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离体叶片对不同作物功能型的光合参数的影响有限且具有种特异性。

Excised leaves show limited and species-specific effects on photosynthetic parameters across crop functional types.

机构信息

Department of Plant Sciences, University of Cambridge, Cambridge, Cambridgeshire, CB2 3EA, UK.

School of Life Sciences, University of Essex, Wivenhoe Park, Colchester, Essex CO4 3SQ, UK.

出版信息

J Exp Bot. 2023 Nov 21;74(21):6662-6676. doi: 10.1093/jxb/erad319.

Abstract

Photosynthesis is increasingly becoming a recognized target for crop improvement. Phenotyping photosynthesis-related traits on field-grown material is a key bottleneck to progress here due to logistical barriers and short measurement days. Many studies attempt to overcome these challenges by phenotyping excised leaf material in the laboratory. To date there are no demonstrated examples of the representative nature of photosynthesis measurements performed on excised leaves relative to attached leaves in crops. Here, we tested whether standardized leaf excision on the day prior to phenotyping affected a range of common photosynthesis-related traits across crop functional types using tomato (C3 dicot), barley (C3 monocot), and maize (C4 monocot). Potentially constraining aspects of leaf physiology that could be predicted to impair photosynthesis in excised leaves, namely leaf water potential and abscisic acid accumulation, were not different between attached and excised leaves. We also observed non-significant differences in spectral reflectance and chlorophyll fluorescence traits between the treatments across the three species. However, we did observe some significant differences between traits associated with gas exchange and photosynthetic capacity across all three species. This study represents a useful reference for those who perform measurements of this nature and the differences reported should be considered in associated experimental design and statistical analyses.

摘要

光合作用越来越成为作物改良的一个公认目标。由于物流障碍和测量时间短,对田间生长材料的光合作用相关性状进行表型分析是取得进展的一个关键瓶颈。许多研究试图通过在实验室中对离体叶片材料进行表型分析来克服这些挑战。迄今为止,还没有证明在作物中,与附着叶片相比,离体叶片光合作用测量的代表性。在这里,我们使用番茄(C3 双子叶植物)、大麦(C3 单子叶植物)和玉米(C4 单子叶植物)测试了在表型分析前一天标准化叶片切取是否会影响一系列常见的与光合作用相关的性状。有可能限制离体叶片光合作用的叶片生理学方面,即叶片水势和脱落酸积累,在附着叶片和离体叶片之间没有差异。我们还观察到在三个物种中,处理之间的光谱反射率和叶绿素荧光特性没有显著差异。然而,我们确实观察到所有三个物种的气体交换和光合能力相关性状之间存在一些显著差异。本研究为那些进行这种性质的测量的人提供了一个有用的参考,所报告的差异应在相关的实验设计和统计分析中加以考虑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f66a/10662226/04d0d8a3dac4/erad319_fig1.jpg

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