品种的节间和节间茎梗(Eldana saccharina Walker)(鳞翅目:Pyralidae)的茎杆穿透和随后的损害以及虫心质量的增加。甘蔗[Saccharum spp。 (禾本科)]的品种在盆栽试验中在缺乏硅的河砂中种植,有(Si +)和没有(Si-)硅酸钙。甘蔗用2周大的糖化大肠杆菌幼虫侵染,并在侵染后24、48、72和96 h收获四次。与对照相比,硅处理过的植物显示出Si含量显着增加,并且Si +甘蔗的外皮明显比Si-甘蔗要硬。硅处理显着降低了蛀虫的渗透,茎杆损伤和幼虫质量增加。结果与以下假设相符:硅通过阻止幼虫穿透而有助于甘蔗茎bore抗性。硅似乎直接通过减少幼虫的生长和对农作物的饲喂损害,并通过延迟秸秆的渗透而间接地抑制了糖化大肠杆菌,这很可能导致幼虫对天敌,不利的气候因素或控制的暴露时间增加。针对幼虫的措施(例如杀虫剂)。

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