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A novel light‐dependent selection marker system in plants

机译:植物中的一种新型光依赖性选择标记系统

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Summary Photosensitizers are common in nature and play diverse roles as defense compounds and pathogenicity determinants and as important molecules in many biological processes. Toxoflavin, a photosensitizer produced by Burkholderia glumae , has been implicated as an essential virulence factor causing bacterial rice grain rot. Toxoflavin produces superoxide and Hsub2/subOsub2/sub during redox cycles under oxygen and light, and these reactive oxygen species cause phytotoxic effects. To utilize toxoflavin as a selection agent in plant transformation, we identified a gene, tflA , which encodes a toxoflavin-degrading enzyme in the Paenibacillus polymyxa JH2 strain. TflA was estimated as 24.56 kDa in size based on the amino acid sequence and is similar to a ring-cleavage extradiol dioxygenase in the Exiguobacterium sp. 255-15; however, unlike other extradiol dioxygenases, Mnsup2+/supand dithiothreitol were required for toxoflavin degradation by TflA. Here, our results suggested toxoflavin is a photosensitizer and its degradation by TflA serves as a light-dependent selection marker system in diverse plant species. We examined the efficiencies of two different plant selection systems, toxoflavin/ tflA and hygromycin/hygromycin phosphotransferase ( hpt ) in both rice and Arabidopsis . The toxoflavin/ tflA selection was more remarkable than hygromycin/ hpt selection in the high-density screening of transgenic Arabidopsis seeds. Based on these results, we propose the toxoflavin/ tflA selection system, which is based on the degradation of the photosensitizer, provides a new robust nonantibiotic selection marker system for diverse plants.
机译:摘要光敏剂本质上是常见的,并将各种角色作为防御化合物和致病性决定簇以及许多生物过程中的重要分子。由Burkholderia Glumae产生的光敏剂,由Burkhowderia Glumae产生的光敏剂作为引起细菌稻粒腐烂的基本毒力因素。在氧气和光下,在氧化还原循环期间产生超氧化物和H 2 ,在氧气和光下,这些反应性氧物质导致植物毒性作用。为了利用植物转化中的选择剂作为选择剂,我们鉴定了一种基因,TFLA,其在Paenibacillus polymyxa JH 2菌株中编码毒素降解酶。基于氨基酸序列,TFLA估计为24.56kDa的尺寸,并且类似于在SP中的环形裂解外部二氧化二恶子酶。 255-15;然而,与其他外氧基二氧基酶不同,TFLA所需的Mn 2 + 和二噻噻唑类化合物所需的毒素。在这里,我们的结果表明Toxoflavin是光敏剂,TFLA的降解用作不同植物物种的光依赖性选择标记系统。我们检查了两种不同植物选择系统,毒素霉素/ TFLA和潮霉素/潮霉素磷酸转移酶(HPT)的效率。在转基因拟南芥种子的高密度筛选中,毒素酰胺/ TFLA选择比潮霉素/ HPT选择更显着。基于这些结果,我们提出了基于光敏剂的降解的毒素酰苯胺/ TFLA选择系统,为不同的植物提供了一种新的鲁棒非纤维选择标记系统。

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