首页|期刊导航|花生学报|抗青枯病花生品种与种子处理对花生土传病害防控及产量的影响

抗青枯病花生品种与种子处理对花生土传病害防控及产量的影响OA

Effects of Bacterial Wilt-Resistant Varieties and Seed Coatings on the Prevention and Control of Soil-Borne Diseases in Peanuts

中文摘要英文摘要

采用3个抗花生青枯病品种及种衣剂和生防菌为材料,对花生土传病害的防控效果展开研究,观测分析花生出苗率、开花初期和中期发病率、收获期花生植株生物学性状及小区荚果产量.结果表明:各处理花生平均出苗率83.33%~99.17%之间;花生开花初期土传病害发病率在0.00%~2.73%之间,木霉处理发病最低,对照发病最高,处理间无显著差异;开花中期发病率在2.92%~14.17%之间,亮盾处理发病最低,对照发病最高,处理间无显著差异;品种间,抗黄1号发病最轻,福花3号发病最重,福花3号发病与其他品种有显著差异;复合菌剂处理能显著促进花生主茎高和侧枝长,并提高单株果质量和仁质量;木霉处理能提高结果枝率、荚果总数、饱果率、双仁果率、百果质量、百仁质量和出仁率;亮盾处理降低了百果质量和百仁质量,显著降低了花生的饱果率和双仁果率,造成单株果质量和仁质量减轻.各处理花生小区荚果产量均比对照增产,不同种子处理中亮盾的小区荚果产量最高,为2 505.43 kg/hm2,与其他处理有显著差异;品种中抗黄1号小区荚果产量最高,为2 651.0 kg/hm2,与其他品种有显著差异.二种处理组合中,产量排在前三的分别是亮盾、复合菌剂和木霉处理的抗黄1号组合,荚果产量分别为3 721.8、2 887.22和2 383.46 kg/hm2.综上,从3个抗花生青枯病品种中筛选出花生土传病害抵抗强的品种为抗黄1号,它适配多种种子处理,配合亮盾种衣剂效果最好.

In this study,the control effects of three bacterial wilt-resistant peanut varieties combining with seed coatings and bio-control agents on the soil-borne diseases were investigated.Observations and analyses were conducted on the seed-ling emergence rate,disease incidence rate at initial and mid-flowering stages,biological traits of mature plants,and pod yield per plot.The results showed that the average seedling emergence rate of peanuts ranged from 83.33%to 99.17%.The incidence of soil-borne diseases in the initial flowering stage of peanuts ranged from 0.00%to 2.73%,with the lowest disease incidence in the Trichoderma treatment and the highest in the control,with no significant difference between treatments.The disease incidence in the mid-flowering stage ranged from 2.92%to 14.17%,with the lowest disease inci-dence in the seed coating of Liangdun treatment and the highest in the control,with no significant difference between treatments.Among the varieties,the disease incidence of variety Kanghuang1 was the lowest,and that of variety Fuhua3 was the highest,and the variety Fuhua3 showed significant differences in disease incidence comparing to other varieties.The compound bacterium agent treatment significantly promoted peanut main stem height and lateral branch length,while increasing pod mass and kernel mass per plant.The Trichoderma treatment enhanced the fruit-bearing branch rate,total number of pods,full-fruit rate,double-kernel pod rate,100-pod mass,100-kernel mass,and kernel-fruit ratio.In contrast,the seed coating Liangdun treatment reduced 100-pod mass and 100-kernel mass,significantly decreased the full-fruit rate and double-kernel pod rate,and resulted in lower pod mass and kernel mass per plant.All treatments increased peanut pod yield compared to the control treatment.Seed coating Liangdun achieved the highest pod yield as 2 505.43 kg/ha,showing signifi-cant differences with other treatments.Among varieties,Kanghuang1 exhibited the highest pod yield as 2 651.0 kg/ha,with sig-nificant differences comparing to other varieties.Among the two treatment combinations,the top three yield combinations were the variety Kanghuang1 treated with seed coating Liangdun,compound bacterium agent,and Trichoderma,with yields of 3 721.8,2 887.22 and 2 383.46 kg/ha,respectively.In conclusion,Kanghuang1 was identified as a soil-borne disease-resistant variety among the three peanut bacterial wilt-resistant varieties,which demonstrated compatibility with multiple seed treatments,with the seed coating Liangdun showing the most effective synergy.

徐日荣;陈昊;陈湘瑜

福建省农业科学院作物研究所/福建省种质资源中心,福建 福州 350013福建省农业科学院作物研究所/福建省种质资源中心,福建 福州 350013福建省农业科学院作物研究所/福建省种质资源中心,福建 福州 350013

农业科技

花生土传病害生防菌种衣剂抗青枯病

peanutsoil-borne diseasebiocontrol bacteriaseed coating agentbacterial wilt resistance

《花生学报》 2026 (1)

66-72,7

福建省属公益类科研院所专项(2022R1031004)

10.14001/j.issn.1002-4093.2026.01.008

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