首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Influence of changing temperature on growth rate and competition between two psychrotolerant Antarctic bacteria: competition and survival in non-steady-state temperature environments.
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Influence of changing temperature on growth rate and competition between two psychrotolerant Antarctic bacteria: competition and survival in non-steady-state temperature environments.

机译:温度变化对两种抗精神病的南极细菌的生长速率和竞争的影响:非稳态温度环境下的竞争和生存。

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摘要

Competition between two psychrotolerant bacteria was examined in glycerol-limited chemostat experiments subjected to non-steady-state conditions of temperature. One bacterium, a Brevibacterium sp. strain designated CR3/1/15, responded rapidly to temperature change, while a second, Hydrogenophaga pseudoflava, designated CR3/2/10, exhibited a lag in growth after a shift-down during a square-wave temperature cycle but not after a shift-up. The effects on competition and survival by these bacteria of both sine-wave and square-wave temperature changes between 2 and 16 degrees C over a 24-h cycle time were examined, as well as square-wave cycles over 12 and 96 h. The changing proportion of each bacterium in the chemostat was determined by plate counting at regular intervals. Under a sine-wave temperature cycle H. psedoflava outcompeted the Brevibacterium sp., but under square-wave temperature cycles the two bacteria coexisted because the lag by H. pseudoflava after the temperature shift-down favored the faster-responding Brevibacterium sp. The two bacteria thus exhibited different survival strategies, with H. pseudoflava adapted to effective competition under steady-state conditions and the Brevibacterium sp. adapted to rapid adaptation and survival in a changing environment. The degree of perturbation of the bacteria, expressed as a temperature challenge index (delta temp/delta time), was greater under a square-wave temperature cycle than under a sine-wave cycle of equivalent amplitude and frequency, and higher-temperature challenge favored the Brevibacterium sp. A computer model was developed to examine competition between the bacteria in transient environments. The frequency of the temperature cycle influenced competition, as with a longer cycle (96 h) the significance of the lag by H. pseudoflava decreased compared with that of a 24-h cycle, and H. pseudoflava predominated in a mixed culture with a 96-h cycle. The shift-down lag by H. pseudoflava, during which it adapted to low temperature, disadvantaged it in a changing temperature environment, but at a short cycle time (12 h) this disadvantage was countered by the incomplete loss of low-temperature adaptation between cycles and thus the carryover of some low-temperature adaptation. Also, it was demonstrated that, as well as consideration of the effect of temperature changes on inducing lags in growth, the loss of adaptation to low temperature between cycles had to be taken into account in the computer model if it was to reproduce the trends in the experimental data.
机译:在经受温度非稳态条件的甘油受限的恒化器实验中检查了两种抗精神病细菌之间的竞争。一种细菌,短杆菌属。命名为CR3 / 1/15的菌株对温度变化迅速响应,而命名为CR3 / 2/10的第二个假单胞菌Hydrogenophaga pseudoflava在方波温度周期内下移后表现出生长滞后,而在下移后则没有增长-向上。研究了这些细菌在24小时的循环时间内正弦波和方波温度在2至16摄氏度之间变化以及在12和96小时内的方波循环对竞争和存活的影响。通过固定间隔的平板计数来确定化学细菌在恒化器中的变化比例。在正弦波温度循环下,psedoflava胜过短杆菌属,但在方波温度循环下,这两种细菌共存,因为温度下降后假拟杆菌的滞后有利于响应速度更快的短杆菌属。因此,这两种细菌表现出不同的生存策略,其中假黄杆菌和稳态杆菌适合于在竞争条件下的有效竞争。适应瞬息万变的环境中的快速适应和生存。以温度挑战指数(δ温度/δ时间)表示的细菌摄动程度,在方波温度循环下要比在振幅和频率相等的正弦波循环下要大,高温挑战更受青睐。短杆菌属开发了计算机模型以检查瞬态环境中细菌之间的竞争。温度周期的频率会影响竞争,因为更长的周期(96小时)与24小时周期相比,假丝酵母​​的滞后显着性降低,而假丝酵母在以96的混合培养中占主导地位。 -h周期。 H. pseudoflava的降档滞后在此期间适应低温,在温度变化的环境中处于不利地位,但在较短的循环时间(12小时)中,此缺点被低温适应性的不完全丧失所抵消。循环,从而导致一些低温适应的残留。此外,还表明,除了要考虑温度变化对诱导生长滞后的影响外,如果要重现生长趋势,必须在计算机模型中考虑到循环之间对低温的适应性损失。实验数据。

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