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Physiological and Biochemical Behaviour of Gleditsia triacanthos L. Young Seedlings Under Drought Stress Conditions

机译:干旱胁迫下苦参幼苗的生理生化行为

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Drought affects a wide part of the world and constitutes one of the most important limiting factors for growth and development of vegetation cover. Plants evolved several physiological and biochemical mechanisms to cope with biotic and abiotic stresses. Gleditsia L. (Fabaceae) is a small genus of typically spiny trees native to America, Asia, and Africa. Among this genus Gleditsia triacanthos L. belongs to drought-tolerant species and could be a long-term solution for reforestation of dry land areas. The aim of our work is to study the impact water stress on G. triacanthos plants at early stage of development. After six weeks of culture, water stress was imposed during 19 days. A gradual dehydration of the soil caused a progressive drop in the relative water content (RWC) down to 60.54±2.06% at the end of treatment. On the other hand, G. triacanthos young seedlings show an important osmotic adjustment by an early accumulation of proline. The phenylpropanoids metabolism was also affected by water stress where a significant increase in total polyphenols, total flavonoids and anthocyanin concentrations was recorded. These compounds could play a dual role both in osmoregulation mechanism and antioxidant system. G. triacanthos stressed plants appear to protect its photosystems by increasing carotenoids rate and maintain a stable Chl a/b ratio despite a substantial decrease in chlorophyll pigments (Chl a+b) content.?**********In press - Online First. Article has been peer reviewed, accepted for publication and published online without pagination. It will receive pagination when the issue will be ready for publishing as a complete number (Volume 46, Issue 2, 2018). The article is searchable and citable by Digital Object Identifier (DOI). DOI number will become active after the article will be included in the complete issue.
机译:干旱影响着世界的大部分地区,是植被覆盖生长和发展的最重要限制因素之一。植物进化出了几种生理和生化机制来应对生物和非生物胁迫。 Gleditsia L.(Fabaceae)是一小类,通常生于美国,亚洲和非洲的多刺树。在该属中,Gleditsia triacanthos L.属于耐旱物种,并且可以作为干旱地区造林的长期解决方案。我们的工作目的是研究开发初期水分胁迫对tri藜植物的影响。培养六周后,在19天内施加了水分胁迫。在处理结束时,土壤的逐渐脱水导致相对含水量(RWC)逐渐下降至60.54±2.06%。另一方面,G。triacanthos幼苗由于脯氨酸的早期积累而显示出重要的渗透调节作用。苯丙烷的代谢也受到水分胁迫的影响,其中记录的总多酚,总黄酮和花青素浓度显着增加。这些化合物在渗透调节机制和抗氧化系统中都可能起双重作用。尽管叶绿素色素(Chl a + b)含量大大降低,但G. triacanthos强调的植物似乎通过增加类胡萝卜素速率来保护其光系统,并维持稳定的Chl a / b比。按-在线优先。文章已被同行评审,接受发表和在线出版而无需分页。当期刊准备好发布为完整编号时,它将接受分页(第46卷,2018年第2期)。该文章可通过数字对象标识符(DOI)进行搜索和引用。文章将包含在完整的期刊中之后,DOI号将变为活动状态。

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