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Phenol-Oxidizing Peroxidases Contribute to the Protection of Plants from Ultraviolet Radiation Stress

机译:酚氧化过氧化物酶有助于保护植物免受紫外线辐射胁迫

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摘要

We have studied the mechanism of UV protection in two duckweed species (Lemnaceae) by exploiting the UV sensitivity of photosystem II as an in situ sensor for radiation stress. A UV-tolerant Spirodela punctata G.F.W. Meyer ecotype had significantly higher indole-3-acetic acid (IAA) levels than a UV-sensitive ecotype. Parallel work on Lemna gibba mutants suggested that UV tolerance is linked to IAA degradation rather than to levels of free or conjugated IAA. This linkage is consistent with a role for class III phenolic peroxidases, which have been implicated both in the degradation of IAA and the cross-linking of various UV-absorbing phenolics. Biochemical analysis revealed increased activity of a specific peroxidase isozyme in both UV-tolerant duckweed lines. The hypothesis that peroxidases play a role in UV protection was tested in a direct manner using genetically modified tobacco (Nicotiana sylvestris). It was found that increased activity of the anionic peroxidase correlated with increased tolerance to UV radiation as well as decreased levels of free auxin. We conclude that phenol-oxidizing peroxidases concurrently contribute to UV protection as well as the control of leaf and plant architecture.
机译:通过利用光系统II的紫外线敏感性作为辐射应力的原位传感器,我们研究了两种浮萍(Lemnaceae)的紫外线防护机理。耐紫外线Spirodela punctata G.F.W.迈耶(Meyer)生态型比对紫外线敏感的生态型具有更高的吲哚-3-乙酸(IAA)水平。对Lemna gibba突变体的平行研究表明,紫外线耐受性与IAA降解有关,而不是与游离或结合的IAA含量有关。这种键合与III类酚类过氧化物酶的作用一致,后者与IAA的降解和各种吸收紫外线的酚类的交联有关。生化分析表明,两种耐紫外线的浮萍品系中特定的过氧化物酶同工酶的活性均增加。使用转基因烟草(Nicotiana sylvestris)以直接的方式测试了过氧化物酶在紫外线防护中起作用的假设。发现阴离子过氧化物酶的活性增加与对UV辐射的耐受性增加以及游离生长素的水平降低有关。我们得出的结论是,酚氧化过氧化物酶同时有助于紫外线防护以及对叶片和植物结构的控制。

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