首页> 外文期刊>Frontiers in Plant Science >Real-Time Determination of Photosynthesis, Transpiration, Water-Use Efficiency and Gene Expression of Two Sorghum bicolor (Moench) Genotypes Subjected to Dry-Down
【24h】

Real-Time Determination of Photosynthesis, Transpiration, Water-Use Efficiency and Gene Expression of Two Sorghum bicolor (Moench) Genotypes Subjected to Dry-Down

机译:实时测定两种受干旱影响的双色高粱(Moench)基因的光合作用,蒸腾作用,水分利用效率和基因表达

获取原文
           

摘要

Plant growth and productivity are strongly affected by limited water availability in drought prone environments. The current climate change scenario, characterized by long periods without precipitations followed by short but intense rainfall, forces plants to implement different strategies to cope with drought stress. Understanding how plants use water during periods of limited water availability is of primary importance to identify and select the best adapted genotypes to a certain environment. Two sorghum genotypes IS22330 and IS20351, previously characterized as drought tolerant and drought sensitive genotypes, were subjected to progressive drought stress through a dry-down experiment. A whole-canopy multi-chamber system was used to determine the in vivo water use efficiency (WUE). This system records whole-canopy net photosynthetic and transpiration rate of 12 chambers five times per hour allowing the calculation of whole-canopy instantaneous WUE daily trends. Daily net photosynthesis and transpiration rates were coupled with gene expression dynamics of five drought related genes. Under drought stress, the tolerant genotype increased expression level for all the genes analyzed, whilst the opposite trend was highlighted by the drought sensitive genotype. Correlation between gene expression dynamics and gas exchange measurements allowed to identify three genes as valuable candidate to assess drought tolerance in sorghum.
机译:在容易干旱的环境中,有限的水供应严重影响了植物的生长和生产力。当前的气候变化情景的特点是长时间没有降水,然后出现短暂但强烈的降雨,这迫使植物采取不同的策略来应对干旱。了解植物在有限水供应期间如何使用水,对于确定和选择最适合特定环境的基因型至关重要。通过干燥试验,将两种高粱基因型IS22330和IS20351(以前表征为耐旱基因型和干旱敏感性基因型)进行性干旱胁迫。使用全冠多室系统确定体内用水效率(WUE)。该系统每小时记录五次12个室的全冠净光合速率和蒸腾速率,从而可以计算全冠瞬时WUE每日趋势。每天的净光合作用和蒸腾速率与五个干旱相关基因的基因表达动态相关。在干旱胁迫下,耐性基因型提高了所有分析基因的表达水平,而干旱敏感性基因型则突出了相反的趋势。基因表达动力学和气体交换测量之间的相关性使得可以鉴定出三个基因作为评估高粱耐旱性的有价值的候选者。

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