驯化温度对极端低温和高温下念珠菌损伤积累的热敏感性的影响

IF 2.2 Q1 ENTOMOLOGY
Micha Wehrli, Stine Slotsbo, Jian Ge, Martin Holmstrup
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引用次数: 0

摘要

我们研究了热驯化对常见土生春尾(Folsomia candida,Collembola,Isotomidae)热死亡时间(TDT)景观的重要性。为此,我们分别在10 °C(冷适应)和20 °C(暖适应)条件下驯化成年箭尾。在静态热耐受性试验中,我们发现了在一些应激性高温和低温条件下存活率与暴露时间之间的关系。利用逻辑模型,我们发现了在每个暴露温度下达到 50%死亡率的时间(Lt50)。通过对Lt50的log10值与暴露温度进行线性回归,我们发现了TDT曲线的指数函数。结果表明,冷适应显著提高了念珠菌的耐寒性,并增加了冷损伤累积率对温度的依赖性(斜率增加了 4 个数量级)。因此,低温驯化改变了该物种的状态,使其从寒冷易感变为中度耐寒。在这项研究中,零度以下的细胞损伤累积与体内水分冻结无关。同样,我们发现冷适应对耐热性有显著的负面影响,冷适应降低了热损伤累积率的热敏感性。不同驯化组的 TDT 曲线斜率不同,表明驯化改变了细胞损伤机制的比例重要性或损伤机制的性质。最后,我们将极端高温和极端低温下的 TDT 曲线与之前公布的良性温度(0 至 30 °C)下的寿命结果进行了比较和综合,并描述了念珠菌的整个热生态位。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Acclimation temperature influences the thermal sensitivity of injury accumulation in Folsomia candida at extreme low and high temperatures

The importance of thermal acclimation for the Thermal Death Time (TDT) landscape of the common soil living springtail, Folsomia candida (Collembola, Isotomidae), was investigated. To this aim, we acclimated adult springtails at 10 °C (cold-acclimation) and 20 °C (warm-acclimation), respectively. In static thermal tolerance assays, we found the relationship between survival and exposure time at a number of stressful high and low temperatures. Using logistic modelling, we found, at each exposure temperature, the time until 50% mortality had been reached (Lt50). The exponential functions of TDT curves were found by linear regression of log10 Lt50 values against exposure temperature. Results showed that cold acclimation significantly increased cold tolerance and increased the temperature dependence of cold injury accumulation rate (increased the slope by 4 orders of magnitude) in F. candida. Hence, cold acclimation changed the status of this species from chill-susceptible to moderately chill-tolerant. The cellular injury accumulation at sub-zero temperatures was not related to freezing of body water in this study. Congruently, we found a significant negative effect of cold acclimation on heat tolerance and that cold acclimation decreased the thermal sensitivity of the heat injury accumulation rate. Different slopes of the TDT curves between acclimation groups indicated that acclimation shifted the proportional importance of cellular injury mechanisms or the nature of injury mechanisms. Finally, we compare and combine the TDT curves at extreme high and low temperatures with previously published results on longevity at benign temperatures (from 0 to 30 °C) and describe the full thermal niche of F. candida.

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来源期刊
Current Research in Insect Science
Current Research in Insect Science Agricultural and Biological Sciences-Animal Science and Zoology
CiteScore
3.20
自引率
0.00%
发文量
22
审稿时长
36 days
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