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首页> 外文期刊>Plant Biotechnology Reports >Paraquat-resistant lines in Pisum sativum cv. Alaska: biochemical and phenotypic characterization
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Paraquat-resistant lines in Pisum sativum cv. Alaska: biochemical and phenotypic characterization

机译:Pisum sativum cv中的耐百草枯品系。阿拉斯加:生化和表型表征

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摘要

In plants, the oxygen generated by photosynthesis can be excited to form reactive oxygen species (ROS) under excessive sunlight. Excess ROS including singlet oxygen (1O2) inhibit the growth, development and photosynthesis of plants. To isolate ROS-resistant crop plants, we used paraquat (PQ), a generator of O2 ·? as a source of screening and mutagen, and obtained two PQ-resistant lines in Pisum sativum, namely R3-1 and R3-2. Both lines showed greater resistance to PQ than their wild type (WT) siblings with respect to germination, root growth, and shoot growth. Biochemical analysis showed differences in these lines, in which ROS-scavenging enzymes undergo changes with a distinguishable increase in Mn-SOD. We further observed that the cytosolic catalases (CATs) in leaves in both lines were shifted in a native-PAGE analysis compared with that of the WT, indicating that the release of bound 1O2 was enhanced. Phenotypic analysis revealed distinguishable differences in leaf development, and in flowering time and position. In addition, R3-1 and R3-2 showed shorter individual internode lengths, dwarf plant height, and stronger branching compared with the WT. These results suggested that PQ-induced ROS-resistant Pisum have the potential pleiotropic effects on flowering time and stem branching, and that ROS including 1O2 plays not only important roles in plant growth and development as a signal transducer, but also appears as a strong inhibitor for crop yield.
机译:在植物中,光合作用产生的氧气可以在阳光过多的情况下被激发而形成活性氧(ROS)。过量的ROS(包括单线态氧(1 O2 ))抑制植物的生长,发育和光合作用。为了分离抗ROS的农作物,我们使用了百草枯(O2 ·?的生成物)作为筛选和诱变的来源,并在豌豆(Pisum sativum)中获得了两个抗PQ的品系,即R3。 -1和R3-2。在萌发,根系生长和枝条生长方面,这两条品系均比野生型(WT)兄弟姐妹对PQ具有更高的抗性。生化分析显示出这些系的差异,其中清除ROS的酶发生变化,Mn-SOD明显增加。我们进一步观察到,与野生型相比,在两个页面中叶子的胞质过氧化氢酶(CAT)与野生型相比都发生了移动,这表明结合的1 O2 的释放得到了增强。表型分析显示叶片发育,开花时间和位置明显不同。另外,与野生型相比,R3-1和R3-2的个体节间长度短,矮株高和分支强度更高。这些结果表明,PQ诱导的耐ROS的Pisum对开花时间和茎分枝具有潜在的多效作用,并且包括1 O2 的ROS作为信号不仅在植物生长发育中起重要作用。换能器,但也可作为作物产量的强力抑制剂。

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