叶面施用腐植酸和干旱胁迫对万寿菊生长和生理特性的影响

M. Dalvand, M. Solgi, A. Khaleghi
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引用次数: 1

摘要

植物在生长过程中面临着各种环境胁迫。不同的胁迫对植株的生长、代谢和产量有不同的影响,这取决于植株的敏感程度和生长阶段。减少压力的负面影响的一种方法是使用腐植酸物质。研究了腐植酸和干旱胁迫对万寿菊形态生理指标的影响。试验于2016年秋冬在阿拉克大学园艺科学系进行,采用完全随机设计,3个重复,按因子安排进行。研究了4种腐植酸水平(0、50、100和250 mg/L)和3个灌溉间隔(5、10和15 d)对万寿菊生理形态性状(根长、叶数和花数、叶绿素a、叶绿素b、总叶绿素、类胡萝卜素、磷、钙和脯氨酸含量)的影响。结果表明,随着干旱胁迫强度的增加,根长和脯氨酸含量增加。不灌水15 d,脯氨酸含量最高;灌水5 d,腐植酸250 mg/L,脯氨酸含量最低。然而,干旱胁迫降低了叶片和花的数量、叶绿素(a、b和总)、类胡萝卜素和磷、钙含量。较高水平的腐植酸,特别是250 mg/L,增加了叶绿素a、叶绿素b、总叶绿素、类胡萝卜素、磷含量、根长、第6周叶数和花数;但降低了钙和脯氨酸的含量。250 mg/L腐植酸处理不仅减轻了干旱胁迫的负面影响,而且能改善植株的生理和形态特征。综上所述,建议使用腐植酸,特别是高浓度腐植酸,延长万寿菊的灌溉间隔。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of foliar application of humic acid and drought stress on growth and physiological characteristics of marigold (Taget erecta)
Plants are faced with various environmental stresses during their growing period. Each of these stresses have different effects on growth, metabolism and yield according to the sensitivity level and stage of the plant growth. One way of reducing the negative effects of the stresses is to use humic substances. The present study was carried out to evaluate the effects of humic acid and drought stress on morphological and physiological indices of marigold. The experiment was carried out according to the factorial arrangement, based on completely randomized design with three replications, in Department of Horticultural Science, Arak University, in fall and winter of 2016. The effects of four humic acid levels (0, 50, 100 and 250 mg/L) and three irrigation intervals (5, 10 and 15 days) was investigated on physiological and morphological traits of the marigold (root length, number of leaves and flowers, chlorophyll a, chlorophyll b, total chlorophyll, carotenoids, phosphorus, calcium and proline contents). Results showed that root length and proline content was increased by increasing intensity of drought stress. The highest proline content was obtained by 15-day irrigation interval without humic acid and the lowest content was obtained by 5-day irrigation interval with 250 mg/L humic acid. However, drought stress reduced number of leaves and flowers, chlorophyll (a, b and total), carotenoid, and phosphorus and calcium contents. Higher levels of humic acid, particularly 250 mg/L, increased the amount of chlorophyll a, chlorophyll b, total chlorophyll, carotenoids, phosphorus content, root length, number of leaves in the sixth week and number of flowers; but reduced the calcium and proline contents. The 250 mg/L humic acid treatment not only reduced the negative effect of drought stress, but also was able to improve the physiological and morphological characteristics. In conclusion, using humic acid, especially at higher concentrations, is recommended for increasing the irrigation interval of marigold flower.
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