4.7 Article

Growth and nutrition of Pinus radiata in response to fertilizer applied after thinning and interaction with defoliation associated with Essigella califomica

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FOREST ECOLOGY AND MANAGEMENT
卷 255, 期 7, 页码 2118-2128

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ELSEVIER SCIENCE BV
DOI: 10.1016/j.foreco.2007.12.020

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Pinus radiata; monterey pine aphid; Essigella californica; tree nutrition; insect herbivory

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Infestations of Essigella californica following the installation of post-thinning fertilizer trials in Pinus radiata plantations provided an opportunity to examine the impact of repeated defoliation over a period of 8 years (1997-2005). Replicated treatments (n = 4) of nil fertilizer (control), N (300 kg ha(-1)) as urea, P (80 kg ha(-1)) and S (45 kg ha(-1)) as superphosphates were applied immediately after thinning at three sites and this was followed by a second application of NPS fertilizers 6 years later with N applied at 300 kg ha(-1) as urea and ammonium sulphate and P at 80 or 120 kg ha(-1). Defoliation of untreated R radiata gradually increased to 50% over a period of 8 years. Basal area growth was negatively correlated with average defoliation for two consecutive post-fertilizer periods of 6 and 2 years. Growth responses to fertilizer varied considerably between sites but the largest improvement in growth was due to NPS fertilizer, this increased basal area by 30-80%. Application of N fertilizer raised total N levels in foliage and increased defoliation with a commensurate loss in growth under conditions of deficiencies of S or P. Repeated infestations gradually increased the percentage of trees with severe defoliation (> 80% loss of foliage) indicating that nutrient-deficient trees have a reduced capacity for foliage recovery between episodes of peak infestation. In contrast, treatment with N fertilizer in combination with S- and P-corrected deficiencies of these nutrients, raised levels of total N in foliage and reduced defoliation to approximately 20%. Basal area growth responses to NPS fertilizers reflected improved nutrition as well as reduced insect damage. The reduction in defoliation under conditions of balanced tree nutrition was most likely due to enhanced needle retention following correction of P deficiency as well as greater availability of nutrients enabling a more vigorous recovery of R radiata after an episode of E. californica activity. Treatment with fertilizer therefore reduced the long-term impact of aphid damage and improved growth of R radiata. (C) 2007 Elsevier B.V. All rights reserved.

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