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Fig. 3. Conidiophores and conidia of Fusarium oxysporum.
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图三、台湾木贼茎腐病之病原菌孢子梗及孢子。 |
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Fig. 3. Effect of temperatures on survival of pycnidiospores of Didymella bryoniae in soils.
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三、在土壤中,温度对于瓜类蔓枯病菌柄孢子存活的影响。 |
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Fig. 3: Set up rules for special application software and attacks.
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图三、特殊应用程式及攻击规则设定。 |
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Fig. 4. Pycnidiospore survival of Didymella bryoniae placed at soil surface, 5, 15, and 30cm below ground at field.
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四、在土壤表面、地表下5、15及30公分土壤深度的瓜类蔓枯病菌柄孢子存活情形。 |
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Fig. 4. Symptom of stem blight of horse-tail 45 days after inoculated with spore suspension of Fusarium oxysporum. Left: uninoculated, right: inoculated.
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图四、镰孢菌孢子悬浮液接种后一个半月,台湾木贼茎腐病之病徵。左:未接种,右:接种。 |
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Fig. 4: The analysis of network flow.
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图四、网路流量分析。 |
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Fig. 4:Right Hand Side: Nylon Name Tag DAUGHERTY; 1st Cavalry Div. (Previous Unit in Battle) on Right Arm; Captain's Rank on Shoulder Epaulette. Above Pocket; .
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图四:右方:上臂『第一骑兵师』﹝上场战事所属部队﹞、肩『上尉』官阶、袋掩上方姓氏尼龙名带DAUGHERTY。 |
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Fig. 5. Influence of pycnidiospore density in soil on the disease incidence of melon cotyledon caused by Didymella bryoniae.
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五、土壤中添加蔓枯病菌柄孢子对于香瓜子叶发病的影响。 |
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Fig. 5. Symptom of stem blight of horse-tail 45 days after inoculated with infested soil of Fusarium oxysporum. Left: uninoculated, right: inoculated.
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图五、镰孢菌病土接种后一个半月,台湾木贼茎腐病之病徵。左:未接种,右:接种。 |
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Fig. 5. Symptoms of fusarial wilt of wax gourd on artificially inoculated plants (left) compared to non-inoculated plants (right).
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图五、人工接种后出现的冬瓜萎凋病病徵(左为接种组,右为对照组)。 |
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Fig.1 CT of the head showing left basal ganglin hematoma with well-defined borders and low-density and and mixed densities areas around the hematoma.
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1头颅CT见左基底节脑内血肿,边界清,血肿周围见低密度及混杂密度区. |