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白菜叶片铅积累的机制:气孔和表皮毛调节大气 PM 中铅的叶部吸收。

Mechanism of Pb accumulation in Chinese cabbage leaves: Stomata and trichomes regulate foliar uptake of Pb in atmospheric PM.

机构信息

State Key Laboratory of North China Crop Improvement and Regulation, College of Resources and Environmental Sciences, Hebei Agricultural University, Hebei, Baoding, 071000, China; Key Laboratory for Farmland Eco-environment of Hebei Province, Hebei, Baoding, 071000, China.

Key Laboratory of Vegetable Germplasm Innovation and Utilization of Hebei, Collaborative Innovation Centre of Vegetable Industry in Hebei, College of Horticulture, Hebei, Baoding, 071000, China.

出版信息

Environ Pollut. 2022 Jan 15;293:118585. doi: 10.1016/j.envpol.2021.118585. Epub 2021 Nov 27.

Abstract

Chinese cabbage (Brassica rapa ssp. pekinensis) is one of the most popular and frequently consumed leafy vegetables. It was found that atmospheric PM-Pb contributes to Pb accumulation in the edible leaves of Chinese cabbage via stomata in North China during haze seasons with high concentrations of fine particulate matter in autumn and winter. However, it is unclear whether both stomata and trichomes co-regulate foliar transfer of PM-Pb from atmospheric deposition to the leaf of Chinese cabbage genotypes with trichomes. Field and hydroponic experiments were conducted to investigate the effects of foliar uptake of PM-Pb on Pb accumulation in leaves using two genotypes of Chinese cabbage, one without trichomes and one with trichomes. It was verified that open stoma is a prominent pathway of foliar PM-Pb transfer in the short-term exposure for 6 h, contributing 74.5% of Pb accumulation in leaves, whereas Pb concentrations in the leaves of with-trichome genotype in the rosette stage were 6.52- and 1.04-fold higher than that of without-trichome genotype in greenhouse and open field, respectively, which suggests that stomata and trichomes co-regulate foliar Pb uptake of from atmospheric PM. Moreover, subcellular Pb in the leaves was distributed in the following order of cytoplasm (53.8%) > cell wall (38.5%)> organelle (7.8%), as confirmed through high-resolution secondary ion mass spectrometry (NanoSIMS). The Leadmium™ Green AM dye manifested that Pb in PM entered cellular space of trichomes and accumulated in the basal compartment, enhancing foliar Pb uptake in the edible leaves of cabbage. The results of these experiments are evidence that both stomata and trichomes are important pathways in the regulation of foliar Pb uptake and translocation in Chinese cabbage.

摘要

大白菜(Brassica rapa ssp. pekinensis)是最受欢迎和经常食用的叶菜之一。研究发现,在中国北方的秋冬季节,大气细颗粒物中高浓度的 PM-Pb 通过气孔进入白菜可食用叶片,导致 Pb 在白菜叶片中的积累。然而,尚不清楚气孔和表皮毛是否共同调节具有表皮毛的白菜基因型从大气沉降到叶片中的 PM-Pb 的叶转移。通过田间和水培实验,使用两种无表皮毛和有表皮毛的白菜基因型,研究了叶片对 PM-Pb 的吸收对叶片中 Pb 积累的影响。结果验证了在 6 小时的短期暴露中,开放的气孔是叶片中 PM-Pb 转移的主要途径,占叶片 Pb 积累的 74.5%,而在温室和开放田间条件下,具有表皮毛基因型的白菜叶片中的 Pb 浓度分别比无表皮毛基因型高 6.52 倍和 1.04 倍,这表明气孔和表皮毛共同调节大气 PM 中 Pb 的叶片吸收。此外,通过高分辨率二次离子质谱(NanoSIMS)证实,叶片中的亚细胞 Pb 分布如下:细胞质(53.8%)>细胞壁(38.5%)>细胞器(7.8%)。Leadmium™ Green AM 染料表明 PM 中的 Pb 进入表皮毛的细胞空间,并在基部隔室积累,从而增强了白菜可食用叶片中 Pb 的吸收。这些实验结果表明,气孔和表皮毛都是白菜叶片中 Pb 吸收和转运调节的重要途径。

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