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81.
A model was developed to quantify the effect of temperatureand moisture content on the longevity of conidia of the entomopathogenicfungusMetarhizium flavoviride . This model incorporated a negativesemi-logarithmic relation between longevity and temperatureand a negative logarithmic relation between longevity and moisturecontent. Replacing the latter with a negative semi-logarithmicrelation between longevity and the equilibrium relative humidityof the conidia was also effective. The latter model was appliedsuccessfully to observations on the survival of conidia of afurther four entomopathogenic fungi (Metarhizium anisopliae,Beauveria bassiana ,Beauveria brongniartii, andPaecilomycesfarinosus ) and ascospores, conidia or uredospores of four phytopathogenicfungi (Alternaria porri ,Helminthosporium oryzae ,Uromyces appendiculatus, andSclerotinia sclerotiorum ) across a wide range of differenttemperatures and relative humidities. The sensitivity of sporelongevity to both temperature and equilibrium relative humidity,and the upper and lower relative humidity limits to the applicationof the model, varied considerably between entomopathogenic andphytopathogenic fungi, among species within each group, andamong different strains within certain species. Metarhizium flavoviride W. Gams & J. Roszypal; entomopathogenic fungi; phytopathogenic fungi; spore survival; storage environment; conidia; uredospore; ascospore  相似文献   
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Reanalyses of extensive results from three separate controlledenvironment studies show that the rate of progress towards floweringin plants of the Sudanese faba bean (Vicia faba L.) land-raceZeidab Local responds consistently and without interaction tophotoperiod and sub-optimal temperatures across all investigations,with no specific low-temperature vernalization response. Moreover,the additive model developed to describe the photothermal responseis sufficiently robust to show that the range between the twoboundary photoperiods is substantial, and so covers most agriculturalenvironments: the critical photoperiod, below which floweringis delayed, is  相似文献   
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Epidemic development of Septoria nodorum was examined in pure stands and mixtures of two spring wheat cultivars, Kolibri and Maris Butler. In mixtures, disease development was reduced almost to that of the more resistant pure stand (Maris Butler). Disease levels, however, were low and no significant differences in grain yield per head were demonstrated. Disease development was further investigated for the host-pathogen combinations winter wheat/S. nodorum and winter barley/Rhynchosporium secalis. With both combinations the mixed stands again reduced disease levels to almost that of the more resistant pure stands. In general, mixed stands were more effective against R. secalis, although, with S. nodorum, disease levels were low. The yield response in mixed stands differed for the host cultivars and was not significantly changed by the presence of disease. The complexity of analysing such situations and the implications of these findings for mixtures of cultivars differing in resistance to non-specialised pathogens are discussed.  相似文献   
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Ground‐based surveys of tree hollows often give poor estimates of hollow abundance in forests. Woodlands have shorter trees and a more open structure than forests, which may make hollows easier to detect. Therefore, one would expect ground‐based surveys of tree hollows to be more accurate in woodlands than in forests. We compared hollow counts from ground‐based and climbing surveys (double sampling) for four species of Eucalyptus trees in woodlands of central‐western New South Wales, Australia: E. camaldulensis Dehnh, E. melliodora A. Cunn. ex Schauer, E. microcarpa Maiden and E. populnea F. Muell. ssp. bimbil L.A.S. Johnson & K.D. Hill and E. melliodora A. Cunn. ex Schauer. Overall, 83% of hollow‐bearing trees and 93% of trees without hollows were correctly classified by ground‐based surveys. Mean difference in hollow counts of ground‐based surveys to climbed surveys was 1.7 hollows ± 0.2 SE (all species combined) with 91% of ground‐based hollow counts being within five of the actual number of hollows. The error in ground‐based counts of hollows in E. microcarpa was larger than for the other three species. Errors in all species resulted from both overestimation and underestimation of hollow abundance by ground‐based surveys. A larger error was associated with the detection of hollows located in branches compared with hollows located in the main trunk(s). Total number of hollows in the tree (based on climbing surveys), crown area or maximum trunk diameter were significant predictors of ground‐based survey accuracy. Overall, the accuracy associated with ground surveys was relatively high and generally error rates were lower than those published for forests.  相似文献   
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