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Involvement of extracellular Cu/Zn superoxide dismutase in cotton fiber primary and secondary cell wall biosynthesis

机译:细胞外Cu / Zn超氧化物歧化酶参与棉纤维原代和次生细胞壁的生物合成

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摘要

Extracellular Cu/Zn superoxide dismutases (CSDs) that catalyze the conversion of superoxide to hydrogen peroxide have been suggested to be involved in lignification of secondary walls in spinach, pine and aspen. In cotton fibers, hydrogen peroxide was proposed to be involved in the induction of secondary cell wall biosynthesis. Recently, we identified extracellular CSDs from developing cotton fibers using both immunological and epitope tagging techniques. Since cotton fibers are not lignified, we suggested that extracellular CSDs may be involved in plant cell wall growth and development processes other than lignification. In this addendum, we have further characterized the extracellular CSD in cotton fiber. Immunoblots, enzyme activity assays, and transcript levels show that an extracellular CSD is present in elongating primary walls as well as thickening secondary walls of cotton fibers. Our working model proposes that extracellular hydrogen peroxide levels, regulated by redox status-related enzymes including extracellular CSDs and peroxidases, may affect the processes of wall loosening and wall tightening.
机译:有人提出,胞外铜/锌超氧化物歧化酶(CSD)催化超氧化物向过氧化氢的转化涉及菠菜,松木和白杨木次生壁的木质化。在棉纤维中,过氧化氢被提议参与诱导二次细胞壁的生物合成。最近,我们使用免疫学和表位标记技术从发育中的棉纤维中鉴定了细胞外CSD。由于棉纤维未木质化,因此我们建议细胞外CSD可能参与木质化以外的植物细胞壁的生长和发育过程。在本附录中,我们进一步表征了棉纤维中的细胞外CSD。免疫印迹,酶活性测定和转录水平表明,棉纤维的初级壁和次级壁增厚时都存在细胞外CSD。我们的工作模型提出,受氧化还原状态相关的酶(包括细胞外CSD和过氧化物酶)调节的细胞外过氧化氢水平可能会影响壁松动和壁紧的过程。

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