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致瘿螨刺激阔叶椴树叶的新陈代谢以实现氧化保护。

Gall-inducing Eriophyes tiliae stimulates the metabolism of Tilia platyphyllos leaves towards oxidative protection.

作者信息

Guedes Lubia M, Sanhueza Carolina, Torres Solange, Figueroa Camilo, Gavilán Elvis, Pérez Claudia I, Aguilera Narciso

机构信息

Universidad de Concepción, Facultad de Ciencias Forestales, Departamento de Silvicultura, Laboratorio de Semioquímica Aplicada, Casilla 160-C, CP 4030000, Concepción, Chile.

Universidad de Concepción, Facultad de Ciencias Naturales y Oceanográficas, Departamento de Botánica, Laboratorio de Fisiología Vegetal, Casilla 160- C, CP 4030000, Concepción, Chile.

出版信息

Plant Physiol Biochem. 2023 Feb;195:25-36. doi: 10.1016/j.plaphy.2022.12.014. Epub 2022 Dec 22.

Abstract

Red galls have high levels of anthocyanins which perform different physiological functions, such as antioxidants and protection against UVB radiation. High levels of anthocyanins and other polyphenols have been associated with low photosynthetic pigment content. In environments with high levels of UVB radiation, it would thus be expected that red galls would have high anthocyanin and polyphenol levels and low photosynthetic pigment contents, enabling the gall with high antioxidant capacity compared to its host organ. The red galls induced by Eriophyes tiliae, and their host environment of Tilia platyphyllos leaves in the Mediterranean climate of Chile, were investigated in relation to their anatomy, histochemistry, pigment, sugar, protein, and polyphenol contents, and antioxidant capacity. The anthocyanin, sugars, and polyphenol contents and the antioxidant capacity were increased in galls. Photosynthetic pigment and protein contents were higher in non-galled leaves. The high levels of anthocyanin and total polyphenols increase the galls' antioxidant capacity in the high UV radiation environment of a Mediterranean climate. The establishment of E. tiliae induced redifferentiation of nutritive tissue, rich in sugars, proteins, and lipids, and an inner epidermis with trichomes and long emergences. E. tiliae galls' structural and metabolic features are probably enhanced towards mite nutrition and protection. The current results shed light on the role of anthocyanin in the antioxidant protection of plant galls in environments with high UV irradiance.

摘要

红色虫瘿含有高水平的花青素,这些花青素具有不同的生理功能,如抗氧化剂和抵御紫外线B辐射。高水平的花青素和其他多酚类物质与低光合色素含量有关。因此,在紫外线B辐射水平较高的环境中,可以预期红色虫瘿会有较高的花青素和多酚水平以及较低的光合色素含量,从而使其与宿主器官相比具有较高的抗氧化能力。研究了由蒂氏瘿螨诱导形成的红色虫瘿及其在智利地中海气候下的宿主——阔叶椴树叶的解剖结构、组织化学、色素、糖分、蛋白质和多酚含量以及抗氧化能力。虫瘿中的花青素、糖分和多酚含量以及抗氧化能力均有所增加。未形成虫瘿的叶片中光合色素和蛋白质含量较高。在地中海气候的高紫外线辐射环境中,高水平的花青素和总多酚增加了虫瘿的抗氧化能力。蒂氏瘿螨的寄生诱导了富含糖分、蛋白质和脂质的营养组织以及带有毛状体和长突起的内表皮的重新分化。蒂氏瘿螨虫瘿的结构和代谢特征可能是为了增强对螨的营养供应和保护。目前的研究结果揭示了花青素在高紫外线辐照环境下对植物虫瘿的抗氧化保护作用。

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