首页> 外文期刊>International Journal of Microbiology >Effects of Two Salts Compounds on Mycelial Growth, Sporulation, and Spore Germination of Six Isolates ofBotrytis cinereain the Western North of Algeria
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Effects of Two Salts Compounds on Mycelial Growth, Sporulation, and Spore Germination of Six Isolates ofBotrytis cinereain the Western North of Algeria

机译:两种盐类化合物对阿尔及利亚北部北部灰葡萄孢六个分离物菌丝生长,孢子形成和孢子萌发的影响

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Six isolates ofBotrytis cinereawere isolated from leaves and stems of different tomato varieties taken from four areas in the northwest of Algeria where tomato is mostly grown in greenhouses and high tunnels. The purpose of this research was to determine the effect of two salts, NaCl and CaCl2, on three stages ofBotrytis cinerea’slife cycle. All isolates tested were stimulated in 50 to 150 ppm; NaCl was the most effective treatment to increase mycelial growth at two tested concentrations. However, at 300 ppm concentration, CaCl2completely inhibited the growth of mycelium; they reach 34.78% for the isolate TR46 and 26.72% for isolate F27. The sodium and calcium salts stimulated conidia production in liquid culture. We noticed that the effect of calcium chloride on sporulation was average while sodium chloride. In the medium containing 50 ppm, calcium chloride and sodium chloride increased the germination capacity of most isolates compared with the control. Other calcium salts, at 100 or 300 ppm, decreased the germination percentage of the conidia. With the exception of sodium salts, the inhibitions of germination reduce at 150 or 300 compared with the control. Conidial germination was slightly inhibited by sodium chloride only when the concentration was over 300 ppm.
机译:从阿尔及利亚西北部四个地区的不同番茄品种的叶片和茎中分离出六株葡萄灰霉病菌,番茄主要生长在温室和高大的隧道中。这项研究的目的是确定NaCl和CaCl2这两种盐对灰葡萄孢菌生命周期三个阶段的影响。所有测试的分离物均以50至150 ppm的浓度刺激。在两个测试浓度下,NaCl是增加菌丝生长的最有效方法。然而,浓度为300 ppm时,CaCl2完全抑制了菌丝体的生长。分离株TR46达到34.78%,分离株F27达到26.72%。钠盐和钙盐刺激液体培养中的分生孢子产生。我们注意到氯化钙对孢子形成的影响是平均的,而氯化钠对它的影响是平均的。与对照相比,在含有50 ppm的培养基中,氯化钙和氯化钠提高了大多数菌株的发芽能力。其他浓度为100或300ppm的钙盐会降低分生孢子的发芽率。除钠盐外,与对照相比发芽抑制在150或300时降低。仅当浓度超过300 ppm时,分生孢子的萌发才被氯化钠轻微抑制。

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