مدير المعهد الحالى

أ.د/ محمد الخولى

مدير المعهد

إدارات المعهد المتعاقبة
من البداية حتى الآن

أ.د/ عبد الحميد مصطفى

مدير معهد بحوث الأراضى والمياه والبيئة الفترة: 1957 - 1967

مواقع صديقة

مركز البحوث الزراعية
Agricultural Research Center
وزارة الزراعة وإستصلاح الأراضى
Ministry of Agriculture and Land Reclamation
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مواقع مفيدة

منظمة الأغذبة والزراعة بالأمم المتحدة
Food And Agriculture Organization OF The United Nations
الإدارة المركزية للأراضي والمياه والبيئة‎
Central Administration of Soils, Water and Environment
المرجع الزراعى
Agri-Science Reference
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أحدث البحوث المضافة

Hossam S. El-Beltagi , Fadl A. Hashem, Mona Maze, Tarek A. Shalaby, Wael F. Shehata and Noura M. Taha( 2022). Control of Gas Emissions (N2O and CO2) Associated with Applied Different Rates of Nitrogen and Their Influences on Growth, Productivity, and Physio-Biochemical Attributes of Green Bean Plants Grown under Different Irrigation MethodsAgronomy 2022, 12, 249.
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Doaa Ahmed El-Nagar a Dalal Hereimas Sary( 2021). Synthesis and characterization of nano bentonite and its effect on some properties of sandy soilsSoil & Tillage Research 208 (2021) 104872
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أحدث رسائل الماجستير
المضافة إلى الموقع

عبد الرحمن أمير عبده ( 2015).
الخمائر كاداه واعده لإنتاج الزيوت الميكروبيه.
Yeasts As Apromising Tool For Microbial Oil Production
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إيمان عبد المجيد زغلول( 2015).
كفــاءة الأســـمـدة النيتــروجينيــة فـي الأراضــي الملــوثــــة
Efficiency Of Nitrogen Fertilizers In Contaminated Soils
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أحدث رسائل الدكتوراه
المضافة إلى الموقع

محمد سعد عبد الستار رمضان( 2016).
علاج بعض الأراضي المصرية الملوثة بالعناصر الثقيلة باستخدام بعض النباتات المجمعة لهذه العناصر
Phytoremediation of Some Egyptian Soils Polluted with Heavy Metals
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أيمن حاكم سراج( 2015).
نمو ومحصول وامتصاص العناصر في الذرة متأثرة بالتسميد العضوي والحيوي تحت الظروف الملحية.
Growth, yield and nutrients uptake of maize as affected by organic and biofertilization under saline conditions
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Salwa S.S. Awad Alla and M.M.I. Afifi( 2016). Effect of benzoic acid and mycorrhiza on mentha Virids plants grown under different irrigation LevelsScientific J. Flowers & Ornamental Plants, 3(3):193-213 (2016)
Abstract: The response of spearmint plants growth, volatile oil production and volatile oil constituents to benzoic acid (BZA) treatments and inoculation by mycorrhizal fungi under different irrigation levels was studied. Three levels of soil moisture 30%, 60% and 100% field capacity (FC) were used. BZA was applied at three rates 0, 150 and 300 ppm, while Arbuscular Mycorrhizal fungi (AMF) were used at 1g/1kg soil. Results showed that benzoic acid (300ppm) or mycorrhizal fungi were capable to alleviate the deteriorative effect of drought stress. The plants which irrigated with 100% FC and treated by AMF or BZA at 300 ppm recorded an improvement in growth characters in term of plant height, fresh and dry weights and volatile oil yield. Meanwhile, the highest volatile oil percentage during the two seasons were recorded at 60% FC with mycorrhizal fungi followed by benzoic acid at 300 ppm treatment. It was noticed that, the vegetative growth, oil production and oil yield increased when the plants were treated by mycorrhizal fungi or BZA at 300 ppm and irrigated at 60% FC compared to those plants irrigated by 100% FC and untreated. Proline content was increased in plants under drought stress (30% FC) and untreated. The lowest values of proline content were found in the plants irrigated by 100% FC and treated by either benzoic acid or mycorrhizal fungi. Also, data showed that, dehydrogenase enzyme activity was the best under the highest level of field capacity (100% FC) with inoculation by mycorrhizal fungi. On the other hand; catalase enzyme activity was superior under the lowest level of FC (30%). AMF colonization infection on roots of spearmint plants increased with high level of FC (100%). AMF spores recorded significant increases under different levels of field capacity after harvesting period particular with mycorrhizal treatment followed by BZA (300ppm) treatment. It is of interest to mention that treating spearmint plants with benzoic acid and mycorrhiza induce mitigation effect on the harmful effect of stress condition.

Keywords: (Spearmint, benzoic acid, dehydrogenase, catalase enzyme, proline, mycorrhizal fungi, field capacity, drought stress.)

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