Comparison of Bradysia odoriphaga Yang and Zhang reared on artificial diet and different host plants based on an age-stage, two-sex life table
详细信息    查看全文
  • 作者:Peng Zhang (1)
    Feng Liu (1)
    Wei Mu (1)
    Qiuhong Wang (1)
    Hui Li (1)

    1. College of Plant Protection
    ; Key Laboratory of Pesticide Toxicology & Application Technique ; Shandong Agricultural University ; Tai鈥檃n ; Shandong ; 271018 ; People鈥檚 Republic of China
  • 关键词:Chinese cabbage ; Chinese chive ; Cucumber ; Lettuce ; Population characteristics ; Welsh onion
  • 刊名:Phytoparasitica
  • 出版年:2015
  • 出版时间:February 2015
  • 年:2015
  • 卷:43
  • 期:1
  • 页码:107-120
  • 全文大小:1,184 KB
  • 参考文献:1. Bernays, E. A., & Chapman, R. F. (1994). / Host-plant selection by phytophagous insects. New York, NY: Chapman & Hall Press. CrossRef
    2. Birch, L. C. (1948). The intrinsic rate of natural increase of an insect population. / Journal of Animal Ecology, 17, 15鈥?6. CrossRef
    3. Chapman, R. F. (1998). / The insects: structure and function. Cambridge, UK: Cambridge University Press. CrossRef
    4. Chi, H. (1988). Life-table analysis incorporating both sexes and variable development rate among individuals. / Environmental Entomology, 17, 26鈥?4.
    5. Chi, H. (1990). Timing of control based on the stage structure of pest population: A simulation approach. / Journal of Economic Entomology, 83, 1143鈥?150.
    6. Chi, H. (2013a). TIMING-MSChart: a computer program for the population projection based on the age-stage, two-sex life table. (http://140.120.197.173/Ecology/prod02.htm).
    7. Chi, H. (2013b). TWOSEX-MSChart: a computer program for the age-stage, two-sex life table analysis. (http://140.120.197.173/Ecology/prod02.htm).
    8. Chi, H., & Getz, W. M. (1988). Mass rearing and harvesting based on an age-stage, two-sex life table: a potato tuber worm (Lepidoptera: Gelechiidae) case study. / Environmental Entomology, 17, 18鈥?5.
    9. Chi, H., & Liu, H. (1985). Two new methods for the study of insect population ecology. / Bulletin of the Institute of Zoology, Academia Sinica, 24, 225鈥?40.
    10. Chi, H., & Su, H. Y. (2006). Age-stage, two-sex life tables of / Aphidius gifuensis (Ashmead) (Hymenoptera: Braconidae) and its host / Myzus persicae (Sulzer) (Homoptera: Aphididae) with mathematical proof of the relationship between female fecundity and the net reproductive rate. / Environmental Entomology, 35, 10鈥?1. CrossRef
    11. Chi, H., & Yang, T. C. (2003). Two-sex life table and predation rate of / Propylaea japonica Thunberg (Coleoptera: Coccinellidae) fed on / Myzus persicae (Sulzer) (Homoptera: Aphididae). / Environmental Entomology, 32, 327鈥?33. CrossRef
    12. Cloyd, R. A., & Dickinson, A. (2006). Effect of / Bacillus thuringiensis subsp. / israelensis and neonicotinoid insecticides on the fungus gnat / Bradysia sp. nr. / Coprophila (Lintner) (Diptera: Sciaridae). / Pest Management Science, 62, 171鈥?77. CrossRef
    13. Dunnett, C. W. (1980). Pairwise multiple comparisons in the homogeneous variance, unequal sample size case. / Journal of the American Statistical Association, 75, 789鈥?95. CrossRef
    14. Efron, B., & Tibshirani, R. J. (1993). / An introduction to the bootstrap. New York, NY: Chapman & Hall Press. CrossRef
    15. Fan, Z. B., & Cong, J. (2006). A report of food poisoning by consuming of organophosphate pesticide contaminated vegetable. / Occupation and Health, 22, 512鈥?13.
    16. Feng, H. Q., & Zheng, F. Q. (1987). Studies of the occurrence and control of / Bradysia odoriphaga Yang et Zhang. / Journal of Shandong Agricultural University, 18, 71鈥?0.
    17. Fisher, R. A. (1930). / The genetical theory of natural selection. Oxford, UK: Clarendon Press.
    18. Gao, Z. L., Dang, Z. H., Pan, W. L., Jia, H. M., & Zhang, K. J. (2000). Sensitivity of / Bradysia odoriphaga in various places in Hebei province to some insecticides. / Journal of Pesticide Science, 2, 80鈥?0.
    19. Gols, R., Wagenaar, R., Bukovinszky, T., van Dam, N. M., Dicke, M., Bullock, J. M., / et al. (2008). Genetic variation in the defense chemistry of wild cabbage affects native herbivores and their endoparasitoids. / Ecology, 89, 1616鈥?626. CrossRef
    20. Harris, M. A., Oetting, R., & Gardner, W. A. (1995). Use of entomopathogenic nematodes and new monitoring technique for control of fungus gnats, / Bradysia coprophila (Diptera: Sciaridae), in floriculture. / Biological Control, 5, 412鈥?18. CrossRef
    21. Harvey, J. A., Gols, R., Wagenaar, R., & Bezemer, T. M. (2007). Development of an insect herbivore and its pupal parasitoid reflect differences in direct plant defense. / Journal of Chemical Ecology, 33, 1556鈥?569. CrossRef
    22. Headrick, D. H., Bellows, T. S., & Perring, T. M. (1999). Development and reproduction of a population of / Eretmocerus eremicus (Hymenoptera: Aphelinidae) on / Bemisia argentifolii (Homoptera: Aleyrodidae). / Environmental Entomology, 28, 300鈥?06. CrossRef
    23. Huang, Y. B., & Chi, H. (2011). The age-stage, two-sex life table with an offspring sex ratio dependent on female age. / Journal of Agriculture and Forestry, 60, 337鈥?45.
    24. Huang, Y. B., & Chi, H. (2012). Age-stage, two-sex life tables of / Bactrocera cucurbitae (Coquillett) (Diptera: Tephritidae) with a discussion on the problem of applying female age-specific life tables to insect populations. / Insect Science, 19, 263鈥?73. CrossRef
    25. Jagdale, G. B., Casey, M. L., Grewal, P. S., & Lindquist, R. K. (2004). Application rate and timing, potting medium, and host plant effects on the efficacy of / Steinernema feltiae against the fungus gnat, / Bradysia coprophila, in floriculture. / Biological Control, 29, 296鈥?05. CrossRef
    26. Jha, K. R., Chi, H., & Li, C. T. (2012). A comparison of artificial diet and hybrid sweet corn for the rearing of / Helicoverpa armigera (H眉bner) (Lepidoptera: Noctuidae) based on life table characteristics. / Environmental Entomology, 41, 30鈥?9. CrossRef
    27. Leslie, P. H. (1945). On the use of matrices in certain population mathematics. / Biometrika, 33, 183鈥?12. CrossRef
    28. Lewis, E. G. (1942). On the generation and growth of a population. / Sankhya, 6, 93鈥?6.
    29. Lewontin, R. C. (1965). Selection for colonizing ability. In H. G. Baker & G. L. Stebbins (Eds.), / The Genetics of Colonizing Species (pp. 77鈥?4). San Diego, CA, USA: Academic Press.
    30. Li, H. J., He, X. K., Zeng, A. J., Liu, Y. J., & Jiang, S. R. (2007a). / Bradysia odoriphaga copulatory behavior and evidence of a female sex pheromone. / Journal of Agricultural and Urban Entomology, 24, 27鈥?4. CrossRef
    31. Li, H., Zhu, F., Zhou, X. M., & Li, N. (2007b). Bionomics and control of the root maggot, / Bradysia odoriphaga, infested on the watermelon. / Entomological Knowledge, 44, 834鈥?36.
    32. Lu, Q. Y., Zhang, W. X., Guo, W. L., & Zhang, Y. (2006). A preliminary study on distributing phase and sampling methods of / Bradysia odoriphaga larva in Chinese chive field. / Acta Agriculturae Boreali-occidentalis Sinica, 15, 75鈥?7.
    33. Mei, Z. X., & Li, J. Q. (2012). Spatial distribution pattern and sampling technique of / Bradysia odoriphaga larva. / Hubei Agriculture Sciences, 51(1128鈥?130), 1141.
    34. Mei, Z. X., Wu, Q. J., Zhang, Y. J., & Hua, L. (2004). Life tables of the laboratory population of / Bradysia odoriphaga Yang et Zhang (Diptera: Mycetophilidae) at different temperatures. / Acta Entomologica Sinica, 47, 219鈥?22.
    35. Mu, W., Liu, F., Jia, Z. M., He, M. H., & Xiang, G. Q. (2003). A simple and convenient rearing technique for / Bradysia odoriphaga. Entomological Journal of East China, 12, 87鈥?9.
    36. Mu, W., Liu, F., Jia, Z. M., Zhao, D., & Mu, L. L. (2005). Sublethal effects of eight insecticides on development and reproduction of / Bradysia odoriphaga. Acta Entomologica Sinica, 48, 147鈥?50.
    37. Pan, X. M., & Xia, Y. T. (1993). Occurrence dynamics and control of / Bradysia odoriphaga. Zhiwu Baohu, 19, 9鈥?1.
    38. Qin, J. D. (1995). Studies on insect-plant relationships: Recent trends and prospect. / Acta Zoologica Sinica, 41, 12鈥?0.
    39. Schoonhoven, L. M., Van Loon, J. J. A., & Dicke, M. (2005). / Insect-plant biology. Oxford, UK: Oxford University Press.
    40. Shi, Y. C., Zheng, J. Q., & Zhang, Y. (2001). Mushroom major pest survey briefing in suburbs. / Plant Protection Technology and Extension, 21, 18鈥?9.
    41. Sun, R. H., & Li, A. H. (2007). Studies on combination effect of etomolopathogenic nematode H06 and insecticide against / Bradysina odoriphaga. Chinese Journal of Pesticide Science, 9, 66鈥?0.
    42. Sun, R. H., Li, A. H., Han, R. C., Cao, L., & Liu, X. L. (2004). Factors affecting the control of / Bradysia odoriphaga with entomopathogenic nematode / Heterorhabditis indica LN2. / Kunchong Tiandi, 26, 150鈥?55.
    43. Wilcox, B. A., & Murphy, D. D. (1985). Conservation strategy: the effects of fragmentation on extinction. / Proceedings of the American Society of Zoologists, 125, 879鈥?87.
    44. Xue, M., Pang, Y. H., & Wang, C. X. (2005a). Biological effect of liliaceous host plants on / Bradysia odoriphaga Yang et Zhang (Diptera: Sciaridae). / Acta Phytophylacica Sinica, 32, 416鈥?20.
    45. Xue, M., Pang, Y. H., Wang, C. X., & Li, Q. (2005b). Biological effect of liliaceous host plants on / Bradysia odoriphaga Yang et Zhang (Diptera: Sciaridae). / Acta Entomologica Sinica, 48, 914鈥?21.
    46. Xue, M., Wang, C. X., & Pang, Y. H. (2005c). Study on the adaptability of / Bradysia odoriphaga to host plants. / Agricultural Biological Disaster Prevention and Control Research, 545鈥?48.
    47. Xue, M., Yuan, L., & Xu, M. L. (2002). The olfactory response of adults to volatiles and comparison of toxicity of different insecticides to the adults and larvae of / Bradysia odoriphaga. Journal of Pesticide Sciences, 4, 50鈥?6.
    48. Yang, J. K., & Zhang, X. M. (1985). Notes on the fragrant onion gnats with descriptions of two new species of / Bradysia (Diptera: Sciaridae). / Acta Agriculturae Universitis Pekinensis, 11, 153鈥?56.
    49. Yin, W. D., Qiu, G. S., Yan, W. T., Sun, L. N., & Zhang, H. J. (2013). Host preference and fitness of / Aphis citricola (Hemiptera: Aphididae) to mature and young apple leaves. / Chinese Journal of Applied Ecology, 24, 2000鈥?006.
    50. Yu, J. Z., Chi, H., & Chen, B. H. (2005). Life table and predation of / Lemnia biplagiata (Coleoptera: Coccinellidae) fed on / Aphis gossypii (Homoptera: Aphididae) with a proof on relationship among gross reproduction rate, net reproduction rate, and preadult survivorship. / Annals of the Entomological Society of America, 98, 475鈥?82. CrossRef
    51. Yu, J. Z., Chi, H., & Chen, B. H. (2013). Comparison of the life tables and predation rates of / Harmonia dimidiata (F.) (Coleoptera: Coccinellidae) fed on / Aphis gossypii Glover (Hemiptera: Aphididae) at different temperatures. / Biological Control, 64, 1鈥?. CrossRef
    52. Yu, Y., Li, L. L., Zhang, A. S., Men, X. Y., & Zhang, S. C. (2009). An artificial synthetic diet of Chinese chive maggot. China , CN200810238714.0. 2009-05-20.
    53. Zhang, P., Chen, C. Y., Li, H., Liu, F., & Mu, W. (2014). Selective toxicity of seven neonicotinoid insecticides to / Bradysia odoriphaga and / Eisenia foetida. Acta Phytophylacica Sinica, 41, 79鈥?6.
    54. Zheng, J. Q. (2004). / Handbook of contemporary vegetable pests and diseases identification and management. Beijing, China: China Agriculture Press.
    55. Zhu, J. E., & Jin, Z. Y. (1999). On the antiseptics used in artificial feed for silkworm. / Food and Feed Industry, 1, 38鈥?9.
  • 刊物主题:Plant Pathology; Plant Sciences; Ecology; Agriculture; Life Sciences, general;
  • 出版者:Springer Netherlands
  • ISSN:1876-7184
文摘
An age-stage two-sex life table was constructed in order to investigate the differences in population characteristics between Bradysia odoriphaga Yang and Zhang individuals reared on artificial diet, Chinese chive [Allium tuberosum], Welsh onion [Allium cepa], cucumber [Cucumis sativus], lettuce [Lactuca sativa], and Chinese cabbage [Brassica rapa pekinensis]. A population projection was also used to determine the potential trend of populations. The intrinsic rates of increase (r) of B. odoriphaga reared on artificial diet, Chinese chive, Welsh onion, cucumber, lettuce, and Chinese cabbage were 0.1477, 0.1545, 0.1295, 0.1405, 0.1294, and 0.0732 d-1, respectively. The highest net reproductive rate was 61.26 offspring per individual reared on Chinese chive, followed by 53.19, 49.90, 38.15, 30.54, and 16.20 offspring per individual for populations reared on artificial diet, Welsh onion, cucumber, lettuce, and Chinese cabbage, respectively. The mean generation times of B. odoriphaga ranged from 25.88 days when reared on cucumber to 37.86 days when reared on Chinese cabbage. B. odoriphaga feeding on Chinese cabbage had the longest total preoviposition period of female insects from birth (TPOP), larval and pupal period, and the lowest fecundity, and this insect reared on Chinese chive had the highest survival rate and reproductive value. The population projection revealed B. odoriphaga had explosive population growth in a relatively short time when reared on Chinese chive. These findings demonstrated that B. odoriphaga can successfully survive on artificial diet and five host plants, and our results showed the superiority of mass rearing B. odoriphaga on Chinese chives and the laboratory-prepared diet. These findings obtained under laboratory conditions also lay the basis for further studies of the population development of B. odoriphaga in the different host plants fields.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700