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代谢组学和转录组学揭示了水稻(Oryza sativa)籽粒在 2,2',4,4'-四溴二苯醚胁迫下的防御机制。

Metabolomics and transcriptomics reveal defense mechanism of rice (Oryza sativa) grains under stress of 2,2',4,4'-tetrabromodiphenyl ether.

机构信息

Department of Environmental Science, Zhejiang University, Hangzhou, Zhejiang 310058, China; Zhejiang Provincial Key Laboratory of Organic Pollution Process and Control, Hangzhou, Zhejiang 310058, China.

Department of Laboratory Medicine and Pathology, University of Alberta, Edmonton, Alberta T6G 2G3, Canada.

出版信息

Environ Int. 2019 Dec;133(Pt A):105154. doi: 10.1016/j.envint.2019.105154. Epub 2019 Sep 12.

Abstract

2,2',4,4'-Tetrabromodiphenyl ether (BDE-47), a predominant polybrominated diphenyl ether (PBDE), has received extensive attention for its potential environmental impact. An integrated study of metabolomics and transcriptomics was conducted on two rice (Oryza sativa) cultivars, Lianjing-7 (LJ-7) and Yongyou-9 (YY-9), which have been identified as tolerant and sensitive cultivars to BDE-47, respectively. The objective was to investigate the molecular mechanisms of their different ability to tolerate BDE-47. Both rice plants were cultivated to maturity in soils containing three concentrations of BDE-47 (10, 20, and 50 mg/kg). Metabolomic analyses of rice grains identified 65 metabolites in LJ-7 and 45 metabolites in YY-9, including amino acids, saccharides, organic acids, fatty acids, and secondary metabolites. In the tolerant cultivar LJ-7 exposed to 50 mg/kg BDE-47, concentrations of most of the metabolites increased significantly, with α-ketoglutaric acid increased by 20-fold and stigmastanol increased by 12-fold. In the sensitive cultivar YY-9, the concentrations of most metabolites increased after the plant was exposed to 1 and 10 mg/kg BDE-47 but decreased after the plant was exposed to 50 mg/kg BDE-47. Transcriptomic data demonstrated that regulation of gene expressions was affected most in LJ-7 exposed to 50 mg/kg BDE-47 (966 genes up-regulated and 620 genes down-regulated) and in YY-9 exposed to 10 mg/kg BDE-47 (85 genes up-regulated and 291 genes down-regulated), in good accordance with the observed metabolic alternation in the two cultivars. Analyses of metabolic pathways and KEGG enrichment revealed that many biological processes, including energy consumption and biosynthesis, were perturbed in the two rice cultivars by BDE-47. A majority of metabolites and genes involved in dominating pathways of energy consumption (e.g., tricarboxylic acid cycle) and the biosynthesis (e.g., metabolism of saccharides and amino acids) were enhanced in LJ-7 by BDE-47. In contrast, energy consumption was increased while biosynthetic processes were inhibited in YY-9 by BDE-47, which could lead to the sensitivity of YY-9 to BDE-47. The combined results suggest that the different defensive abilities of these two rice cultivars in response to BDE-47 could be attributed to their differences in energy-consumption strategy and biosynthesis of nutritional components in grains. This study provides a useful reference for rice cultivation in PBDE-polluted areas.

摘要

2,2',4,4'-四溴二苯醚(BDE-47)是一种主要的多溴二苯醚(PBDE),因其潜在的环境影响而受到广泛关注。本研究对两个水稻品种(连粳 7 号[LJ-7]和甬优 9 号[YY-9])进行了代谢组学和转录组学的综合研究,这两个品种分别被鉴定为对 BDE-47 具有耐受性和敏感性。目的是探讨它们对 BDE-47 不同耐受能力的分子机制。在含有 3 种 BDE-47 浓度(10、20 和 50mg/kg)的土壤中,分别种植这两种水稻,直至成熟。对 LJ-7 大米籽粒的代谢组学分析鉴定出 65 种代谢物,YY-9 中有 45 种代谢物,包括氨基酸、糖、有机酸、脂肪酸和次生代谢物。在暴露于 50mg/kg BDE-47 的耐 BDE-47 品种 LJ-7 中,大多数代谢物的浓度显著增加,其中α-酮戊二酸增加了 20 倍,豆甾醇增加了 12 倍。在敏感品种 YY-9 中,在植物暴露于 1 和 10mg/kg BDE-47 后,大多数代谢物的浓度增加,但在植物暴露于 50mg/kg BDE-47 后,浓度降低。转录组数据表明,在暴露于 50mg/kg BDE-47 的 LJ-7 中(966 个上调基因和 620 个下调基因)和暴露于 10mg/kg BDE-47 的 YY-9 中(85 个上调基因和 291 个下调基因),基因表达调控受到的影响最大,这与两个品种观察到的代谢变化一致。代谢途径和 KEGG 富集分析表明,BDE-47 扰乱了两个水稻品种的许多生物过程,包括能量消耗和生物合成。在 LJ-7 中,参与主导能量消耗(如三羧酸循环)和生物合成(如糖和氨基酸代谢)途径的大多数代谢物和基因都被 BDE-47 增强。相比之下,在 BDE-47 作用下,YY-9 中的能量消耗增加,而生物合成过程受到抑制,这可能导致 YY-9 对 BDE-47 敏感。综合结果表明,这两个水稻品种对 BDE-47 的不同防御能力可能归因于它们在谷物中能量消耗策略和营养成分生物合成方面的差异。本研究为在 PBDE 污染地区种植水稻提供了有益的参考。

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