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Effects of light-regulation and intensity on the growth, physiological and biochemical properties of Aralia elata (miq.) seedlings

机译:光调节和强度对Aralia Elata(MIQ.)幼苗生长,生理和生化特性的影响

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摘要

The effects of different shading treatments (i.e. 50%, 65%, and 80% shading) on the growth, physiological and biochemical properties of one-year-old Aralia elata seedlings were studied. Different simulated illumination conditions showed remarkable impact on the growth and physiological attributes of A. elata. Decrease in the simulated illumination intensity caused the growth of A. elata to increase gradually, reaching maximum growth under 65% shading on the 45th day. Chlorophyll a, chlorophyll b and total chlorophyll significantly reduced as compared to treatments under 80% shading. Chlorophyll contents of 50% and 65% shaded plants were markedly higher (p .05) as compared to 80% shaded and control plants on the 45th day. The leaf protective enzyme activities and resistance indexes such as malonaldehyde and proline content prominently enhanced in 80% shading treatment compared to other shading treatments and the control group (no shading). Low light regime led to a decrease in the soluble sugar and protein content in A. elata. The soluble protein content was maximum under 65% shading i.e. 65% shading is more favorable for the normal growth and development of A. elata, while 80% shading has a lethal inhibitory effect on the growth of A. elata. Therefore, proper shading conditions should be handled wisely for optimum growth of A. elata seedlings. (C) 2018 SAAB. Published by Elsevier B.V. All rights reserved.
机译:研究了不同遮阳处理的影响(即50%,65%和80%阴影)对一岁的Aralia Elata幼苗的生长,生理和生化特性进行了研究。不同的模拟照明条件对elata的生长和生理属性表示显着影响。模拟照明强度的降低导致A.ELATA的生长逐渐增加,在第45天达到65%阴影下的最大增长。与80%阴影下的治疗相比,叶绿素A,叶绿素B和总叶绿素显着降低。叶绿素含量为50%和65%阴影植物的植物显着较高(P <.05),与第45天相比80%阴影和对照植物相比。与其他遮阳性处理和对照组相比,叶片保护酶活性和耐药性等抗原指数突出地增强了80%的阴凉治疗中(无阴影)。低光线导致A Elata中可溶性糖和蛋白质含量的降低。可溶性蛋白质含量最大为65%遮阳,即65%的阴影对于ALATA的正常生长和发育更有利,而80%阴影对A.11的生长具有致命的抑制作用。因此,应明智地处理适当的阴影条件以获得A elata幼苗的最佳生长。 (c)2018 Saab。 elsevier b.v出版。保留所有权利。

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