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Assessment of wheat ear insects in winter wheat varieties in central Germany

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Abstract

Population densities of wheat ear insects infesting different winter wheat varieties (n = 50) were estimated during 2008 and 2009 seasons near Halle, central Germany. The research was aimed at identifying wheat varieties most resistant to wheat ear insect pests. Two methods were used to evaluate the degree of insect infestations in different wheat ear varieties. Wheat ears were dissected when kernels were in Zadoks stage 73 and examined using a binocular microscope to count the number of spikelets and infested kernels, and to identify the insect pests present. In addition, white water traps were placed on the soil underneath each variety to collect mature larvae of wheat blossom midges (WBMs) as an indicator of potential crop risk for the next year. There were significant differences in the number of thrips and WBM infesting wheat ears among varieties in both years. Thrips numbers were the highest in Akratos, Limes and Ritmo varieties in 2008 and in Michigan Amber, Elegant and Kontrast in 2009. Thrips were the lowest in Thuareg in 2008 and Robigus varieties in 2009. The results showed that the highest WBM infestation level was observed in Michigan Amber in both years. The lowest WBM infestations were found in Türkis, Cubus, Capo, Welford and Robigus in both years. The number of infested kernels was positively correlated with WBM among varieties. In the water traps, the highest numbers of WBM larvae were recorded in Saladin and Bussard in 2008 and Orlando, Julius and Glasgow varieties in 2009. The lowest values were recorded in Victo, Enorm, Robigus and Welford varieties in both years. The results provide a guide for selecting winter wheat varieties with resistance to these wheat ear pests.

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References

  • Andjus L (1996) The research into the Thrips fauna and significance of the plants of spontaneous flora for the survival of pest species. PhD Thesis, Belgrade University

  • Barker AM, Sanbrooke KJ, Aebischer NJ (1997) The water trap colour preferences of farmland sawflies. Ento Exp Appl 85:83–86

    Article  Google Scholar 

  • Basedow Th (1977) The susceptibility of some spring wheat varieties to the attack by the two wheat blossom midge species. Anz Schad Pflanzenschutz Umweltschutz 50:129–131

    Article  Google Scholar 

  • Berzonsky W, Shanower T, Lamb R, McKenzie R, Ding H (2002) Breeding wheat for resistance to insects. Plant Breed Rev 22:221–297

    Google Scholar 

  • Birkett MA, Bruce TJA, Martin JL, Smart LE, Oakley J, Wahams LJ (2004) Responses of female orange wheat blossom midge, Sitodiplosis mosellana to wheat panicle volatiles. J Chem Ecol 30:1319–1328

    Article  PubMed  CAS  Google Scholar 

  • Brown MB, Forsythe AB (1974) Robust tests for equality of variances. J Am Stat Assoc 69:364–367

    Article  Google Scholar 

  • Cauvain SP, Cauvain CP (2003) Bread making. CRC Press, Boca Raton, pp 540. ISBN 1-85573-553-9

  • Ding H, Lamb RJ, Ames N (2000) Inducible production of phenolic acids in wheat and antibiotic resistance to Sitodiplosis mosellana. J Chem Ecol 26:969–985

    Article  CAS  Google Scholar 

  • Doane JF, Olfert O (2008) Seasonal development of wheat midge, Sitodiplosis mosellana, in Saskatchewan, Canada. Crop Prot 27:951–958

    Article  Google Scholar 

  • Elliott RH (1998) Evaluation of insecticides for protection of wheat against damage by the wheat midge, Sitodiplosis mosellana (Géhin). Can Entomol 120:615–626

    Article  Google Scholar 

  • Elliott RH, Mann L, Olfert O (2000) Susceptibility of hard red spring wheats to damage by high populations of wheat midge. SRC-Saskatoon Res Letter 2000–09, 3 pp

  • Finch S (1991) Influence of trap surface on the numbers of insects caught in water traps in brassica crops. Ent Exp Appl 59:169–173

    Google Scholar 

  • Finch S (1992) Improving the selectivity of water traps for monitoring populations of the cabbage root fly. Ann Appl Biol 120:1–7

    Article  Google Scholar 

  • Gaafar N, Volkmar C (2009) Monitoring system of orange wheat blossom midge, Sitodiplosis mosellana (Géhin) using pheromone trap in the central Germany. Mitt Dtsch Ges Allg Angew Ent 17:221–225

    Google Scholar 

  • Gaafar N, Cöster H, Volkmar C (2009) Evaluation of ear infestation by thrips and wheat blossom midges in winter wheat cultivars. In: Feldmann F, Alford DV, Furk C (eds) Proceedings of 3rd International Symposium on Plant Protection and plant health in Europe. Berlin, Germany, 14–16 May 2009, pp 349–359 (ISBN 978-3-941261-05-1)

  • Ganehiarachchi GASM, Harris MO (2007) Oviposition behavior of orange wheat blossom midge on low- vs. high-ranked grass seed heads. Ent Exp Appl 123:287–297

    Article  Google Scholar 

  • Glen DM (2000) The effects of cultural measures on cereal pests and their role in integrated pest management. Integ Pest Manag Rev 5:25–40

    Article  Google Scholar 

  • Harris MO, Stuart JJ, Mohan M, Nair S, Lamb RJ, Rohfritsch O (2003) Grasses and gallmidges: plant defense and insect adaptation. Ann Rev Entomol 48:549–577

    Article  CAS  Google Scholar 

  • Katayama J, Fukui M, Sasaki H (1987) Seasonal prevalence of adult occurrence and infestation of the wheat blossom midge Sitodiplosis mosellana Géhin in Kyoto Prefecture. Jpn J Appl Entomol Zool 31:46–50

    Google Scholar 

  • Kucharzyk H (1998) Thysanoptera and other insects collected in differently coloured traps in eastern Poland. In: Proceedings of the 6th International Symposium on Thysanoptera, pp 81–87

  • Kurppa SLA (1989) Wheat blossom midges, Sitodiplosis mosellana Géhin and Contarinia tritici (Kirby) in Finland during 1981–87. Ann Agric Fenniae 28:87–96

    Google Scholar 

  • Lamb RJ, McKenzie RIH, Wise IL, Barker PS, Smith MAH, Olfert OO (2000) Resistance to Sitodiplosis mosellana in spring wheat. Can Entomol 132:591–605

    Article  Google Scholar 

  • Lamb RJ, Smith MAH, Wise IL, Clarke P, Clarke J (2001) Oviposition deterrence to Sitodiplosis mosellana: a source of resistance for durum wheat. Can Entomol 133:579–591

    Article  Google Scholar 

  • Lamb RJ, Wise IL, Smith MAH, McKenzie RIH, Thomas J, Olfert OO (2002) Oviposition deterrence against Sitodiplosis mosellana in spring wheat. Can Entomol 134:85–96

    Article  Google Scholar 

  • Lamb RJ, Sridhar P, Smith MAH, Wise IL (2003) Oviposition preference and offspring performance of a wheat midge Sitodiplosis mosellana on defended and less well defended wheat plants. Environ Entomol 32:414–420

    Article  Google Scholar 

  • Levene H (1960) Robust tests for the equality of variance. In: Olkin I et al (eds) Contributions to probability and statistics; essays in honor of Harold Hotelling. Stanford University Press, Stanford, CA, pp 278–292

  • McKenzie RIH, Lamb RJ, Aung T, Wise IL, Barker P, Olfert OO (2002) Inheritance of resistance to wheat midge, Sitodiplosis mosellana, in spring wheat. Plant Breed 121:383–388

    Article  Google Scholar 

  • Moritz G (2006) Thripse. (Fransenflügler, Thysanoptera) Pflanzensaftsaugende Insekten, Bd. 1. Neue Brehm Bücherei, 663, 384 Seiten

  • O’Brien RG (1981) A simple test for variance effects in experimental designs. Psychol Bull 89:570–574

    Article  Google Scholar 

  • Oakley JN, Cumbleton PC, Corbett SJ, Saunders P, Green DI, Young JEB, Rodgers R (1998) Prediction of orange wheat blossom midge activity and risk of damage. Crop Prot 17:145–149

    Article  Google Scholar 

  • Olfert OO, Mukerji MK, Doane JF (1985) Relationship between infestation levels and yield loss caused by wheat midge, Sitodiplosis mosellana (Géhin) (Diptera: Cecidomyiidae), in spring wheat in Saskatchewan. Can Entomol 117:593–598

    Article  Google Scholar 

  • Olfert O, Elliott RH, Hartley S (2009) Non-native insects in agriculture: strategies to manage the economic and environmental impact of wheat midge, Sitodiplosis mosellana, in Saskatchewan. Biol Invasions 11:127–133

    Article  Google Scholar 

  • Oosterbroek P (2006) The European families of the Diptera: identification, diagnosis, biology. KNNV Publishing, b&w illus, 208 pp, ISBN-10: 9050112455

  • Schröder A (2009) Evaluierung von Winterweizensorten zum Auftreten und Schadausmaß von Thysanopteren.Diplomarbeit Martin-Luther-Universität Halle-Wittenberg, University Press, 94 pp

  • Smith M, Lamb R (2001) Factors influencing oviposition by Sitodiplosis mosellana (Diptera: Cecidomyiidae) on wheat spikes. Can Entomol 133:533–548

    Article  Google Scholar 

  • Thomas CR, Maurice SC (2008) Statistix 9, 9th edn, Analytical software, Managerial Economics McGraw-Hill/Irwin (ISBN: 0073402818). http://www.statistix.com

  • Tottman DR (1987) The decimal code for the growth stages of cereals, with illustrations. Ann Appl Biol 110:441–454

    Article  Google Scholar 

  • USDA (2007) Annual World Production Summary, Grains. http://www.usda.gov/. Retrieved 4 Sept 2007

  • Volkmar C, Werner C, Matthes P (2008) On the occurrence and crop damage of wheat blossom midges (Contarinia tritici (Kby.) and Sitodiplosis mosellana (Geh.) in Saxony-Anhalt. Mitt Dtsch Ges Allg Angew Ent 16:305–308

    Google Scholar 

  • Zadoks JC, Chang TT, Konzak CF (1974) A decimal code for the growth stages of cereals. Weed Res 14:415–421

    Article  Google Scholar 

Download references

Acknowledgment

We want to thank Prof. M. Matter (National research Center, Egypt) for his useful comments on this manuscript.

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Correspondence to Nawal Gaafar.

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Communicated by M. Traugott.

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Gaafar, N., El-Wakeil, N. & Volkmar, C. Assessment of wheat ear insects in winter wheat varieties in central Germany. J Pest Sci 84, 49–59 (2011). https://doi.org/10.1007/s10340-010-0325-2

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