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细胞壁性质的改变与铅胁迫诱导的水稻胚芽鞘生长抑制有关。

The Modification of Cell Wall Properties Is Involved in the Growth Inhibition of Rice Coleoptiles Induced by Lead Stress.

作者信息

Wakabayashi Kazuyuki, Soga Kouichi, Hoson Takayuki, Masuda Harue

机构信息

Department of Biology, Graduate School of Science, Osaka Metropolitan University, Sumiyoshi-ku, Osaka 558-8585, Japan.

Department of Biological Sciences, Graduate School of Science, Osaka City University, Sumiyoshi-ku, Osaka 558-8585, Japan.

出版信息

Life (Basel). 2023 Feb 8;13(2):471. doi: 10.3390/life13020471.

Abstract

Lead (Pb) is a widespread heavy metal pollutant that interferes with plant growth. In this study, we investigated the effects of Pb on the mechanical and chemical properties of cell walls and on the growth of coleoptiles of rice ( L.) seedlings grown in the air (on moistened filter paper) and underwater (submerged condition). Coleoptile growth of air-grown seedlings was reduced by 40% by the 3 mM Pb treatment, while that of water-grown ones was reduced by 50% by the 0.5 mM Pb. Although the effective concentration of Pb for growth inhibition of air-grown coleoptiles was much higher than that of water-grown ones, Pb treatment significantly decreased the mechanical extensibility of the cell wall in air- and water-grown coleoptiles, when it inhibited their growth. Among the chemical components of coleoptile cell walls, the amounts of cell wall polysaccharides per unit fresh weight and unit length of coleoptile, which represent the thickness of the cell wall, were significantly increased in response to the Pb treatment (3 mM and 0.5 mM Pb for air- and water-grown seedlings, respectively), while the levels of cell wall-bound diferulic acids (DFAs) and ferulic acids (FAs) slightly decreased. These results indicate that Pb treatment increased the thickness of the cell wall but not the phenolic acid-mediated cross-linking structures within the cell wall in air- and water-grown coleoptiles. The Pb-induced cell wall thickening probably causes the mechanical stiffening of the cell wall and thus decreases cell wall extensibility. Such modifications of cell wall properties may be associated with the inhibition of coleoptile growth. The results of this study provide a new finding that Pb-induced cell wall remodeling contributes to the regulation of plant growth under Pb stress conditions via the modification of the mechanical property of the cell wall.

摘要

铅(Pb)是一种广泛存在的重金属污染物,会干扰植物生长。在本研究中,我们调查了铅对细胞壁机械和化学性质以及对在空气中(在湿润滤纸上)和水下(淹没条件)生长的水稻(L.)幼苗胚芽鞘生长的影响。3 mM铅处理使空气中生长的幼苗胚芽鞘生长降低了40%,而0.5 mM铅使水中生长的幼苗胚芽鞘生长降低了50%。尽管抑制空气中生长的胚芽鞘生长的铅有效浓度远高于水中生长的胚芽鞘,但铅处理在抑制其生长时,显著降低了空气中和水中生长的胚芽鞘细胞壁的机械伸展性。在胚芽鞘细胞壁的化学成分中,单位鲜重和胚芽鞘单位长度的细胞壁多糖含量(代表细胞壁厚度)在铅处理(空气中生长的幼苗为3 mM铅,水中生长的幼苗为0.5 mM铅)后显著增加,而细胞壁结合的二阿魏酸(DFAs)和阿魏酸(FAs)水平略有下降。这些结果表明,铅处理增加了空气中和水中生长的胚芽鞘细胞壁的厚度,但没有增加细胞壁内酚酸介导的交联结构。铅诱导的细胞壁增厚可能导致细胞壁机械硬化,从而降低细胞壁伸展性。细胞壁性质的这种改变可能与胚芽鞘生长的抑制有关。本研究结果提供了一个新发现,即铅诱导的细胞壁重塑通过改变细胞壁的机械性质,在铅胁迫条件下有助于调节植物生长。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/07ed/9967465/4bf5bb25210c/life-13-00471-g001.jpg

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