Pathogenicity Of Nosema Sp (Microsporidia) In The Diamondback Moth, Plutella Xylostella (Lepidoptera: Plutellidae)

PLOS ONE(2013)

引用 15|浏览2
暂无评分
摘要
Biological control using pathogenic microsporidia could be an alternative to chemical control of the diamondback moth (DBM) Plutella xylostella (Lepidoptera: Plutellidae). The microsporidium Nosema bombycis (NB) is one of the numerous pathogens that can be used in the Integrated Pest Management (IPM) of DBM. However, its pathogenicity or effectiveness can be influenced by various factors, particularly temperature. This study was therefore conducted to investigate the effect of temperature on NB infection of DBM larvae. Second-instar larvae at different doses (spore concentration: 0, 1x10(2),1x10(3),1x10(4), and 1x10(5)) at 15 degrees, 20 degrees, 25 degrees, 30 degrees and 35 degrees C and a relative humidity(RH) of 65% and light dark cycle (L: D) of 12:12. Larval mortality was recorded at 24 h intervals until the larvae had either died or pupated. The results showed that the spore concentration had a significant negative effect on larval survival at all temperatures, although this effect was more pronounced (92%) at 35 degrees C compared with that at 20 and 30 degrees C (similar or equal to 50%) and 25 degrees C (26%). Histological observations showed that Nosema preferentially infected the adipose tissue and epithelial cells of the midgut, resulting in marked vacuolization of the cytoplasm. These findings suggest that Nosema damaged the midgut epithelial cells. Our results suggest that Nosema had a direct adverse effect on DBM, and could be utilized as an important biopesticide alternative to chemical insecticides in IPM.
更多
查看译文
关键词
medicine,leaves,chemistry,physics,engineering,photoperiod,biology,pest control,temperature,larva,larvae
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要