Effect of temperature on reproduction and embryonic development of the cabbage stem flea beetle, Psylliodes chrysocephala L., (Coleoptera: Chrysomelidae)

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Standard

Effect of temperature on reproduction and embryonic development of the cabbage stem flea beetle, Psylliodes chrysocephala L., (Coleoptera: Chrysomelidae). / Mathiasen, Helle; Sørensen, Helle; Bligaard, J.; Esbjerg, Peter.

I: Journal of Applied Entomology, Bind 139, Nr. 8, 2015, s. 600-608.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Harvard

Mathiasen, H, Sørensen, H, Bligaard, J & Esbjerg, P 2015, 'Effect of temperature on reproduction and embryonic development of the cabbage stem flea beetle, Psylliodes chrysocephala L., (Coleoptera: Chrysomelidae)', Journal of Applied Entomology, bind 139, nr. 8, s. 600-608. https://doi.org/10.1111/jen.12201

APA

Mathiasen, H., Sørensen, H., Bligaard, J., & Esbjerg, P. (2015). Effect of temperature on reproduction and embryonic development of the cabbage stem flea beetle, Psylliodes chrysocephala L., (Coleoptera: Chrysomelidae). Journal of Applied Entomology, 139(8), 600-608. https://doi.org/10.1111/jen.12201

Vancouver

Mathiasen H, Sørensen H, Bligaard J, Esbjerg P. Effect of temperature on reproduction and embryonic development of the cabbage stem flea beetle, Psylliodes chrysocephala L., (Coleoptera: Chrysomelidae). Journal of Applied Entomology. 2015;139(8):600-608. https://doi.org/10.1111/jen.12201

Author

Mathiasen, Helle ; Sørensen, Helle ; Bligaard, J. ; Esbjerg, Peter. / Effect of temperature on reproduction and embryonic development of the cabbage stem flea beetle, Psylliodes chrysocephala L., (Coleoptera: Chrysomelidae). I: Journal of Applied Entomology. 2015 ; Bind 139, Nr. 8. s. 600-608.

Bibtex

@article{b2ed17914c344800ae1af8291406d59f,
title = "Effect of temperature on reproduction and embryonic development of the cabbage stem flea beetle, Psylliodes chrysocephala L., (Coleoptera: Chrysomelidae)",
abstract = "The cabbage stem flea beetle, Psylliodes chrysocephala (L.) (Coleoptera: Chrysomelidae), is a major pest of winter oilseed rape. Despite the importance of this pest, detailed information on reproduction to predict risk of crop damage is lacking. This study investigates the effect of temperature on parameters of reproduction, egg development and viability at five constant temperatures. Significant temperature effects were found on the pre-oviposition period, total number of eggs laid, daily oviposition rate, female longevity, egg-development rate and viability. The mean length of the pre-oviposition period ranged from 93.1 days at 4°C to 14.6 days at 20°C. Analysis of total number of eggs laid and daily oviposition rate during female lifespan estimated the highest total number of eggs laid (696 eggs/female) at 16°C and the highest oviposition rate (6.8 eggs/female and day) at 20°C. The daily oviposition rate at 20°C was not significantly higher than 5.4 eggs/female and day at 16°C. Female longevity was significantly longer at 4°C, shorter at 20°C and not significantly different between 8, 12 and 16°C. Estimated 50% survival time of females was 239, 153, 195, 186 and 78 days at 4, 8, 12, 16 and 20°C, respectively. A linear model of egg development at 8–20°C estimated the lower developmental threshold to be 5.1°C and the thermal constant for development 184.9 degree-days. The percentage of eggs hatching was significantly lower at 4°C than at all other temperatures tested. The estimated mean hatching percentages were 47.3%, 70.0%, 72.4%, 66.2% and 67.9% at 4, 8, 12, 16 and 20°C, respectively. These results can be used to predict the start and intensity of egg-laying in the autumn and the appearance of larvae in the field from knowledge about time of field invasion and from monitoring the weather.",
keywords = "egg development, forecasting, longevity, oviposition",
author = "Helle Mathiasen and Helle S{\o}rensen and J. Bligaard and Peter Esbjerg",
year = "2015",
doi = "10.1111/jen.12201",
language = "English",
volume = "139",
pages = "600--608",
journal = "Journal of Applied Entomology (Print)",
issn = "0931-2048",
publisher = "Wiley-Blackwell",
number = "8",

}

RIS

TY - JOUR

T1 - Effect of temperature on reproduction and embryonic development of the cabbage stem flea beetle, Psylliodes chrysocephala L., (Coleoptera: Chrysomelidae)

AU - Mathiasen, Helle

AU - Sørensen, Helle

AU - Bligaard, J.

AU - Esbjerg, Peter

PY - 2015

Y1 - 2015

N2 - The cabbage stem flea beetle, Psylliodes chrysocephala (L.) (Coleoptera: Chrysomelidae), is a major pest of winter oilseed rape. Despite the importance of this pest, detailed information on reproduction to predict risk of crop damage is lacking. This study investigates the effect of temperature on parameters of reproduction, egg development and viability at five constant temperatures. Significant temperature effects were found on the pre-oviposition period, total number of eggs laid, daily oviposition rate, female longevity, egg-development rate and viability. The mean length of the pre-oviposition period ranged from 93.1 days at 4°C to 14.6 days at 20°C. Analysis of total number of eggs laid and daily oviposition rate during female lifespan estimated the highest total number of eggs laid (696 eggs/female) at 16°C and the highest oviposition rate (6.8 eggs/female and day) at 20°C. The daily oviposition rate at 20°C was not significantly higher than 5.4 eggs/female and day at 16°C. Female longevity was significantly longer at 4°C, shorter at 20°C and not significantly different between 8, 12 and 16°C. Estimated 50% survival time of females was 239, 153, 195, 186 and 78 days at 4, 8, 12, 16 and 20°C, respectively. A linear model of egg development at 8–20°C estimated the lower developmental threshold to be 5.1°C and the thermal constant for development 184.9 degree-days. The percentage of eggs hatching was significantly lower at 4°C than at all other temperatures tested. The estimated mean hatching percentages were 47.3%, 70.0%, 72.4%, 66.2% and 67.9% at 4, 8, 12, 16 and 20°C, respectively. These results can be used to predict the start and intensity of egg-laying in the autumn and the appearance of larvae in the field from knowledge about time of field invasion and from monitoring the weather.

AB - The cabbage stem flea beetle, Psylliodes chrysocephala (L.) (Coleoptera: Chrysomelidae), is a major pest of winter oilseed rape. Despite the importance of this pest, detailed information on reproduction to predict risk of crop damage is lacking. This study investigates the effect of temperature on parameters of reproduction, egg development and viability at five constant temperatures. Significant temperature effects were found on the pre-oviposition period, total number of eggs laid, daily oviposition rate, female longevity, egg-development rate and viability. The mean length of the pre-oviposition period ranged from 93.1 days at 4°C to 14.6 days at 20°C. Analysis of total number of eggs laid and daily oviposition rate during female lifespan estimated the highest total number of eggs laid (696 eggs/female) at 16°C and the highest oviposition rate (6.8 eggs/female and day) at 20°C. The daily oviposition rate at 20°C was not significantly higher than 5.4 eggs/female and day at 16°C. Female longevity was significantly longer at 4°C, shorter at 20°C and not significantly different between 8, 12 and 16°C. Estimated 50% survival time of females was 239, 153, 195, 186 and 78 days at 4, 8, 12, 16 and 20°C, respectively. A linear model of egg development at 8–20°C estimated the lower developmental threshold to be 5.1°C and the thermal constant for development 184.9 degree-days. The percentage of eggs hatching was significantly lower at 4°C than at all other temperatures tested. The estimated mean hatching percentages were 47.3%, 70.0%, 72.4%, 66.2% and 67.9% at 4, 8, 12, 16 and 20°C, respectively. These results can be used to predict the start and intensity of egg-laying in the autumn and the appearance of larvae in the field from knowledge about time of field invasion and from monitoring the weather.

KW - egg development, forecasting, longevity, oviposition

U2 - 10.1111/jen.12201

DO - 10.1111/jen.12201

M3 - Journal article

VL - 139

SP - 600

EP - 608

JO - Journal of Applied Entomology (Print)

JF - Journal of Applied Entomology (Print)

SN - 0931-2048

IS - 8

ER -

ID: 148724542