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Evaluation of film forming polymers to control apple scab (Venturia inaequalis (Cooke) G. Wint.) under laboratory and field conditions

机译:在实验室和野外条件下评估成膜聚合物以控制苹果黑星病(Venturia inaequalis(Cooke)G. Wint。)

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A detached leaf bioassay was used to determine the influence of several film forming polymers and a conventional triazole fungicide on apple scab (Venturia inaequalis (Cooke) G. Wint.) development under laboratory in vitro conditions, supported by two field trials using established apple cv. Golden Delicious to further assess the efficacy of foliar applied film forming polymers as scab protectant compounds. All film forming polymers used in this investigation (Bond, Designer, Nu-Film P, Spray Gard, Moisturin, Companion PCT12) inhibited germination of conidia, subsequent formation of appressoria and reduced leaf scab severity using a detached leaf bioassay. Regardless of treatment, there were no obvious trends in the percentage of conidia with one to four appressoria 5 days after inoculation. The synthetic fungicide penconazole resulted in the greatest levels of germination inhibition, appressorium development and least leaf scab severity. Under field conditions, scab severity on leaves and fruit of apple cv. Golden Delicious treated with a film forming polymer (Bond, Spray Gard, Moisturin) was less than on untreated controls. However, greatest protection in both field trials was provided by the synthetic fungicide penconazole. Higher chlorophyll fluorescence Fv/Fm emissions in polymer and penconazole treated trees indicated less damage to the leaf photosynthetic system as a result of fungal invasion. In addition, higher SPAD values as measures of leaf chlorophyll content were recorded in polymer and penconazole treated trees. Application of a film forming polymer or penconazole resulted in a higher apple yield per tree at harvest in both the 2005 and 2006 field trials compared to untreated controls. Results suggest application of an appropriate film forming polymer may provide a useful addition to existing methods of apple scab management.
机译:在实验室的体外条件下,采用离体叶片生物测定法来确定几种成膜聚合物和常规三唑类杀菌剂对苹果sc(Venturia inaequalis(Cooke)G. Wint。)发育的影响。 。 Golden Delicious进一步评估了叶面涂膜成膜聚合物作为结ab保护剂化合物的功效。本研究中使用的所有成膜聚合物(Bond,Designer,Nu-Film P,Spray Gard,Moisturin,Companion PCT12)均可以通过分叶生物测定抑制分生孢子的萌发,随后的附子形成并降低叶片结ab的严重程度。无论采用何种治疗方法,接种后5天,分生孢子百分比均无明显趋势,并伴有1-4个食欲。合成杀真菌剂戊菌唑可最大程度地抑制发芽,抑制Appressorium发育,并减轻叶片结sc的严重程度。在田间条件下,苹果简历的叶片和果实结sc严重。用成膜聚合物(Bond,Spray Gard,Moisturin)处理的Golden Delicious少于未处理的对照组。但是,在两种田间试验中,合成杀真菌剂戊康唑提供了最大的保护。聚合物和戊康唑处理的树木中较高的叶绿素荧光Fv / Fm排放表明,由于真菌入侵,对叶片光合系统的损害较小。另外,在聚合物和戊康唑处理的树木中记录到较高的SPAD值,作为衡量叶绿素含量的指标。与未处理的对照相比,在2005年和2006年的田间试验中,施用成膜聚合物或戊康唑可提高收获时每棵苹果的苹果产量。结果表明,适当的成膜聚合物的应用可能为现有的苹果黑星病管理方法提供有用的补充。

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