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تاثیر گاما آمینو بوتیریک اسید بر بهبود تحمل به تنش کم آبی در سبزی خرفه (portulaca oleracea)
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نویسنده
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زینلی پور نجمه ,عاقبتی فاطمه
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منبع
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علوم باغباني - 1401 - دوره : 36 - شماره : 3 - صفحه:683 -691
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چکیده
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کمبود آب از تنشهای مهم غیرزیستی است که رشد گیاه و تولید محصول را تحت تاثیر قرار میدهد. این پژوهش جهت بررسی اثر تیمار گابا (گاما آمینو بوتیریک اسید) در غلظتهای مختلف بر عملکرد رویشی و برخی خصوصیات فیزیولوژیکی سبزی دارویی خرفه به صورت فاکتوریل بر پایه طرح کاملاً تصادفی و در سه تکرار در گلخانه سبزیکاری دانشکده کشاورزی دانشگاه شهید باهنر کرمان انجام شد. تیمارهای استفاده شده در این آزمایش شامل؛ فواصل آبیاری هر 7 روز (شاهد)، هر 14 روز (تنش متوسط) و هر 21 روز یکبار (تنش شدید) در کرتهای اصلی و محلولپاشی با گابا در سه سطح صفر، 20 و 40 میلیمولار در کرتهای فرعی بودند. پارامترهایی از جمله؛ ارتفاع بوته، عملکرد رویشی، درصد رطوبت نسبی برگ، میزان پرولین، قندهای محلول، مالوندیآلدئید، فعالیت آنزیمهای سوپراکسید دیسموتاز و کاتالاز اندازهگیری شدند. نتایج نشان داد که تیمار 40 میلیمولار گابا و در تنش با دور آبیاری هر 21 روز یکبار موجب حفظ بهتر میزان عملکرد رویشی حدود (19 درصد)، ارتفاع بوته (34 درصد)، رطوبت نسبی برگ (14 درصد)، پرولین برگ (11 درصد) و قندهای محلول (45 درصد) در مقایسه با گیاهان شاهد که گابا دریافت نکرده بودند، شد. همچنین هر دو غلظت کاربردی گابا فعالیت آنزیمهای آنتیاکسیدان را در مقایسه با شاهد در همه سطوح آبیاری به کار رفته ارتقاء بخشیدند. بنابراین کاربرد ترکیب زیستی گاما آمینو بوتیریک اسید (گابا) سبب تعدیل اثرات مخرب تنش کم آبی بر سبزی خرفه شده است. در نهایت استفاده از گابای40 میلیمولار برای افزایش و حفظ بهتر پارامترهای کمی و کیفی خرفه و ایجاد مقاومت به تنش کم آبی در این گیاه توصیه می شود.
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کلیدواژه
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پرولین، سوپراکسید دیسموتاز، قندهای محلول، کربوهیدرات، گابا
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آدرس
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دانشگاه شهید باهنر کرمان, پژوهشکده فناوری تولیدات گیاهی, گروه علوم و مهندسی باغبانی, ایران, دانشگاه شهید باهنر کرمان, گروه علوم و مهندسی باغبانی, ایران
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پست الکترونیکی
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faghebati@agr.uk.ac.ir
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the effect of gamma amino butyric acid on improving dehydration stress tolerance in portulaca oleracea
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Authors
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zeinali pour n. ,aghebati f.
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Abstract
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introduction portulaca oleraceae is used in many countries for a variety of purposes, including human nutrition and the conversion and pharmaceutical industries. the edible parts of portulaca oleracea are the young organs, especially the brittle leaves and stems. over time, this medicinal herb has been forgotten. drought, on the other hand, is a factor in the decline of crops and horticulture around the world. given the vastness of arid and semi-arid regions in iran and also the reduction of access to water resources, appropriate arrangements should be made for the optimal use of water in the agricultural sector. changing the planting pattern and using useful and resistant alternative species such as drought-tolerant medicinal plants can enable the optimal use of limited water resources. gaba is an important non-protein amino acid that plays a positive role in increasing plant resistance to stress.materials and methods this experiment was carried out in 2020 as a factorial based on a completely randomized design with three replications in the vegetable research greenhouse of the faculty of agriculture, shahid bahonar university of kerman. experimental treatments included different levels of gaba (0, 20, and 40 mm). treatment with different concentrations of gaba was done in two stages of 6 and 12 leaves of portulaca oleracea and foliar application and application of dehydration stress in three levels of control, medium and severe at irrigation intervals of 7, 14, and 21 days from 6 leaf stage of plants to the end.results and discussion according to the analysis of variance, the effect of gaba at different concentrations and dehydration stress on plant height was significant at the level of 5% probability. based on the mean comparison test, the highest plant height was obtained in gaba treatment of 40 mm and irrigation intervals of 7 days (control), and the lowest of this trait was obtained in gaba zero treatment and irrigation intervals of 21 days (highest stress level). the results of analysis of variance showed that the effect of gaba at different concentrations and dehydration stress on vegetative yield was significant, the interaction between irrigation intervals and gaba was significant at 5% level. based on the mean comparison test, the highest vegetative yield was obtained in gaba treatment of 40 mm and irrigation intervals of 7 days and the lowest in control treatment and irrigation intervals of 21 days. according to the results of the analysis of variance table, the effect of gaba at different concentrations and dehydration stress on the amount of malondialdehyde was significant at the level of 1% probability. based on the means comparison test, the highest amount of this trait was obtained in the control treatment. comparison of the mean of the data showed that the effect of gaba at different concentrations and dehydration stress caused a significant difference in the probability level of 1% in the proline content of the data. based on the mean comparison test, the highest amount of proline was observed in gaba treatment of 40 mm and irrigation intervals of 21 days and the lowest amount was observed in control treatment and irrigation intervals of 7 days. as can be seen in the comparison table of means, the highest activity of superoxide dismutase enzyme was obtained in gaba treatment at 40 mm and irrigation intervals of 14 days and the lowest in control treatment and irrigation intervals was 7 days (table 2). the results of this study showed that the effect of gaba at different concentrations and dehydration stress on the activity of catalase was significant at the level of 1% probability. as can be seen in the comparison table of means, the highest level of catalase activity was 40 mm in gaba treatment and 21 days irrigation intervals and the lowest in gaba treatment was 40 mm and irrigation intervals were 7 days.conclusion the results of this study indicate that gaba is able to greatly alleviate the oxidative stress caused by dehydration in portulaca oleracea. this effect is quite evident in oxidative parameters, especially the activity of antioxidant enzymes. the concentration of 40 mm gaba was the most effective treatment in mitigating the effects of irrigation. the results show that the use of gaba makes portulaca oleracea tolerant to dehydration stress.
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