Department of Agricultural Biotechnology, Agricultural Faculty, Ataturk Universty, Erzurum, Turkey.
Department of Plant Protection, Agricultural Faculty, Ataturk Universty, Erzurum, Turkey.
World J Microbiol Biotechnol. 2021 Sep 14;37(10):173. doi: 10.1007/s11274-021-03138-8.
It has been planned to minimize the yield and quality impairment of the seed corn, which is strategically important in the world, by pests under storage conditions with a biological product produced with a biotechnological approach. In this context, the present study aimed to control the maize weevil Sitophilus zeamais, known as a warehouse pest, using a nanoformulation. In the study, the chitinase enzyme from Lactobacillus coryniformis was purified first using ammonium sulfate precipitation and then by using the HiTrap Capto DEAE column, and the molecular mass of the purified enzyme was determined to be ~ 33 kDa, and the optimum pH and the values as pH 6.0 and 65-75 °C, respectively. Five different doses of nanoformulation (2, 4, 6, 8 and 10 mg/L) were applied to corn grains by the spraying method with three repetitions so that the insect can ingest the formulation through feeding. The effects of the applications on the death rate and mean time of death of Sitophilus zeamais were determined. According to these findings, it was concluded that the best practice was nanoformulation with 6 mg/L, considering both the mortality rate (100%) and the average death time (2.4 days). Chitinase from L. coryniformis is a promising candidate for corn lice control and management.
本研究旨在通过使用生物技术方法生产的生物制品,来控制作为仓储害虫的玉米象 Sitophilus zeamais,以尽量减少战略上重要的种子玉米在储存条件下因害虫而导致的产量和质量受损。在这项研究中,首先使用硫酸铵沉淀法从乳杆菌 Coryniformis 中纯化几丁质酶,然后使用 HiTrap Capto DEAE 柱进行纯化,纯化酶的分子量约为 33 kDa,最适 pH 值和温度分别为 pH 6.0 和 65-75°C。通过喷雾法将 5 种不同剂量的纳米制剂(2、4、6、8 和 10 mg/L)应用于玉米籽粒,重复 3 次,以便昆虫通过取食摄入制剂。通过这些应用确定对玉米象死亡率和平均死亡时间的影响。根据这些发现,考虑到死亡率(100%)和平均死亡时间(2.4 天),认为 6 mg/L 的纳米制剂是最佳做法。乳杆菌 Coryniformis 的几丁质酶是控制和管理玉米象的有前途的候选物。