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即使在温和的环境中,茎尖温度也会与空气温度有很大的偏离:这种偏离的幅度是特定于物种的吗?

Meristem temperature substantially deviates from air temperature even in moderate environments: is the magnitude of this deviation species-specific?

机构信息

Horticultural Supply Chains, Wageningen University, 6700 AP, Wageningen, The Netherlands; Greenhouse Horticulture, Wageningen UR, 6700 AP, Wageningen, The Netherlands.

出版信息

Plant Cell Environ. 2013 Nov;36(11):1950-60. doi: 10.1111/pce.12101. Epub 2013 Apr 15.

Abstract

Meristem temperature (Tmeristem ) drives plant development but is hardly ever quantified. Instead, air temperature (Tair ) is usually used as its approximation. Meristems are enclosed within apical buds. Bud structure and function may differ across species. Therefore, Tmeristem may deviate from Tair in a species-specific way. Environmental variables (air temperature, vapour pressure deficit, radiation, and wind speed) were systematically varied to quantify the response of Tmeristem . This response was related to observations of bud structure and transpiration. Tomato and cucumber plants were used as model plants as they are morphologically distinct and usually growing in similar environments. Tmeristem substantially deviated from Tair in a species-specific manner under moderate environments. This deviation ranged between -2.6 and 3.8 °C in tomato and between -4.1 and 3.0 °C in cucumber. The lower Tmeristem observed in cucumber was linked with the higher transpiration of the bud foliage sheltering the meristem when compared with tomato plants. We here indicate that for properly linking growth and development of plants to temperature in future applications, for instance in climate change scenarios studies, Tmeristem should be used instead of Tair , as a species-specific trait highly reliant on various environmental factors.

摘要

茎尖温度(Tmeristem)驱动植物发育,但几乎从未被量化。相反,通常使用空气温度(Tair)作为其近似值。茎尖被包裹在顶芽内。芽的结构和功能在不同物种之间可能存在差异。因此,Tmeristem可能以特定于物种的方式偏离 Tair。环境变量(空气温度、蒸气压亏缺、辐射和风速)被系统地改变,以量化 Tmeristem 的响应。这种响应与芽结构和蒸腾作用的观察结果有关。番茄和黄瓜植物被用作模型植物,因为它们在形态上有明显的区别,并且通常在相似的环境中生长。在适度的环境下,Tmeristem 以特定于物种的方式严重偏离 Tair。这种偏差在番茄中范围在-2.6 和 3.8°C 之间,在黄瓜中范围在-4.1 和 3.0°C 之间。与番茄植物相比,黄瓜中较低的 Tmeristem 与芽叶的蒸腾作用较高有关,芽叶为茎尖提供了遮蔽。我们在这里指出,为了在未来的应用中,例如在气候变化情景研究中,将植物的生长和发育与温度正确联系起来,应该使用 Tmeristem 代替 Tair,因为它是一个高度依赖于各种环境因素的特定于物种的特征。

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