Aphid Biodiversity under Environmental Change: Patterns and by Pavel Kindlmann, A.F.G. Dixon, J.P. Michaud

By Pavel Kindlmann, A.F.G. Dixon, J.P. Michaud

This e-book provides thoroughly novel, but unpublished findings on aphid inhabitants dynamics and ecology within the context of modern environmental alterations and heavily comparable concerns. it may be used as complementary textual content in any path on inhabitants dynamics and ecology of crop pests at undergraduate or graduate degrees. The publication is meant in most cases for graduate scholars, researchers in crop technology, crop defense, agricultural advisors and executives, however it would definitely allure consciousness of many people attracted to insect pests, their organic regulate and ecology.

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Extra info for Aphid Biodiversity under Environmental Change: Patterns and Processes

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Clark Fig. 3 Annual Julian date of first suction trap record (y-axis) against mean screen temperature for January and February (◦ C, x-axis) for 20 aphid species at Rothamsted. Regression lines shown are from analyses before removing outliers for A. solani, M. dirhodum, M. ascalonicus, S. fragariae and N. ribisnigri (see text). Only the line for N. 05) The fits of the regressions tended to be better for those species that overwinter mainly in the mobile stages in the Rothamsted area than for those that usually overwinter as eggs.

These ice cores also provide information on the presence Acyrtosiphon pisum Aulacorthum solani Triticum spp. Vicia faba Sitobion avenae Aulacorthum solani Aulacorthum solani Cepegillettea betulaefoliae Vicia faba Tanacetum vulgare Betula papyrifera Plant-host Species 700 ppm amb. 5 × amb. 5 × amb. – – O3 – – – – P – – – – D – – – – N Awmack and Harrington (2000) Awmack et al. (2004) Awmack et al. (1996) Awmack et al. (1997) References Aphid individual performance did not predict population responses – Elevated CO2 and O3 are unlikely to affect C.

7). Removal of the outlier 48 R. Harrington and S. Clark Fig. 4 Annual Julian date of first suction trap record (y-axis) against mean screen temperature for January and February (◦ C, x-axis) for Myzus persicae at 12 suction trap sites with regression lines superimposed (Rothamsted shown in Fig. 3). 05) for Drepanosiphum platanoidis decreased the slope slightly but did not affect the overall conclusion of no relationship. However, removal of the two outliers for M. 056). Distinct groups of years with early (before Julian date 240) and late last records were seen for A.

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