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首页> 外文期刊>The Science of the Total Environment >Boron alleviates cadmium toxicity in Brassica napus by promoting the chelation of cadmium onto the root cell wall components
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Boron alleviates cadmium toxicity in Brassica napus by promoting the chelation of cadmium onto the root cell wall components

机译:硼通过促进镉的螯合在根细胞壁组分上,减轻了芸苔类内部乳房中的镉毒性

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摘要

In Southern China, rice-oil rotations occur on soils with high levels of cadmium (Cd) and low levels of available boron (B). Boron can alleviate Cd toxicity. as it affects the plant cell wall structures and the components that block the entry of Cd into the cytoplasm; however, these mechanisms are not well understood. Fourier transform infrared spectroscopy (FTIR), fluorescent probe dye, electron microscope, ion abundance (inductively coupled plasma mass spectrometry), metabonomics and transcriptomics were used in the study, and we found that under Cd stress, B increased root pectin content by affecting the biosynthesis pathways and decreasing the activity of pectinase and the expression levels of related genes. The increased pectin content and pectin demethylation increased the chelation of Cd onto the cell walls and reduced the levels of Cd entering the organelles. Application of B to the roots decreased the amounts of cellulose and hemicellulose in the cell walls to normal levels and promoted the expression of genes from the expansin, xyloglucan endotransglucosylase, and α-xylosidase families. This contributed to cell wall integrity and root flexibility. Consequently, the accumulation of reactive oxygen species was inhibited and cell viability in the roots was increased, which reduced the destruction of root surface structures. These results have improved our understanding of how B participates in chelation of Cd onto cell walls and in maintaining cell wall integrity, thereby improving Cd toxicity resistance in rapeseed roots.
机译:在中国南方,稻油旋转发生在具有高水平镉(CD)和低水平的可用硼(B)的土壤上。硼可以缓解CD毒性。由于它影响植物细胞壁结构和阻断CD进入细胞质的组分;然而,这些机制并不顺利。在研究中使用傅里叶变换红外光谱(FTIR),荧光探测染料,电子显微镜,离子丰度(电感耦合等离子体质谱),代谢甘油学和转录组科,我们发现在Cd应激下,通过影响根果胶含量增加生物合成途径和降低果胶酶活性及相关基因的表达水平。增加的果胶含量和果胶脱甲基化增加了CD的螯合到细胞壁上并降低了进入细胞器的Cd水平。 B对根部的应用降低了细胞壁中的纤维素和半纤维素的量,以促进来自扩展素,木瓜葡聚糖内凝血糖基酶和α-木糖苷酶家族的基因的表达。这有助于细胞壁完整性和根系灵活性。因此,抑制反应性氧物质的积累,并增加了根部中的细胞活力,从而减少了根表面结构的破坏。这些结果提高了我们对B如何参与CD螯合到细胞壁和维持细胞壁完整性的理解,从而提高油菜根中的CD毒性抗性。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第1期|138833.1-138833.14|共14页
  • 作者单位

    Southern Regional Collaborative Innovation Center for Grain and Oil Crops in China College of Resources and Environmental Sciences Hunan Agricultural University Changsha China Hunan Provincial Key Laboratory of Farmland Pollution Control and Agricultural Resources Use Hunan Provincial Key Laboratory of Nutrition in Common University National Engineering Laboratory on Soil and Fertilizer Resources Efficient Utilization Changsha 410128 China;

    Southern Regional Collaborative Innovation Center for Grain and Oil Crops in China College of Resources and Environmental Sciences Hunan Agricultural University Changsha China Hunan Provincial Key Laboratory of Farmland Pollution Control and Agricultural Resources Use Hunan Provincial Key Laboratory of Nutrition in Common University National Engineering Laboratory on Soil and Fertilizer Resources Efficient Utilization Changsha 410128 China;

    National Center of Oilseed Crops Improvement Hunan Branch Changsha China;

    Southern Regional Collaborative Innovation Center for Grain and Oil Crops in China College of Resources and Environmental Sciences Hunan Agricultural University Changsha China Hunan Provincial Key Laboratory of Farmland Pollution Control and Agricultural Resources Use Hunan Provincial Key Laboratory of Nutrition in Common University National Engineering Laboratory on Soil and Fertilizer Resources Efficient Utilization Changsha 410128 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cadmium resistance; Cell wall; Subcellular distribution; Rapeseed roots; Southern China;

    机译:镉抗性;细胞壁;亚细胞分布;油菜根;南方南方;

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