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Growth and Physiology of Two Psammophytes to Precipitation Manipulation in Horqin Sandy Land, Eastern China

机译:两种Psammophytes在中国东部哈尔沁沙地降水处理的生长和生理学

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摘要

The availability of water is the critical factor driving plant growth, physiological responses, population and community succession in arid and semiarid regions, thus a precipitation addition-reduction platform with five experimental treatments, was established to explore the growth and physiology of two psammophytes (also known as psammophiles) to precipitation manipulation in Horqin Sandy Land. Changes in coverage and density were measured, and antioxidant enzymes and osmoregulatory substances in both of the studied species were determined. Investigation results showed that the average vegetation coverage increased with an increasing precipitation, and reached a maximum in July. Under the −60% precipitation treatment, Tribulus terrestris accounted for a large proportion of the area, but Bassia dasyphylla was the dominant species in the +60% treatment. T. terrestris was found to have higher a drought stress resistance than B. dasyphylla. From days 4 to 7 after rainfall, B. dasyphylla under precipitation reduction showed obvious water stress. The malondialdehyde (MDA) content of B. dasyphylla was higher than that of T. terrestris, but that of B. dasyphylla had the lower relative water content (RWC). The MDA content in the precipitation reduction treatments of the two studied species was higher than that in the precipitation addition treatments from days 4 to 10. Peroxidase (POD) and superoxide dismutase (SOD) activity and the soluble proteins and free proline content of T. terrestris were higher than those of B. dasyphylla. The free proline content of T. terrestris and B. dasyphylla increased with increasing drought stress. Our data illustrated that T. terrestris had a higher drought stress resistance than B. dasyphylla, which was correlated with the augmentation of some antioxidant enzymes and osmoregulatory substance. The adaptive mechanism provides solid physiological support for an understanding of psammophyte adaptation to drought stress, and of community succession or species manipulation for desertified land restoration.
机译:水的可用性是促进植物生长,生理反应,人口和社区在干旱和半干旱地区的群体演替,因此建立了具有五种实验治疗的降水添加降低平台,以探讨两种psammophytes的生长和生理学(也是被称为psammophiles)在Horqin Sandy Land中降水操作。测量覆盖和密度的变化,测定了两种研究中两种研究中的抗氧化酶和OsMoregulatory物质。调查结果表明,平均植被覆盖率随着降水量的增加而增加,7月份达到了最大值。在-60%的降水处理下,Tribulus Terrestris占该地区的大部分,但Bassia dasyphylla是+ 60%治疗中的主要种类。发现Terrestris具有比B. dasyphylla更高的干旱胁迫阻力。降雨后4至7天,B. Dasyphylla在降水下降表现出明显的水分胁迫。 B. dasyphylla的丙二醛(MDA)含量高于T. terrestris的含量,但B. dasyphylla的相对含水量(RWC)的含量高。两种研究的沉淀减少处理中的MDA含量高于4至10天的沉淀加成处理中的沉淀加法处理。过氧化物酶(POD)和超氧化物歧化酶(SOD)活性和可溶性蛋白质和游离脯氨酸含量为T. Terrestris高于B. dasyphylla。随着干旱胁迫的增加,T. Terrestris和B. dasyphylla的游离脯氨酸含量增加。我们的数据表明,T. Terrestris具有比B. dasyphylla更高的干旱胁迫抗性,这与一些抗氧化酶和OsMoregulatory物质的增强相关。自适应机制为理解对干旱胁迫的态度,以及对荒漠化土地恢复的社区连续或物种操纵的稳健生理支持。

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