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黄瓜对顶端芽温度变化的表型可塑性:叶片增多——叶片变小,反之亦然。

Phenotypic plasticity to altered apical bud temperature in Cucumis sativus: more leaves-smaller leaves and vice versa.

作者信息

Savvides Andreas, van Ieperen Wim, Dieleman Janneke A, Marcelis Leo F M

机构信息

Horticulture and Product Physiology, Wageningen University, PO Box 16, 6700AA, Wageningen, The Netherlands.

Wageningen UR Greenhouse Horticulture, PO Box 644, 6700AP, Wageningen, The Netherlands.

出版信息

Plant Cell Environ. 2017 Jan;40(1):69-79. doi: 10.1111/pce.12835. Epub 2016 Oct 7.

Abstract

Many studies investigated temperature effects on leaf initiation and expansion by relating these processes to air temperature or the temperature of a specific organ (e.g. leaf temperature). In reality plant temperature is hardly ever equal to air temperature or spatially uniform. Apical bud temperature (T ), for example, may greatly differ from the temperature of the rest of the plant (T ) dependent on the environment. Recent research in Cucumis sativus showed that T influences leaf initiation independent of T . These findings trigger the question if such spatial temperature differences also influence leaf expansion and plant phenotype. In a 28 day study, we maintained temperature differences between T and T ranging from -7 to +8 °C using a custom-made bud temperature control system. Leaf expansion did not only depend on leaf temperature but also on the difference between bud and leaf temperature. Differences between T and T considerably influenced vertical leaf area distribution over the shoot: increasing T beyond T resulted in more and smaller leaves, while decreasing T below T resulted in less and larger leaves. The trade-off between leaf number and leaf area resulted in phenotypic alterations that cannot be predicted, for example, by crop models, when assuming plant temperature uniformity.

摘要

许多研究通过将叶片起始和扩展过程与气温或特定器官的温度(如叶片温度)联系起来,研究了温度对它们的影响。实际上,植物温度几乎从未与气温相等或在空间上保持一致。例如,顶芽温度(Tₐ)可能因环境而异,与植物其他部分的温度(Tₚ)有很大差异。最近对黄瓜的研究表明,Tₐ独立于Tₚ影响叶片起始。这些发现引发了一个问题,即这种空间温度差异是否也会影响叶片扩展和植物表型。在一项为期28天的研究中,我们使用定制的芽温度控制系统,使Tₐ和Tₚ之间的温度差保持在-7至+8°C之间。叶片扩展不仅取决于叶片温度,还取决于芽温和叶片温度之间的差异。Tₐ和Tₚ之间的差异极大地影响了茎上叶片垂直面积的分布:Tₐ高于Tₚ会导致叶片数量增多且叶片变小,而Tₐ低于Tₚ则会导致叶片数量减少且叶片变大。叶片数量和叶面积之间的权衡导致了表型改变,而当假设植物温度均匀时,例如作物模型无法预测这些改变。

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