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昼夜温度变化对度日积累和昆虫生活史的影响。

The influence of diurnal temperature variation on degree-day accumulation and insect life history.

作者信息

Chen Shi, Fleischer Shelby J, Saunders Michael C, Thomas Matthew B

机构信息

Department of Population Health and Pathobiology, North Carolina State University, Raleigh, North Carolina, United States of America; National Institute for Mathematical and Biological Synthesis, Knoxville, Tennessee, United States of America.

Department of Entomology, Pennsylvania State University, University Park, Pennsylvania, United States of America.

出版信息

PLoS One. 2015 Mar 19;10(3):e0120772. doi: 10.1371/journal.pone.0120772. eCollection 2015.

Abstract

Ectotherms, such as insects, experience non-constant temperatures in nature. Daily mean temperatures can be derived from the daily maximum and minimum temperatures. However, the converse is not true and environments with the same mean temperature can exhibit very different diurnal temperate ranges. Here we apply a degree-day model for development of the grape berry moth (Paralobesia viteana, a significant vineyard pest in the northeastern USA) to investigate how different diurnal temperature range conditions can influence degree-day accumulation and, hence, insect life history. We first consider changes in diurnal temperature range independent of changes in mean temperatures. We then investigate grape berry moth life history under potential climate change conditions, increasing mean temperature via variable patterns of change to diurnal temperature range. We predict that diurnal temperature range change can substantially alter insect life history. Altering diurnal temperature range independent of the mean temperature can affect development rate and voltinism, with the magnitude of the effects dependent on whether changes occur to the daily minimum temperature (Tmin), daily maximum temperature (Tmax), or both. Allowing for an increase in mean temperature produces more marked effects on life history but, again, the patterns and magnitude depend on the nature of the change to diurnal temperature range together with the starting conditions in the local environment. The study highlights the importance of characterizing the influence of diurnal temperature range in addition to mean temperature alone.

摘要

变温动物,如昆虫,在自然环境中经历的温度并非恒定不变。日平均温度可由日最高温度和日最低温度推导得出。然而,反之则不成立,具有相同平均温度的环境可能呈现出非常不同的昼夜温度范围。在此,我们应用度日模型来研究葡萄浆果蛾(葡萄浆果小卷蛾,美国东北部葡萄园的一种重要害虫)的发育情况,以探究不同的昼夜温度范围条件如何影响度日积累,进而影响昆虫的生活史。我们首先考虑昼夜温度范围的变化,而不考虑平均温度的变化。然后,我们研究在潜在气候变化条件下葡萄浆果蛾的生活史,通过改变昼夜温度范围的不同模式来提高平均温度。我们预测,昼夜温度范围的变化会显著改变昆虫的生活史。在不考虑平均温度的情况下改变昼夜温度范围会影响发育速率和化性,其影响程度取决于每日最低温度(Tmin)、每日最高温度(Tmax)或两者是否发生变化。平均温度升高对生活史会产生更显著的影响,但同样,其模式和程度取决于昼夜温度范围变化的性质以及当地环境的初始条件。该研究强调了除了单独考虑平均温度外,描述昼夜温度范围影响的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5a8/4366191/175bd91c0aec/pone.0120772.g001.jpg

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