廖内省伊斯兰大学地区白蚁种类清查及实验室抑菌效果研究

Inggit Piandari, S. Ulpah, T. E. Sabli, Salmita Salman
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摘要

白蚁有很大的潜力对植物和其他木质材料造成破坏,因为这些昆虫是群居的。白蚁的偏好和潜在危害因物种而异。在廖内伊斯兰大学地区进行了与白蚁种类有关的调查,对所发生的损害进行了估计,并对受到攻击的植物和木本树木的偏好进行了调查,作为避免白蚁更大袭击的影响的初步步骤。调查结果显示,在25个样地中,9个样地均发现白蚁,分别为:机场(3个)、法律(3个)、PKM大楼(1个)、FKIP B(1个)、清真寺(1个)、农业(3个)、实验园(2个)、学生宿舍(14个)和研究生(4个)。在廖内伊斯兰大学区发现的白蚁种类多达4种,分别为小白蚁科、大白蚁科和大白蚁科。鼻白蚁科)和弯白蚁(鼻白蚁科)。猫白蚁是廖内伊斯兰大学地区的主要害虫之一,因为长期以来人们都知道它会攻击几种植物。利用绿僵菌进行的实验室试验表明,当孢子密度为1.65 × 108,孢子活力为82.8%时,白蚁有可能死亡,死亡时间为1.65 × 108。最佳时间为1.50 d,死亡率为99.17%。添加10%沸石的绿僵菌孢子密度为3.5 × 107,孢子活力(M2)为90.3%,死亡时间为2.50 d,死亡率为75.12%。而未经治疗的死亡时间为5.25 d,死亡率为20.00%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inventory Of Termite Species In The Area Of Islam Riau University And Efficiency Of Fungus Metarhiziumanisopliae Against Terms In The Laboratory
Termites have a great potential to cause damage to plants and other woody materials because these insects live in colonies. Termites' preferences and potential for harm vary depending on the species. Surveys related to termite species, estimates of damage that occurred, as well as preferences of plants and woody trees attacked in the Riau Islamic University Area were carried out as an initial step to avoid the impact of a greater termite attack. The survey results showed that termites were found in 9 of the 25 plots observed, namely Fisipol (3), Law (3), PKM Building (1), FKIP B (1), Mosque (1), Agriculture (3), Experimental Gardens (2), Student Dormitory (14), and Postgraduate (4). The types of termites that attack the Riau Islamic University area were obtained as many as four different termite species, namely Microcerotermes sp. (Family: Termitidae), Macrotermes sp. (Family: Termitidae), Schedorhinotermes sp (Family: Rhinotermitidae), and Coptotermes curvignathus (Family: Rhinotermitidae). Captotermes is one of the main pests in the Riau Islamic University area because it has been known to attack several plants for a long time. Laboratory tests using the fungus Metarhizium anisopliae showed the potential to cause mortality in termites at a spore density of 1.65 x 108 with a spore viability of 82.8%, resulting in a death time of 1.65 x 108. The best was 1.50 days and the mortality percentage was 99.17%. The spore density of Metarhizium anisopliae added with 10% zeolite was 3.5 x 107 with 90.3% spore viability (M2) resulting in a death time of 2.50 days and a mortality percentage of 75. .12%. Meanwhile, without treatment, the time of death was 5.25 days and the mortality percentage was 20.00%.
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