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天气变化时花的温度变化

Variations of floral temperature in changing weather conditions.

作者信息

Harrap Michael J M, de Vere Natasha, Hempel de Ibarra Natalie, Whitney Heather M, Rands Sean A

机构信息

School of Biological Sciences University of Bristol Bristol UK.

Centre for Research in Animal Behaviour, School of Psychology University of Exeter Exeter UK.

出版信息

Ecol Evol. 2024 Jun 30;14(7):e11651. doi: 10.1002/ece3.11651. eCollection 2024 Jul.

Abstract

Floral temperature is a flower characteristic that has the potential to impact the fitness of flowering plants and their pollinators. Likewise, the presence of floral temperature patterns, areas of contrasting temperature across the flower, can have similar impacts on the fitness of both mutualists. It is currently poorly understood how floral temperature changes under the influence of different weather conditions, and how floral traits may moderate these changes. The way that floral temperature changes with weather conditions will impact how stable floral temperatures are over time and their utility to plants and pollinators. The stability of floral temperature cues is likely to facilitate effective plant-pollinator interactions and play a role in the plant's reproductive success. We use thermal imaging to monitor how floral temperatures and temperature patterns of four plant species ( 'snow fire' and 'snow white', and ) change with several weather variables (illumination, temperature; windspeed; cloud cover; humidity and pressure) during times that pollinators are active. All weather variables influenced floral temperature in one or more species. The directionality of these relationships was similar across species. In all species, light conditions (illumination) had the greatest influence on floral temperatures overall. Floral temperature and the extent to which flowers showed contrasting temperature patterns were influenced predominantly by light conditions. However, several weather variables had additional, lesser, influences. Furthermore, differences in floral traits, pigmentation and structure, likely resulted in differences in temperature responses to given conditions between species and different parts of the same flower. However, floral temperatures and contrasting temperature patterns that are sufficiently elevated for detection by pollinators were maintained across most conditions if flowers received moderate illumination. This suggests the presence of elevated floral temperature and contrasting temperature patterns are fairly constant and may have potential to influence plant-pollinator interactions across weather conditions.

摘要

花部温度是一种花卉特征,有可能影响开花植物及其传粉者的适合度。同样,花部温度模式的存在,即花朵上温度不同的区域,也会对这两种互利共生者的适合度产生类似影响。目前人们对在不同天气条件影响下花部温度如何变化,以及花部特征如何调节这些变化了解甚少。花部温度随天气条件变化的方式将影响花部温度随时间的稳定性及其对植物和传粉者的效用。花部温度信号的稳定性可能有助于植物与传粉者之间的有效互动,并在植物的繁殖成功中发挥作用。我们使用热成像技术来监测四种植物物种(“雪火”和“雪白”,以及 )的花部温度和温度模式在传粉者活跃期间如何随几个天气变量(光照、温度、风速、云量、湿度和气压)变化。所有天气变量都对一种或多种植物的花部温度产生了影响。这些关系的方向性在不同物种间相似。在所有物种中,光照条件总体上对花部温度影响最大。花部温度以及花朵呈现温度对比模式的程度主要受光照条件影响。然而,几个其他天气变量也有较小的额外影响。此外,花部特征、色素沉着和结构的差异,可能导致不同物种以及同一花朵不同部位对给定条件的温度响应存在差异。然而,如果花朵受到适度光照,在大多数条件下,足以被传粉者检测到的升高的花部温度和对比温度模式会得以维持。这表明升高的花部温度和对比温度模式的存在相当恒定,并且可能有潜力在不同天气条件下影响植物与传粉者之间的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0bff/11214831/59bed985c15a/ECE3-14-e11651-g007.jpg

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