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Environmental stress recovery of horned poppy (Glaucium spp.) using growth regulator treatments.

机译:使用生长调节剂处理恢复有角罂粟(Glaucium spp。)的环境压力。

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摘要

Plant species and cultivars within a species vary in their recovery from salinity and drought stresses when conditions become more favorable. Water conservation, especially in arid and semiarid regions of the world, is a necessity. Plant species, and cultivars within a species, vary in their salinity and drought tolerance. These variations are the result of variations in genes relating to drought tolerance mechanisms and their interaction with the environment. In order to reduce water usage, it is important to understand the mechanisms of plant adaptation to salinity and drought stresses. Many reports have confirmed the internal modification in growth regulator in terms of types and concentrations under stress conditions. Externally applied growth regulator amendments affect the internal balance of growth regulator and can help the plant to regrow and recover from stress. Horned Poppies (Glaucium SPP.) are members of the Poppy family, Papaveraceae, that are native to the Mediterranean and Middle East regions.;The objectives of this study were to 1) determine whether applications of Abscisic acid (ABA), salicylic acid (SA), fusicoccin (FC), and ethephon (E) could promote Glacium spp. Growth and recovery from salinity stress; 2) determine whether applications of (ABA), (SA), (FC), and (E) could promote Glacium spp. growth and recovery from drought stress; 3) determine the most effective concentrations of each growth regulator in the recovery of the stressed plants; 4) evaluate the recovery degree from salinity and drought stresses among the common Horned Poppy species that are available at Denver Botanic Gardens, G. flavum, G. corniculatum, G. grandiflorum and G. acutidentatums ; 5) determine which evaluation criteria are associated with superior recovery rate; 6) confirm selection criteria for evaluation of salinity and drought tolerance in Horned Poppy species; 7) test the change in the concentration of the internal growth regulator under stress conditions and during recovery in those Horned Poppy species studied.;Glaucium spp. under salinity and drought stress exhibited a positive response to growth regulator treatments in terms of improving leaf characteristics, plant height, overall plant quality (attractiveness), TNC, and water use efficiency. G. flavum showed greater tendency to recover from drought stress at all growth regulator treatments when compared to the other species tested. The treatment of 2 mM ABA is recommended to improve the recovery rate of Glaucium spp. under salinity and drought stress. During stress, internal ABA accumulation was evident to cope with stress conditions. During recovery, when the circumstances were favorable for growth, other groups of growth regulator that are needed for accelerated cell division, enlargement and growth such as auxins, gibberellins, and cytokinnins were abundant. (Abstract shortened by UMI.).
机译:当条件变得更有利时,植物物种和物种中的品种从盐分和干旱胁迫中恢复的能力会有所不同。节约用水是必要的,尤其是在世界干旱和半干旱地区。植物物种和物种中的品种的盐度和耐旱性各不相同。这些变异是有关耐旱机制及其与环境相互作用的基因变异的结果。为了减少用水,了解植物适应盐分和干旱胁迫的机制很重要。许多报告已经证实了在压力条件下,生长调节剂在类型和浓度方面的内部改变。外部应用的生长调节剂修正会影响生长调节剂的内部平衡,并可以帮助植物恢复生长并从胁迫中恢复。有角罂粟(Glaucium SPP。)是罂粟科的罂粟科的一员,该罂粟科原产于地中海和中东地区。该研究的目的是:1)确定是否应用脱落酸(ABA),水杨酸( SA),fusicoccin(FC)和乙烯利(E)可以促进Glacium spp。从盐胁迫中生长和恢复; 2)确定(ABA),(SA),(FC)和(E)的施用是否可以促进Glacium spp。干旱胁迫下的生长和恢复; 3)确定在胁迫植物的恢复中每种生长调节剂的最有效浓度; 4)评价丹佛植物园,黄花草,山茱corn,大花草和acutidentatums常见的有角罂粟种在盐分和干旱胁迫下的恢复程度; 5)确定哪些评估标准与较高的回收率相关; 6)确定选择标准,以评估有角罂粟物种的盐度和耐旱性; 7)在所研究的那些有角罂粟物种中,在压力条件下和恢复期间测试内部生长调节剂浓度的变化。; Glaucium spp。在盐分和干旱胁迫下,在改善叶片特性,株高,整体植物质量(吸引力),TNC和水分利用效率方面,对生长调节剂处理表现出积极的反应。与其他受试物种相比,黄萎病菌在所有生长调节剂处理下均表现出更大的从干旱胁迫中恢复的趋势。建议使用2 mM ABA的处理以提高Glaucium spp的回收率。在盐分和干旱压力下。在胁迫期间,内部ABA积累显然可以应对胁迫条件。在恢复过程中,当环境有利于生长时,促进细胞分裂,扩大和生长所需的其他生长调节剂类(如生长素,赤霉素和细胞分裂素)丰富。 (摘要由UMI缩短。)。

著录项

  • 作者

    Elghoul, Milad M.;

  • 作者单位

    Colorado State University.;

  • 授予单位 Colorado State University.;
  • 学科 Plant sciences.;Horticulture.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 122 p.
  • 总页数 122
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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