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Relationships between Fusarium population structure, soil nutrient status and disease incidence in field-grown asparagus

机译:芦笋上镰刀菌种群结构,土壤养分状况与疾病发生的关系

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摘要

Fusarium species cause important diseases in many crops. Lack of knowledge on how Fusarium species and strains interact with their environment hampers growth management strategies to control root diseases. A field experiment involving asparagus as host plant and three phosphorus fertilization levels was designed to examine the seasonal changes and ecological relationships between Fusarium populations and their soil and plant environments. Fusarium taxa were identified and assessed using PCR-denaturing gradient electrophoresis of the EF1-a gene. Resulting profiles were analyzed with respect to 17 ecological parameters measured during the three main asparagus phenological phases across a growing season. Multivariate statistical analysis showed that Fusarium population structure was strongly influenced by soil P level while seasonal variation was less important. A significant relationship between Fusarium population composition and Fusarium crown and root rot incidence was also found in September. Canonical analysis further revealed significant relationships between Fusarium population structure, and plant manganese and iron contents, soil dehydrogenase activity and soil calcium concentration. If higher Fusarium crown and root rot incidence is related to the Fusarium community structure, strategies to reduce the incidence in asparagus plantations may be found through manipulation of the soil fertility [KEYWORDS: Fusarium ; asparagus ; PCR-denaturing gradient electrophoresis ; fertilization ; phosphorus ; Fusarium crown and root rot]
机译:镰刀菌物种在许多农作物中引起重要的疾病。对镰刀菌属物种和菌株如何与其环境相互作用的知识的缺乏阻碍了控制根部疾病的生长管理策略。设计了以芦笋为寄主植物和三个磷肥水平的田间试验,以研究镰刀菌种群与其土壤和植物环境之间的季节变化和生态关系。使用EF1-a基因的PCR变性梯度电泳鉴定和评估镰刀菌。分析了整个生长季节在三个主要芦笋物候期中测得的17个生态参数的结果概况。多变量统计分析表明,镰刀菌种群结构受土壤磷水平的强烈影响,而季节性变化则不那么重要。 9月份还发现了镰刀菌种群组成与镰刀菌冠和根腐病发病率之间的显着关系。典型分析进一步揭示了镰刀菌种群结构与植物锰和铁含量,土壤脱氢酶活性和土壤钙浓度之间的显着关系。如果较高的镰刀菌冠腐病和根腐病发病率与镰刀菌群落结构有关,则可以通过控制土壤肥力找到降低芦笋人工林发病率的策略。芦笋 ; PCR-变性梯度电泳施肥;磷;镰刀菌根和根腐病]

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