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Effect of Biopesticides and Pheromone Traps on Major Insect-Pests and Their Natural Enemies of Cabbage

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Aims: This study is aimed to know the effect of biopesticides on insect pests, predators and yield of cabbage. Study Design: The experiment was laid out at a randomized complete block design with four replications. Place and Duration of Study: Central farm of Sher-e-Bangla Agricultural University, Bangladesh during the period from October 2018 to March 2019. Methodology: The experiment was conducted with six treatments viz. T1= Spinosad @25 ml/ha at 7 days interval , T2= SNPV (Spodoptera litura nuclear polyhedrosis virus) @ 2.47/ha at 7days interval, T3= Spodolure trap @ 1/6 plot at 14 days interval, T4= Spodolure trap + Spinosad spray, T5= Spodolure trap + SNPV spray and T6= untreated control. Results: The lowest infested leaves per five plants by flea beetle (0.33), tobacco cutworm (0.33), semi- looper (0.33), diamondback moth (1.33), aphid (7.50), was found in treatment (Spodolure trap + Spinosad).The population of natural enemies per plot was also recorded and highest population of lady bird beetle (8.00) and spider (8.60) was also observed from Spodolure trap + Spinosad treatment as compared to untreated control. The highest percentage of healthy plants (91.67), maximum weight of healthy cabbge head plant-1 (1.20 kg), marketable cabbage head plot-1 (19.48 kg) and marketable yield of healthy cabbage head (45.08 t ha-1) was found with Spodolure trap + Spinosad treatment. Conclusion: It is concluded that Spodolure trap in combination with Spinosad spray may be effective practice for the management of cabbage insect pests.
Title: Effect of Biopesticides and Pheromone Traps on Major Insect-Pests and Their Natural Enemies of Cabbage
Description:
Aims: This study is aimed to know the effect of biopesticides on insect pests, predators and yield of cabbage.
Study Design: The experiment was laid out at a randomized complete block design with four replications.
Place and Duration of Study: Central farm of Sher-e-Bangla Agricultural University, Bangladesh during the period from October 2018 to March 2019.
Methodology: The experiment was conducted with six treatments viz.
T1= Spinosad @25 ml/ha at 7 days interval , T2= SNPV (Spodoptera litura nuclear polyhedrosis virus) @ 2.
47/ha at 7days interval, T3= Spodolure trap @ 1/6 plot at 14 days interval, T4= Spodolure trap + Spinosad spray, T5= Spodolure trap + SNPV spray and T6= untreated control.
Results: The lowest infested leaves per five plants by flea beetle (0.
33), tobacco cutworm (0.
33), semi- looper (0.
33), diamondback moth (1.
33), aphid (7.
50), was found in treatment (Spodolure trap + Spinosad).
The population of natural enemies per plot was also recorded and highest population of lady bird beetle (8.
00) and spider (8.
60) was also observed from Spodolure trap + Spinosad treatment as compared to untreated control.
The highest percentage of healthy plants (91.
67), maximum weight of healthy cabbge head plant-1 (1.
20 kg), marketable cabbage head plot-1 (19.
48 kg) and marketable yield of healthy cabbage head (45.
08 t ha-1) was found with Spodolure trap + Spinosad treatment.
Conclusion: It is concluded that Spodolure trap in combination with Spinosad spray may be effective practice for the management of cabbage insect pests.

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