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   physiological and biochemical responses of lettuce plant to the allochemical compound of paraxanthine  
   
نویسنده razavi mehdi ,asadi nastaran
منبع فرآيند و كاركرد گياهي - 2022 - دوره : 10 - شماره : 46 - صفحه:51 -60
چکیده    In this study, the effects of paraxanthin on lettuce were investigated. paraxanthin is a group of purine alkaloids, secondary metabolites of plants. this compound is made up of the caffeine metabolism found in plants such as tea, coffee and cocoa. there have been previous reports of paraxanthine antihypertensive properties.three different concentrations of paraxanthine as 10, 50 and 100 micro;g/ml were treated on lettuce seedlings and then some physiological and biochemical parameters were measured at 7 leave stage of the plants. the results showed that seed germination, radicle and plumule growth of lettuce plant decreased at different concentrations of the paraxanthine in a dose dependent manner. at the concentration of 100 micro;g/ml of paraxanthine, all of the growth parameters completely inhibited. some measured parameters such as wet and dry weights of the shoots, photosynthetic rate, photochemical efficiency of photosystem ii, leaf relative content and total protein decreased in the paraxanthine treated plants compared to the control group. however, some other parameters such as proline content, hydrogen peroxide and the activity of polyphenol oxidase, ascorbate peroxidase, catalase and protease in treated plants increased. on the other hand, a significant change in electrophoretic pattern of the plant leaf proteins were observed. as some electrophoretic bands in treated plants with 100 micro;g/ml of paraxanthine removed in comparison than control group. the present study demonstrated that the paraxanthine as an allelochemical causes some physiological and biochemical responses in the lettuce which are much similar to those appears under abiotic stress.
کلیدواژه allelochemicals ,allelopathy ,lettuce ,paraxanthine
آدرس university of mohaghegh ardabili, faculty of science, department of biology, iran, university of mohaghegh ardabil, faculty of science, department of biology, iran
پست الکترونیکی asadinastar@gmail.com
 
   Physiological and biochemical responses of lettuce plant to the allochemical compound of paraxanthine  
   
Authors Razavi Seyed Mehdi ,Asadi Nastaran
Abstract    IIn this study, the effects of paraxanthin on lettuce were investigated. Paraxanthin is a group of purine alkaloids, secondary metabolites of plants. This compound is made up of the caffeine metabolism found in plants such as tea, coffee and cocoa. There have been previous reports of paraxanthine antihypertensive properties.Three different concentrations of paraxanthine as 10, 50 and 100 micro;g/ml were treated on lettuce seedlings and then some physiological and biochemical parameters were measured at 7 leave stage of the plants. The results showed that seed germination, radicle and plumule growth of lettuce plant decreased at different concentrations of the paraxanthine in a dose dependent manner. At the concentration of 100 micro;g/ml of paraxanthine, all of the growth parameters completely inhibited. Some measured parameters such as wet and dry weights of the shoots, photosynthetic rate, photochemical efficiency of photosystem II, leaf relative content and total protein decreased in the paraxanthine treated plants compared to the control group. However, some other parameters such as proline content, hydrogen peroxide and the activity of polyphenol oxidase, ascorbate peroxidase, catalase and protease in treated plants increased. On the other hand, a significant change in electrophoretic pattern of the plant leaf proteins were observed. As some electrophoretic bands in treated plants with 100 micro;g/ml of paraxanthine removed in comparison than control group. The present study demonstrated that the paraxanthine as an allelochemical causes some physiological and biochemical responses in the lettuce which are much similar to those appears under abiotic stress.
Keywords Allelochemicals ,Allelopathy ,Lettuce ,Paraxanthine
 
 

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