...
首页> 外文期刊>Biologica Nyssana >Chenopodium murale L., a long-day plant as a model for physiological and biochemical research
【24h】

Chenopodium murale L., a long-day plant as a model for physiological and biochemical research

机译:作为生理和生化研究模型的全日制植物藜o

获取原文
   

获取外文期刊封面封底 >>

       

摘要

?ivanovi?, B., Mitrovi?, A., Bogdanovi?-Pristov, J., Radoti? Had?i-Mani?, K., ?ulafi?, Lj.: Chenopodium murale L., a long-day plant as a model for physiological and biochemical research.Biologica Nyssana, 1 (1-2), December 2010: 71-75. Chenopodium murale L. genus Chenopodium family Chenopodiaceae is a weedy annual widely distributed inSerbia. This is a long-day plant and an early flowering species. We used culture of intact plants in vitro andantioxidative enzymes detection in order to examine the effect of gibberellic acid (GA3) on two key processesduring ontogenesis – germination and flowering. Our results showed a sequential expression of antioxidativeenzymes during germination. In dry seeds and during early imbibition catalase (CAT) and superoxidedismutase (SOD) activities showed no changes, while peroxidase (POD) activity was under the level ofdelectability. During radicule protrusion CAT and SOD activity increased. Early seedling developmentcorrelates with decrease in SOD, increase in CAT and appearance of POD activity. GA3 delayed andsynchronized germination. C. murale photoperiodic sensitivity for flowering shows age-dependant oscillatorychanges. Glucose and GA3 have cumulative stimulatory effect on its flowering in vitro. The exposure of 2months old vegetative plants to continuous darkness, in the presence of GA3 in culture media, resulted inflowering. Therefore transferring to darkness canceled photoperiodic control in C.murale and floweringoccurred under autonomous mechanism. We suggest C.murale as a suitable model for investigation ofphysiological and biochemical mechanisms of growth and developmental processes.
机译:“ ivanovi”,B.,Mitrovi?,A.,Bogdanovi?-Pristov,J.,Radoti? Had?i-Mani ?, K.,?ulafi ?, Lj .:长日生植物藜芦(Chenopodium murale L.),作为生理生化研究的模型.Nologics Nyssana,1(1-2),2010年12月:71 -75。藜属藜属藜属藜科是在塞尔维亚广泛分布的一年生杂草。这是一整天的植物和一个早期开花的物种。我们使用完整植物的体外培养和抗氧化酶检测来检查赤霉素(GA3)对本体形成过程中两个关键过程的影响-发芽和开花。我们的结果显示了发芽过程中抗氧化酶的顺序表达。在干燥的种子中和早期吸水过程中,过氧化氢酶(CAT)和超氧化物歧化酶(SOD)的活性未见变化,而过氧化物酶(POD)的活性则处于可极化水平。在根基伸出过程中,CAT和SOD活性增加。幼苗早期发育与SOD降低,CAT升高和POD活性出现有关。 GA3延迟并同步发芽。 C. murale对开花的光周期敏感性显示出年龄依赖性的振荡变化。葡萄糖和GA3对其体外开花具有累积刺激作用。在培养基中存在GA3的情况下,将2个月大的营养植物暴露在连续的黑暗中,导致开花。因此,转移到黑暗中取消了C.murale的光周期控制,并且在自主机制下发生了开花。我们建议将C.murale作为研究生长和发育过程的生理和生化机制的合适模型。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号