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用真菌或细菌拮抗剂进行种子处理以减少由腐霉菌和镰刀菌引起的玉米猝倒病

Seed Treatment with a Fungal or a Bacterial Antagonist for Reducing Corn Damping-off Caused by Species of Pythium and Fusarium.

作者信息

Mao W, Lewis J A, Hebbar P K, Lumsden R D

机构信息

Biocontrol of Plant Diseases Laboratory, USDA-ARS, Beltsville, MD 20705.

出版信息

Plant Dis. 1997 May;81(5):450-454. doi: 10.1094/PDIS.1997.81.5.450.

DOI:10.1094/PDIS.1997.81.5.450
PMID:30861920
Abstract

Bioassays were conducted under greenhouse conditions to test the efficacy of antagonists applied to corn (Zea mays) seed for protection against seed rot and seedling damping-off at 18 and 25°C in a field soil artificially infested with a combination of Pythium ultimum, P. arrhenomanes, and Fusarium graminearum. Biomass of Gliocladium virens isolates Gl-3 or Gl-21, Trichoderma viride isolate Tv-1, or peat-based slurry of Burkholderia cepacia isolates Bc-B, Bc-T, or Bc-1 was coated individually onto corn seeds in one test, and Gl-3 or Bc-B at four inoculum levels was used in another test. Seed treatments with most of the biocontrol agents, as well as with the fungicide captan, significantly (P ≤ 0.05) increased seedling stand, plant height and fresh weight, and decreased root rot severity compared with untreated seeds in pathogen-infested soil. Coating seeds with the biocontrol fungus G. virens isolate Gl-3 was the most effective treatment, resulting in greater (P ≤ 0.05) seedling stand, plant height, and fresh weight, and lower (P ≤ 0.05) severity of root rot than those parameters from seeds treated with captan or other antagonists at both temperatures. The results from the seeds treated with Gl-3 were similar to those of untreated seeds in noninfested soil. In treatments with Bc-1, Bc-T, Bc-B, or Tv-1, incubation temperature affected plant emergence, root rot severity, plant height, and fresh weight (P ≤ 0.01). Conversely, in seeds coated with Gl-3 or Gl-21, these parameters were similar at both temperatures. The minimum number of propagules needed per corn seed to obtain plant emergence comparable to that from captan-treated seeds was between 10 and 10 CFU for Gl-3 and >10 for Bc-B. When propagules of Gl-3 were applied at a rate >10 CFU per seed, seedling emergence was greater (P ≤ 0.05) than that from captan-treated seeds.

摘要

在温室条件下进行了生物测定,以测试将拮抗剂施用于玉米(Zea mays)种子,在18和25°C下,在人工接种终极腐霉、瓜果腐霉和禾谷镰刀菌组合的田间土壤中,对预防种子腐烂和幼苗猝倒病的效果。在一项试验中,分别将绿黏帚霉分离株Gl-3或Gl-21、绿色木霉分离株Tv-1或洋葱伯克霍尔德菌分离株Bc-B、Bc-T或Bc-1的泥炭基菌悬液包衣到玉米种子上,在另一项试验中使用了四种接种水平的Gl-3或Bc-B。与未处理的种子相比,在病原菌侵染的土壤中,大多数生物防治剂以及杀菌剂克菌丹处理种子后,显著(P≤0.05)提高了幼苗出土率、株高和鲜重,并降低了根腐病严重程度。用生物防治真菌绿黏帚霉分离株Gl-3包衣种子是最有效的处理方法,在两个温度下,与用克菌丹或其他拮抗剂处理的种子相比,Gl-3处理的种子具有更高(P≤0.05)的幼苗出土率、株高和鲜重,以及更低(P≤0.05)的根腐病严重程度。用Gl-3处理的种子的结果与未接种土壤中未处理种子的结果相似。在Bc-1,Bc-T,Bc-B或Tv-1处理中,培养温度影响植株出苗、根腐病严重程度、株高和鲜重(P≤0.01)。相反,在包衣有Gl-3或Gl-21的种子中,这些参数在两个温度下相似。为使玉米种子出苗率与克菌丹处理种子相当,每粒玉米种子所需的最低繁殖体数量,对于Gl-3为10⁶至10⁷CFU,对于Bc-B大于10⁷CFU。当Gl-3的繁殖体以每粒种子>10⁷CFU的速率施用时,幼苗出苗率高于(P≤0.05)克菌丹处理的种子。

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