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Unraveling the Biochemical and Molecular Networks Involved in Maize Cell Habituation to the Cellulose Biosynthesis Inhibitorn Dichlobenil

机译:分解涉及玉米细胞习性的生化和分子网络到纤维素生物合成抑制剂Dichlobenil

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摘要

The biochemical and molecular processes involved in the habituation of maize cells to growth in the presence of the cellulose biosynthesis inhibitor dichlobenil (DCB) were investigated. DCB affects the synthesis of cellulose both in active and stationary growth phases and alters the expression of several CesA genes. Of these, ZmCesA5 and ZmCesA7 seem to play a major role in habituating cells to growth in the presence of DCB. As a consequence of the reduction in cellulose, the expression of several genes involved in the synthesis of hydroxycinnamates is increased, resulting in cell walls with higher levels of ferulic and p-coumaric acids. A proteomic analysis revealed that habituation to DCB is linked to modifications in several metabolic pathways. Finally, habituated cells present a reduction in glutathione S-transferase detoxifying activity and antioxidant activities. Plant cell adaptation to the disturbance of such a crucial process as cellulose biosynthesis requires changes in several metabolic networks, in order to modify cell wall architecture and metabolism, and survive in the presence of the inhibitor. Some of these modifications are described in this paper.
机译:研究了在纤维素生物合成抑制剂二氯苯腈(DCB)存在下玉米细胞适应生长的生化和分子过程。 DCB在活性和静止生长期都影响纤维素的合成,并改变了几种CesA基因的表达。其中,ZmCesA5和ZmCesA7似乎在使细胞适应DCB的生长中起主要作用。由于纤维素减少,参与羟基肉桂酸酯合成的几种基因的表达增加,导致细胞壁具有较高水平的阿魏酸和对香豆酸。蛋白质组学分析表明,习惯于DCB与几种代谢途径的修饰有关。最后,习惯的细胞降低了谷胱甘肽S-转移酶的解毒活性和抗氧化活性。植物细胞适应纤维素生物合成等关键过程的干扰,需要改变几个代谢网络,以改变细胞壁结构和代谢,并在存在抑制剂的情况下生存。本文中描述了其中的一些修改。

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  • 来源
    《Molecular Plant》 |2010年第5期|p.842-853|共12页
  • 作者

    David Caparrós-Ruiz;

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    To whom correspondence should be addressed. E-mail;

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