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百香果藤(西番莲科西番莲属)对臭氧具有耐受性。

The passion fruit liana (Passiflora edulis Sims, Passifloraceae) is tolerant to ozone.

机构信息

Instituto de Botânica, Núcleo de Pesquisa em Ecologia, Miguel Stéfano Ave. 3687, 04045-972 SP, Brazil.

Instituto de Botânica, Núcleo de Pesquisa em Ecologia, Miguel Stéfano Ave. 3687, 04045-972 SP, Brazil.

出版信息

Sci Total Environ. 2019 Mar 15;656:1091-1101. doi: 10.1016/j.scitotenv.2018.11.425. Epub 2018 Nov 30.

Abstract

Passiflora edulis Sims is a liana species of high economic interest and is an interesting model plant for understanding ozone action on disturbed vegetation. In this work we hypothesized that P. edulis has adaptive responses to oxidative stress that enable it to tolerate ozone damage based on its capacity to grow under a diversity of environmental conditions and to dominate disturbed areas. We exposed seedlings to three levels of ozone in a Free-Air Controlled Exposure (FACE) system (22, 41 and 58 ppb h AOT40 and 13.52, 17.24 and 20.62 mmol m POD0, over 97 days) for identifying its tolerance mechanisms. Anatomical (leaf blade structure and fluorescence emission of chloroplast metabolites), physiological (leaf gas exchange, growth rate and biomass production) and biochemical (pigments, total sugars, starch, enzymatic and non-enzymatic antioxidant metabolites, reactive oxygen species and lipid peroxidation derivatives) responses were assessed. Ozone caused decreased total number of leaves, hyperplasia and hypertrophy of the mesophyll cells, and accelerated leaf senescence. However, O did not affect carbohydrates content, net photosynthetic rate, or total biomass production, indicating that the carboxylation efficiency and associated physiological processes were not affected. In addition, P. edulis showed higher leaf contents of ascorbic acid, glutathione (as well high ratio between their reduced and total forms), carotenoids, and flavonoids located in the chloroplast outer envelope membrane. Our results indicate that P. edulis is an O-tolerant species due to morphological acclimation responses and an effective antioxidant defense system represented by non-enzymatic antioxidants, which maintained the cellular redox balance under ozone.

摘要

西番莲(Passiflora edulis Sims)是一种具有高经济价值的藤本植物,是研究臭氧对受干扰植被影响的理想模式植物。在这项工作中,我们假设西番莲具有适应氧化应激的能力,使其能够耐受臭氧损伤,这基于其在各种环境条件下生长的能力以及在受干扰地区占据主导地位的能力。我们通过使用自由空气浓度控制暴露(Free-Air Controlled Exposure,FACE)系统将幼苗暴露在三个臭氧水平下(22、41 和 58 ppb h AOT40 和 13.52、17.24 和 20.62 mmol m POD0,持续 97 天),以确定其耐受机制。评估了解剖学(叶片结构和叶绿体代谢物的荧光发射)、生理学(叶片气体交换、生长速率和生物量生产)和生物化学(色素、总糖、淀粉、酶和非酶抗氧化代谢物、活性氧和脂质过氧化衍生物)响应。臭氧导致叶片总数减少、叶肉细胞增生和肥大以及叶片衰老加速。然而,臭氧并未影响碳水化合物含量、净光合速率或总生物量生产,表明羧化效率和相关生理过程未受影响。此外,西番莲叶片中的抗坏血酸、谷胱甘肽(及其还原和总形式的高比例)、类胡萝卜素和类黄酮含量较高,这些物质位于叶绿体外膜。我们的结果表明,西番莲是一种对臭氧耐受的物种,这归因于形态适应响应和以非酶抗氧化剂为代表的有效抗氧化防御系统,该系统在臭氧下维持了细胞的氧化还原平衡。

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