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在光照与遮荫之间:关于蓝光选择性遮荫对蔬菜幼苗影响的形态学、生化及代谢组学见解

Between Light and Shading: Morphological, Biochemical, and Metabolomics Insights Into the Influence of Blue Photoselective Shading on Vegetable Seedlings.

作者信息

Formisano Luigi, Miras-Moreno Begoña, Ciriello Michele, Zhang Leilei, De Pascale Stefania, Lucini Luigi, Rouphael Youssef

机构信息

Department of Agricultural Sciences, University of Naples Federico II, Portici, Italy.

Department for Sustainable Food Process, DiSTAS, Università Cattolica del Sacro Cuore, Piacenza, Italy.

出版信息

Front Plant Sci. 2022 May 25;13:890830. doi: 10.3389/fpls.2022.890830. eCollection 2022.

Abstract

High nursery densities reduce the seedling quality due to the competition for light. High light intensity, shading, and blue light depletion activate morphophysiological and metabolomic responses in plants, resulting in size modification to gain an advantage over neighboring plants. Our research aimed to unravel the effects of light intensity and quality on nursery seedlings at the morphological and biochemical levels. To this aim, the effect of black shading and blue photoselective shading nets were investigated in terms of morphometric, ionomic, and untargeted metabolomics signatures in L., L., L., and L. seedlings. Plant height, diameter, sturdiness index, leaf area, specific leaf area, shoot/root ratio, and mineral content (by ion chromatography-IC) were evaluated. In L and L., the blue net reduced the shoot/root and chlorophyll a/b ratios and increased stem diameter and total chlorophyll content. The black net increased plant height, stem diameter, and sturdiness index in L. and L. At the same time, unshading conditions reduced leaf area, specific leaf area, shoot/root ratio, and total chlorophyll content. The blue net improved the sturdiness index and quality of L. and L. Such impact on morphological parameters induced by the different shading conditions was corroborated by a significant modulation at the metabolomics level. Untargeted metabolomic phytochemical signatures of the selected plants, and the subsequent multivariate analysis coupled to pathway analysis, allowed highlighting a broad and diverse biochemical modulation. Metabolomics revealed that both primary and secondary metabolism were largely affected by the different shading conditions, regardless of the species considered. A common pattern arose to point at the activation of plant energy metabolism and lipid biosynthesis, together with a generalized down accumulation of several secondary metabolites, particularly phenylpropanoids. Our findings indicate an intriguing scientific interest in the effects of selective shading and its application to other species and different phenological stages.

摘要

高育苗密度会因光照竞争而降低幼苗质量。高光强、遮荫和蓝光耗尽会激活植物的形态生理和代谢组学反应,导致植株大小发生改变,从而在与邻近植株的竞争中获得优势。我们的研究旨在揭示光照强度和质量在形态和生化水平上对育苗期幼苗的影响。为此,我们研究了黑色遮荫网和蓝色光选择性遮荫网对番茄、茄子、辣椒和生菜幼苗的形态测量、离子组学和非靶向代谢组学特征的影响。评估了株高、茎粗、壮苗指数、叶面积、比叶面积、地上部/地下部比值以及矿物质含量(通过离子色谱法测定)。在番茄和茄子中,蓝色网降低了地上部/地下部比值和叶绿素a/b比值,增加了茎粗和总叶绿素含量。黑色网增加了辣椒和生菜的株高、茎粗和壮苗指数。同时,无遮荫条件下叶面积、比叶面积、地上部/地下部比值和总叶绿素含量降低。蓝色网提高了生菜和辣椒的壮苗指数和质量。不同遮荫条件对形态参数的这种影响在代谢组学水平上得到了显著调节的证实。所选植物的非靶向代谢组学植物化学特征,以及随后与通路分析相结合的多变量分析,突出了广泛而多样的生化调节。代谢组学表明,无论考虑何种物种,初级和次级代谢在很大程度上都受到不同遮荫条件的影响。出现了一个共同的模式,即植物能量代谢和脂质生物合成被激活,同时几种次级代谢产物,特别是苯丙烷类化合物普遍积累减少。我们的研究结果表明,选择性遮荫的影响及其在其他物种和不同物候阶段的应用具有引人入胜的科学意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0314/9174935/18ead664ca69/fpls-13-890830-g001.jpg

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