Efficacy of Biopesticide Be-Bas against Sweet Potato Weevils (Cylas formicarius Fabricius) in Tidal Land

Y. Prayogo, M. S. Y. I. Bayu
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引用次数: 2

Abstract

In Indonesia tidal land is very wide and quite potential for sweet potatoes, but an obstacle for this cultivation is sweet potato weevil (Cylas formicarius) causes loss of 100%. This research aimed to evaluate the efficacy of biopesticide Be-Bas contains Beauveria bassiana entomopathogenic conidia to C. formicarius mortality at tidal lands. This study was conducted on June-November 2016 in South Kalimantan. The research consisted of five treatments and five replications. Results showed that the application of biopesticide Be-Bas in the planting hole and stem base was effective to cause mortality of 17 and 15 larvae per tuber, respectively. However, the application by soaking cutting was able to kill 3 larvae per tuber. The application of biopesticide Be-Bas in the planting hole and stem base were also effective to suppress the number of eggs laid by C. formicarius in the tuber, hence there was no damage found on the tuber. Meanwhile, the application of conventional insecticide was less effective because a total of 17 eggs and 3 larvae of C. formicarius were still found in each tuber. It caused tuber damage up to 17%, thus the tuber cannot be consumed. Therefore, the application of biopesticide Be-Bas in the planting hole or stem base was considered capable to suppress tubers damage caused by C. formicarius better than that of conventional insecticide.
生物农药Be-Bas对潮地甘薯象甲的防治效果
在印度尼西亚,潮汐土地非常广阔,红薯种植潜力很大,但红薯象甲(Cylas formicarius)的种植障碍是造成100%的损失。本研究旨在评估含有球孢白僵菌昆虫病原分生孢子的生物杀虫剂Be-Bas对潮间带弯孢杆菌死亡率的影响。本研究于2016年6月至11月在南加里曼丹进行。这项研究包括五次处理和五次重复。结果表明,生物农药Be-Bas在种植穴和茎基中的施用可使每个块茎分别有17和15个幼虫死亡。然而,浸泡切割的应用能够杀死每个块茎3个幼虫。生物农药Be-Bas在种植穴和茎基中的应用也能有效抑制formicarius在块茎中的产卵量,因此对块茎没有损伤。同时,常规杀虫剂的应用效果较差,因为每个块茎中仍有17个formicarius卵和3个幼虫。它对块茎的伤害高达17%,因此块茎无法食用。因此,生物杀虫剂Be-Bas在种植穴或茎基中的应用被认为比传统杀虫剂能够更好地抑制由弯孢杆菌引起的块茎损伤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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