Laboratory of Agricultural Zoology and Entomology, Department of Crop Science, Agricultural University of Athens, 75 Iera Odos st, 11855, Athens, Attica, Greece.
Laboratory of Agricultural Entomology, Department of Entomology and Agricultural Zoology, Benaki Phytopathological Institute, 8 Stefanou Delta st, 14561, Kifissia, Attica, Greece.
Environ Sci Pollut Res Int. 2018 Apr;25(11):10407-10417. doi: 10.1007/s11356-017-9565-5. Epub 2017 Jul 15.
Diatomaceous earths (DEs) are able to successfully protect grain commodities from noxious stored-product insect and mite infestations; however, their effectiveness may be moderated by the grain hybrid or variety they are applied to. There is a gap of information on the comparison of the efficacy of different DEs when are applied on different maize hybrids against Prostephanus truncatus (Horn). Therefore, here we tested three commercially available DEs (DEA-P at 75 and 150 ppm, Protect-It at 500 ppm, and PyriSec at 500 ppm) on five different maize hybrids (Calaria, Doxa, Rio Grande, Sisco, and Studio) for the control of P. truncatus adults in terms of mortality (at 7 and 14 days), progeny production, properties of the infested maize hybrids (number and weight of kernels with or without holes, number of holes per kernel) and the adherence level of the tested DEs to the kernels. DEA-P was very effective at 75 ppm while a considerable proportion of the exposed P. truncatus adults was still alive after 14 days of exposure on all maize hybrids treated with 500 ppm of Protect-It or PyriSec, even though it was 3.3 times higher than the maximal application tested dose of DEA-P. Apart from parental mortality, DEA-P was able to reduce P. truncatus progeny production in all hybrids contrary to Protect-It or PyriSec. The adherence ratios were always higher for DEA-P than Protect-It or PyriSec to all maize hybrids. The highest numbers of kernels (or weight of kernels) without holes were noticed after their treatment with DEA-P. Doxa and Sisco performed better than Calaria, Rio Grande, or Studio based on the differences found concerning the numbers of kernels without holes at treatments with DEA-P and Protect-It. Overall, the findings of our study indicate the high potentiality of DEA-P as protectant of different maize hybrids to P. truncatus infestations at low doses, a fact that could help the eco-friendly management of this noxious species in the stored-product environment.
硅藻土 (DE) 能够成功保护谷物免受有害的仓储产品昆虫和螨虫的侵害;然而,它们的有效性可能会因应用的谷物杂交品种或品种而有所不同。关于不同的 DE 在不同的玉米杂交品种上应用时的效果比较,信息存在差距。因此,在这里,我们测试了三种市售的 DE(DEA-P 在 75 和 150 ppm,Protect-It 在 500 ppm,和 PyriSec 在 500 ppm)对五种不同的玉米杂交品种(Calaria、Doxa、Rio Grande、Sisco 和 Studio)的控制效果,以评估对 Prostephanus truncatus(Horn)成虫的死亡率(在 7 天和 14 天)、后代产量、受感染玉米杂交品种的特性(有孔和无孔的玉米粒数量和重量、每粒玉米的孔数)以及测试的 DE 对玉米的粘附水平。DEA-P 在 75 ppm 时非常有效,而在所有用 500 ppm 的 Protect-It 或 PyriSec 处理的玉米杂交品种上,暴露的 P. truncatus 成虫中有相当大的比例在暴露 14 天后仍然存活,尽管它比 DEA-P 的最大应用测试剂量高出 3.3 倍。除了亲本死亡率外,DEA-P 还能够降低所有杂交品种中的 P. truncatus 后代产量,而 Protect-It 或 PyriSec 则不能。对于所有玉米杂交品种,DEA-P 的粘附率总是高于 Protect-It 或 PyriSec。用 DEA-P 处理后,无孔的玉米粒数量(或玉米粒重量)最高。基于用 DEA-P 和 Protect-It 处理时无孔玉米粒数量的差异,Doxa 和 Sisco 的表现优于 Calaria、Rio Grande 或 Studio。总的来说,我们的研究结果表明,DEA-P 作为不同玉米杂交品种对 P. truncatus 侵害的保护剂具有很高的潜力,在低剂量下,这一事实有助于在仓储产品环境中对这种有害物种进行生态友好的管理。