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首页> 外文期刊>Anais da Academia Brasileira de Ciencias >Photosynthetic capacity and water use efficiency in Ricinus communis (L.) under drought stress in semi-humid and semi-arid areas
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Photosynthetic capacity and water use efficiency in Ricinus communis (L.) under drought stress in semi-humid and semi-arid areas

机译:半湿润和半干旱地区干旱胁迫下Ricinus Communis(L.)的光合容量和用水效率

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ABSTRACT Castor bean is one of the crops with potential to provide raw material for production of oils for biodiesel. This species possess adaptive mechanisms for maintaining the water status when subjected to drought stress. A better understanding these mechanisms under field conditions can unravel the survival strategies used by this species. This study aimed to compare the physiological adaptations of Ricinus communis (L.) in two regions with different climates, the semi-arid and semi-humid subject to water stress. The plants showed greater vapor pressure deficit during the driest hours of the day, which contributed to higher values of the leaf temperature and leaf transpiration, however, the VPD (leaf-air) had the greatest effect on plants in the semi-arid region. In both regions, between 12:00 p.m. and 2:00 p.m., the plants presented reduction in the rates of photosynthesis and intracellular CO 2 concentration in response to stomatal closure. During the dry season in the semi-arid region, photoinhibition occurred in the leaves of castor bean between 12:00 p.m. and 2:00 p.m. These results suggest that castor bean plants possess compensatory mechanisms for drought tolerance, such as: higher stomatal control and maintenance of photosynthetic capacity, allowing the plant to survive well in soil with low water availability.
机译:摘要蓖麻豆是其中一种潜力,可提供用于生产生物柴油油的原料。该物种具有适应性机制,用于在受干旱胁迫时保持水位。更好地理解这些机制在现场条件下可以解开该物种使用的存活策略。本研究旨在将Ricinus Communis(L.)的生理适应与不同气候的两个地区进行比较,半干旱和半潮湿受水胁迫。该植物在当天的干燥小时内显示出更大的蒸气压缺损,这导致叶温和叶片蒸腾的更高值,然而,VPD(叶空气)对半干旱区域的植物产生了最大的影响。在两个地区,下午12点之间。下午2点,植物响应气孔闭合而呈现光合作用和细胞内CO 2浓度的降低。在半干旱地区的旱季期间,距离蓖麻籽叶片在12:00之间发生的光燃烧。下午2点这些结果表明,蓖麻植物具有用于干旱耐受的补偿机制,例如:较高的气孔控制和光合能力维持,允许植物在土壤中存活,水可用性低。

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