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首页> 外文期刊>Applied and Environmental Microbiology >Survival of Ice Nucleation-Active and Genetically Engineered Non-Ice-Nucleating Pseudomonas syringae Strains after Freezing
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Survival of Ice Nucleation-Active and Genetically Engineered Non-Ice-Nucleating Pseudomonas syringae Strains after Freezing

机译:冰核活性和基因工程非冰核丁香假单胞菌菌株冷冻后的存活。

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The survival after freezing of ice nucleation-active (INA) and genetically engineered non-INA strains of Pseudomonas syringae was compared. Each strain was applied to oat seedlings and allowed to colonize for 3 days, and the plants were subjected to various freezing temperatures. Plant leaves were harvested before and after freezing on two consecutive days, and bacterial populations were determined. Populations of the INA wild-type strain increased 15-fold in the 18 h after the oat plants incurred frost damage at ?5 and ?12°C. Plants colonized by the non-INA strain were undamaged at ?5°C and exhibited no changes in population size after two freeze trials. As freezing temperatures were lowered (?7, ?9, and ?12°C), oat plants colonized by the non-INA strain suffered increased frost damage concomitant with bacterial population increases following 18 h. At ?12°C, both strains behaved identically. The data show a relationship between frost damage to plants and increased bacterial population size during the following 18 h, indicating a potential competitive advantage of INA strains of P. syringae over non-INA strains in mild freezing environments.
机译:比较了冰核活性(INA)和丁香假单胞菌的基因工程非INA菌株冷冻后的存活率。将每种菌株施用于燕麦幼苗并使其定殖3天,并使植物经受各种冷冻温度。在连续两天的冷冻之前和之后收获植物叶片,并确定细菌种群。在燕麦植物在?5和?12°C遭受霜冻损害后的18小时内,INA野生型菌株的种群增加了15倍。用非INA菌株定植的植物在5°C时未受到损害,并且在两次冷冻试验后种群数量没有变化。随着冷冻温度的降低(?7,?9和?12°C),由非INA菌株定植的燕麦植株遭受的霜冻损害增加,而细菌种群在18小时后增加。在?12°C时,两种应变的表现相同。数据显示在接下来的18小时内,霜冻对植物的伤害与细菌种群数量的增加之间的关系,表明丁香假单胞菌的INA菌株在温和的冰冻环境中比非INA菌株具有潜在的竞争优势。

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