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Fungicide Treatments to Control Seed-borne Fungi of Sunflower Seeds

机译:用于控制向日葵种子的种子真菌的杀菌剂治疗

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Seed-borne fungi in 69 sunflower cultivars were evaluated which comprised 52 confectionery and 17 oilseed types. Seed coats were placed on both NP-10 (Nonylphenol Ethoxylate based surfacant 10) and potato dextrose agar (PDA) media to culture fungi. The rate of contamination among the different varieties was calculated by counting seed coats with fungal colonies. The rate of contamination in the confectionary group (88%) was significantly (p <= 0.05) higher than in the oilseed group (71%). Of the 52 confectionery varieties, the dominant fungi recovered were Verticillium dahliae along with Alternaria spp., Fusarium spp., and Rhizopus spp., whereas the oilseed type varieties were contaminated with only V. dahliae. Molecular identification of fungal species via BLAST (Basic Alignment Search Tool) was performed on fungal sequences obtained from PCR (Polymerase Chain Reaction) analysis. The results included five Alternaria spp. that included Alternaria tenuissima, Alternaria alternata, Alternaria helianthiinficiens, Alternaria longipes, and Alternaria tamaricis, three Fusarium spp. such as Fusarium oxysporum, Fusarium incarnatum, and Fusarium proliferatum, and V. dahliae and Cladosporium cladosporioides. These were identified from pure fungal cultures recovered from seed coats. To efficiently control seed-borne fungi, four broad spectrum fungicides (carbendazim, triadimefon, caprio F-500, and flusilazole) were screened against V. dahliae isolate Gn3, which was isolated from a diseased LD 5009 sunflower plant. Flusilazole was selected based on its low half-maximal effective concentration value (EC50), 78.7 mu g/mL. Seeds of diseased LD5009 plants obtained from two different locations treated with formulated flusilazole fungicide at optimum parameters showed a significant (p <= 0.05) increase in seed germination and a decrease in contamination rate from 98% to less than 10%. The results affirmed that confectionery cultivars are much more susceptible to fungal contamination than oilseeds, and also that seed pretreatment is a suitable way to prevent the spread of soil- and seed-borne fungi in sunflower production.
机译:评估了69种阳光品种的种子雄性真菌,其中包含52种糖果和17种油籽类型。将种子涂层置于NP-10(壬基酚乙氧基化物质剂10)和马铃薯葡萄糖琼脂(PDA)培养基上置于培养真菌上。通过用真菌菌落计数种子涂层来计算不同品种之间的污染速度。糖果组(88%)中的污染率显着(p <= 0.05)高于油籽组(71%)。在52个糖果品种中,恢复的占优势真菌与alterararia spp一起恢复的verticillium dahliae。,镰刀菌,镰刀菌和根瘤菌。,而石油型品种仅被V. dahliae污染。通过BRAST(基本对准搜索工具)对从PCR(聚合酶链反应)分析获得的真菌序列进行真菌物种的分子鉴定。结果包括五个alternaria spp。其中包括Errertaria Tenuissima,alternaria alternata,alternaria helianthiinficiens,alternaria longipes和serteralaria tamaricis,三个镰刀菌。如镰刀菌,镰刀菌,镰刀菌,镰刀菌和镰刀菌,镰刀菌,镰刀菌和囊肿孢子酸钙。这些来自从种子涂层中回收的纯真菌培养物中鉴定。为了有效地控制种子般的真菌,筛选了四种广谱杀菌剂(Carbendazim,Triadimefefefon,Caprio F-500和Flusileazole),其与患病LD 5009向日葵植物分离的V. Dahliae分离物GN3。基于其低半最大有效浓度值(EC50),78.7μg/ ml来选择氟脲。在最佳参数下用配制的荧光胺杀菌剂处理的两种不同地点获得的患病的种子显示出显着的(P <= 0.05)种子萌发增加,污染率降低为98%至小于10%。结果肯定了糖果品种比油籽更容易受到真菌污染的影响,也是种子预处理是防止在向日葵生产中的土壤和种子真菌蔓延的合适方式。

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