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首页> 外文期刊>Pedobiologia >Effect of aqueous extracts from vermicomposts on attacks by cucumber beetles (Acalymna vittatum) (Fabr.) on cucumbers and tobacco hornworm (Manduca sexta) (L.) on tomatoes
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Effect of aqueous extracts from vermicomposts on attacks by cucumber beetles (Acalymna vittatum) (Fabr.) on cucumbers and tobacco hornworm (Manduca sexta) (L.) on tomatoes

机译:ver茎水提物对黄瓜甲虫(Acalymna vittatum)(Fabr。)对黄瓜和烟草天蛾(Manduca sexta)(L。)对番茄的攻击作用

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摘要

Vermicomposts are produced through interactions between earthworms and microorganisms in the breakdown of organic wastes. Aqueous extracts were prepared in commercial brewing equipment from vermicomposts produced from super-market food wastes. The ratio of vermicompost to water was one to five v:v, to produce a 20% aqueous solution which could be diluted to 5% and 10% concentrations. The effects of soil drenches applied at dilutions of 20%, 10%, and 5% vermicompost aqueous extracts, were compared with those of deionized water, in the suppression of cucumber beetles (Acalymna vittatum) attacking cucumbers and tobacco hornworms (Manduca sexta) attacking tomatoes, in greenhouse cage experiments. Tomatoes and cucumber seedlings were germinated and grown for 4 weeks in 25cm diameter pots containing a soil-less growth medium – Metro-Mix 360 – and thinned to four plants per pot. They were placed under 0.2mm mesh cages (40cm×40cm×40 cm), with one pot containing four plants in each treatment cage. At germination, plants were treated with soil drenches of 5%, 10%, or 20% vermicompost extract or a deionized water control to field capacity and thereafter at weekly intervals. A complete nutrient solution was applied weekly to all plants. In each experiment, eight cucumber beetles or eight tobacco hornworms were released onto the leaves of the appropriate plant species in each cage (four pests per test plant). All treatments were replicated four times per pest experiment, in a randomized complete block design. Numbers of pests were counted and damage rated (0-none to 5-total) on days 1, 3, 5, 7, 9, 11, 13 and 14 after the release of pests into the cages. All of the concentrations of vermicompost extracts significantly suppressed the establishment of and the damage caused by the two pests on the plants. The higher the rate of aqueous extract application the greater was the suppression of the pests. We concluded that the most likely cause for the unpalatability of the plants to pests was the uptake of soluble phenolic compounds from the vermicompost aqueous extracts into the plant tissues. These compounds are known to make plants unattractive to pests and to affect pest reproduction and survival rates.
机译:mi堆肥是通过earth和微生物之间的相互作用分解有机废物而产生的。在商业酿造设备中,从超市食物垃圾产生的ver堆中制备水提取物。 Vermicompost与水的比例为1:5 v:v,以产生20%的水溶液,可以将其稀释至5%和10%的浓度。比较了分别以20%,10%和5%ver水提取物稀释的土壤淋水与去离子水的效果,以抑制黄瓜甲虫(Acalymna vittatum)侵害黄瓜和烟草天蛾(Manduca sexta)侵害的效果。西红柿,在温室笼中进行实验。番茄和黄瓜幼苗在直径25厘米的盆中发芽,并在含有无土生长培养基Metro-Mix 360的盆中生长4周,然后每盆稀疏成四株植物。将它们置于0.2mm网眼笼子(40cm×40cm×40cm)下,每个处理笼子中有一个盆包含四株植物的盆。发芽时,将植物用5%,10%或20%mi粉提取物的土壤浸水或去离子水对照处理至田间持水量,然后每隔一周进行处理。每周向所有植物施用完整的营养液。在每个实验中,将八只黄瓜甲虫或八只烟草天蛾释放到每个笼子中适当植物种类的叶子上(每个测试植物四只害虫)。每个病虫害实验均以随机完整区组设计将所有处理重复四次。在将害虫释放到笼子后的第1、3、5、7、9、11、13和14天,计算了害虫的数量,并对危害进行了评估(从0至5不等)。 mi杂提取物的所有浓度均显着抑制了两种害虫在植物上的建立和损害。水提取物施用的速率越高,对害虫的抑制作用越大。我们得出的结论是,植物对害虫不耐的最可能原因是从ver粉水性提取物中摄取可溶性酚类化合物到植物组织中。已知这些化合物使植物对害虫没有吸引力,并影响害虫繁殖和成活率。

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