Farklı Azot Kaynakları ile Yapılan Yaprak Gübrelemesinin Marul (Lactuca sativa L.)’da Verim, Nitrat Birikimi ve Maliyet Üzerine Etkisi

Bu araştırma, farklı azot kaynakları ile yapılan ilave yaprak gübrelemesinin marul (Lactuca sativa L.)’da verim ve nitrat birikimi üzerine etkisini belirlemek amacı ile tarla koşullarında yürütülmüştür. Bitkisel materyal olarak bir adet yaz sıcaklarına dayanıklı kıvırcık marul (cv. ‘Bohemia F1’) çeşidi, yaprak uygulaması olarak da üre (CO(NH2)2), potasyum nitrat (KNO3) ve kalsiyum nitrat (Ca(NO3)2)’ın %0,4, %0,6 ve %0,8’lik dozları kullanılarak yaprak gübrelemesi yapılmıştır. Yaprakta toplam azot değerleri %2,20 (KNO3 %0.4) ile %3,00 (Üre %0,8) arasında değişmiştir. En yüksek nitrat birikimi 2610 mg kg-1 ile Ca(NO3)2’ın %0,8’lik uygulamasında belirlenirken, en düşük nitrat birikimi ise 2070 mg kg-1 ile sadece taban gübrelemesi (NH4NO3) yapılan parselde tespit edilmiştir. Farklı azot kaynakları ile yapılan ilave yaprak gübrelemesi sonucunda marulda en yüksek verim değerleri sırasıyla 4926 kg da-1 (Üre %0,6), 4787 kg da-1 (Üre %0,8) ve 4719 kg da-1 (Ca(NO3)2 %0,6) olarak tespit edilmiştir. Ancak, diğer girdilerin eşit olduğu araştırmada; gübre masraflarını dikkate alındığında karlılık analizinde ilk üç sıra diğer gübrelere göre düşük maliyetinden dolayı, ürenin farklı dozları ile yapılan ilave yaprak gübrelemesinde tespit edilmiştir. Araştırma sonuçlarına göre; karlılık oranları da göz önüne alındığında üre (%0,6) ile yapılan uygulamaların hem yüksek verim hem de yüksek kar elde etmek için daha uygun ve önerilebilir ilave yaprak gübrelemesi olduğu açık bir şekilde söylenebilir

The Effect of Foliar Fertilization with Different Doses of Nitrate Sources on Yield, Nitrate Accumulation and Cost of Lettuce (Lactuca sativa L.)

The aim of this study was to determine effect of additional foliar fertilization with different doses of nitrate sources on yield, nitrate accumulation and cost of lettuce (Lactuca sativa L.) in field conditions. A summer heat resistant crisphead lettuce (cv. ‘Bohemia F1’) was used as plant material. Also urea (CO(NH2)2), potassium nitrate (KNO3) and calcium nitrate (Ca(NO3)2) were used as additional foliar fertilization with doses of 0.4%, 0.6% and 0.8%. Total nitrogen values of lettuce leaves ranged from 2.20% (KNO3 0.4%) to 3.00% (Urea 0.8%). The highest nitrate accumulation was determined with 0.8% application of Ca(NO3)2 with 2610 mg kg-1, while the lowest nitrate accumulation was determined with 2070 mg kg-1 only in base fertilization (NH4NO3). As a result of additional foliar fertilization with different nitrogen sources, it was determined that the highest yield values were 4926 kg da-1 (Urea 0.6%), 4787 kg da-1 (Urea 0.8%) and 4719 kg da-1 (Ca(NO3)2) in lettuce, respectively. However, considering the fertilizer costs in the research where the other agricultural inputs are the same, in the profitability analysis, the highest profit was determined in additional foliar fertilization with different doses of urea (0.6%) due to its low cost compared to other fertilizers. According to the results of the research, when the profitability is taken into consideration, it can be clearly said that the treatments with urea are more suitable and recommendable additional foliar fertilization for both high yield and more profit

___

  • Abdel-Salam MA. 2018. Response of lettuce (Lactuca sativa L.) to foliar spray using nano-urea combined with mycorrhiza. J Soil Sci and Agric Eng, Mansoura Univ, 9: 467-472.
  • Abd-El-Hamied AS, Abd El-Hady MA. 2018. Response of tomato plant to foliar application of calcium and potassium nitrate ıntegrated with different phosphorus rates under sandy soil conditions. Egypt J Soil Sci, 58: 45-55.
  • Ahmadi H, Akbarpour V, Dashti F, Shojaian A. 2010. Effect of different levels of nitrogen fertilizers on yield, nitrate accumulation and several quantitative attributes of five Iranian spinach accessions. Am Eurasian J Agric Environ Sci, 8: 468-473.
  • Almeida PH, Mógor ÁF, Ribeiro AZ, Heinrichs J, Amano E. 2016. Increase in lettuce (Lactuca sativa L.) production by foliar calcium application. Aust J Basic Appl Sci, 10: 161-167.
  • Bremner JM. 1996. Nitrogen-total. The soil science society of America and the American society of agronomy. Madison, Wisconsin, pp: 1085–1121.
  • Chohura P, Kolota E. 2011. Effect of differentiated nitrogen fertilisation on the yield and quality of leaf lettuce. Folia Hortic, 23: 61 -66.
  • Coltman RR. 1989. Managing nitrogen fertilization of tomatoes using nitrate quick test in: Asian vegetable research and development center (AVRDC). Shanhua, Tainan pp: 375-383.
  • Decoteau RD. 2000. Lettuce. Linsner K (ed.). Vegetable crops, pp: 238–252.
  • Elumalai RP, Nagpal P, Reed JW. 2002. A mutation in the Arabidopsis KT2/KUP2 potassium transporter gene affects shoot cell expansion. Plant Cell, 14: 119-131.
  • FAOSTAT, 2019. Food and Agriculture Organization of The United Nation Web Page. [Erişim tarihi: 11.11.2019]: http://www.fao.org/faostat/en/#data/QC
  • Güvenç I. 2002. Effect of Nitrogen fertilization on growth, yield, and nitrogen contents of radishes. Gartenbauwissenschaft, 67: 23-27
  • Güvenç İ, Kaymak HÇ, Karataş A. 2004. Alçak tünelde farklı dikim zamanlarının marulda bitki gelişmesi ve verime etkisi. Atatürk Üniv Ziraat Fak Derg, 35: 35-38.
  • Güvenç İ, Karataş A, Kaymak HÇ. 2006. Effects of foliar applications of urea, ethanol and pudrecine on growth and yield of lettuce (Lactuca sativa). Indian J Agr Sci, 76: 23-25.
  • Hosseny MH, Ahmed MMM. 2009. Effect of nitrogen, organic and bio fertilization on productivity of lettuce (cv. Romaine) in sandy soil under Assiut conditions. Ass Univ Bull Environ Res, 12: 7993.
  • Karaoluk Esençayı M, Korkmaz K. 2019. Ordu topraklarının potasyum durumu ve potasyum fiksasyonunun belirlenmesi. Türk Tarım ve Doğa Bilim Derg, 6: 878-886.
  • Kaya C, Tuna AL, Ashraf M, Altunlu H. 2007. Improved salt tolerance of melon (Cucumis melo L.) by the addition of proline and potassium nitrate. Environ Exp Bot, 60: 397-403.
  • Kavak S, Bozokalfa MK, Uğur A, Yağmur B, Eşiyok D. 2003. Farklı azot kaynaklarının baş salatada (Lactuca sativa var. capitata) verim, kalite ve mineral madde miktarı üzerine etkisi. Ege Üniv Ziraat Fak Derg, 40: 33-40.
  • Khalil MAI, Mohsen AAM, Abdel-Fattah MK. 2016. Effect of bio and mineral nitrogen fertilization on growth, yield and quality of lettuce plants under sandy soil conditions. Middle East J Appl Sci, 6: 411 -417.
  • Kılıç R, Korkmaz K. 2012. Kimyasal gübrelerin tarım topraklarında artık etkileri. Biyoloji Bilimleri Araştırma Derg, 5: 87-90.
  • Kolota E, Osinska M. 2001: Efficiency of foliar nutrition of field vegetables grown at different nitrogen rates. In: Proc. IC Environ. Probl. N-Fert. Acta Hort, 563: 87–91.
  • Korkmaz K, Ibrikci H, Ryan J, Buyuk G, Guzel N, Karnez E, Yagbasanlar T. 2008. Optimizing nitrojen fertilizer–use recommendations for winter wheat in a mediterranean-type environment using tissue nitrate testing. Comm Soil Sci Plant Anal, 39: 1352-1366.
  • Liu CV, Sung Y, Chen B, Lai H. 2014. Effects of nitrogen fertilizers on the growth and nitrate content of lettuce (Lactuca sativa L.). Int J Environ Res Public Health, 11: 4427-4440.
  • Marschner H. 1995. Mineral nutrition of higher plants. Academic Press, London, pp: 889.
  • Mordoğan N, Ceylan Ş, Çakıcı H, Yoldaş F. 2001. Azotlu gübrelemenin marul bitkisindeki azot birikimine etkisi. Ege Üniv Ziraat Fak Derg, 38: 85-92.
  • Padem H, Alan R. 1995. The effect of foliar fertilizers on yield, chlorophyll and chemical content of lettuce (Lactuca sativa L.). Atatürk Univ J Agric Fac, 26: 21 -34.
  • Pavlou GC, Ehaliotis CD, Kawadias VA. 2007. Effect of organic and inorganic fertilizers applied during successive crop seasons on growth and nitrate accumulation in lettuce. Sci Hortic, 111: 319-325.
  • Roosta HR, Mohsenian Y. 2012. Effects of foliar spray of different Fe sources on pepper (Capsicum annum L.) plants in aquaponic system. Sci Hortic, 146: 182-1 91.
  • Santamaria P. 2006. Nitrate in vegetables: toxicity, content, intake and EC regulation. J Sci Food Agric, 86: 10-17.
  • Soliman EM. 2002. Comparison of micro-nutrient application methods for cucumber production in arid land protected cultivation systems. Acta Hortic, 434: 114-119.
  • Tisdale SL, Nelson WL, Beaton JD, Havlin JL. 1993. Soil fertility and fertilizers. 5th Edition, Macmillan Publishing Company, New York, USA, pp: 634.
  • TKK, 2019. Tarım Kredi Kooperatifi 2019 Gübre Fiyatları. [Erişim tarihi: 24.11.2019]: https:// www.kosgebkredisi.com /tarim-kredi-gubre-fiyatlari-2018-2019/
  • Turini T, Cahn M, Cantwell M, Jackson L, Koike S, Natwick E, Smith R, Subbarao K, Takele E. 2011. Iceberg lettuce production in California. Publication 7215. Son erişim: 07.11.2019 https://anrcatalog.ucanr.edu › pdf › 7215
  • TÜİK, 2019. Türkiye İstatistik Kurumu İnternet Sayfası. [Erişim tarihi: 24.11.2019]: https://biruni. tuik.gov.tr/medas/? kn=110& locale=tr
  • Wang ZH, Li SX. 2004. Effects of nitrogen and phosphorus fertilization on plant growth and nitrate accumulation in vegetables. J Plant Nutr, 27: 539-556.
  • Wang ZH, Li SX, Malhi S. 2008. Effects of fertilization and other agronomic measures on nutritional quality of crops. J Sci Food Agric, 88: 7-23.
  • Welbaum GE. 2015. Vegetable production and practices. CABI International, Boston, USA, pp: 222-247.
  • WHO, 1995. World Health Organization. The world health report 1995. Bridging the gaps. Geneva, Switzerland. Available at [access date: 07.11.2019]: http://www.who.int/whr /1995/en/whr95_en.pdf?ua=1
  • Witte CP, Tiller SA, Taylor MA, Davies HV. 2002. Leaf urea metabolism in potato. Urease activity profile and patterns of recovery and distribution of 15N after foliar urea application in wild-type and urease-antisense transgenics. Plant Physiol, 128: 1129-1136.
  • Wojciechowska R, Kowalska I. 2011. The effect of foliar application of urea, Mo and BA on nitrate metabolism in lettuce leaves in the spring and summer-autumn seasons. Folia Hortic, 23: 119-123.
  • Yıldırım E, Guvenc I, Turan M, Karatas A. 2007. Effect of foliar urea application on quality, growth, mineral uptake and yield of broccoli (Brassica oleracea L., var. italica). Plant Soil Environ, 53: 120–128.
  • Zeist AR, Zanin DS, Camargo CK, Resende JTV, Ono EO, Rodrigues JD. 2018. Fruit yield and gas exchange in bell peppers after foliar application of boron, calcium, and Stimulate. Hortic Bras, 36: 498-503.
Türk Tarım - Gıda Bilim ve Teknoloji dergisi-Cover
  • ISSN: 2148-127X
  • Yayın Aralığı: Aylık
  • Başlangıç: 2013
  • Yayıncı: Turkish Science and Technology Publishing (TURSTEP)
Sayıdaki Diğer Makaleler

Relation Between Ergosterol and Various Mycotoxins in Different Cheeses

ÇETİN KADAKAL, NİZAM MUSTAFA NİZAMLIOĞLU, Tolga Kağan TEPE, Sevda ARISOY, Begüm TEPE, Heysem Suat BATU

Geographical Indications and Designations of Origin linked Agricultural Products: Current Statistics from Turkey

Didar UCUNCUOGLU

Herbisit Uygulamaları Yapılan Amaranthus retroflexus L. Bitkilerinden Elde Edilen Tohumların Çimlenme Özellikleri

Oğuzhan CERİT, Derya Öğüt YAVUZ

Heavy Metals in Cassava (Manihot esculenta Crantz) Harvested from Farmlands along Highways in Owerri, Nigeria

Josephat Nwabueze OKEREKE, Judith Nkeiru NDUKA, Adanma Augustina UKAOMA, Odangowei Inetiminebi OGİDİ

Su Kısıtı Koşullarında Biber (Capsicum annuum L.) Bitkisinde Mikoriza Uygulamasının Vejetatif ve Generatif Gelişme Üzerinde Etkileri

KAMİLE ULUKAPI, Zehra KURT, Sevinç ŞENER

Ekmeklik Buğdayda Geliştirilen Resiprokal Rekombinant Kendilenmiş Hat Populasyonunda Çavdar Translokasyonu Taşıyan Hatların Yarı Bodurluk, Fotoperiyod, Vernalizasyon ve Waxy Genlerinin Taraması

Tuğba GÜLEÇ, Nevzat AYDIN

Türkiye’de Süt Sığırcılığı Sektöründeki Gelişmelerin Analizi

Arif SEMERCİ, AHMET DURAN ÇELİK, Eylem DURMUŞ

Assessment of the Role of Small-Scale Irrigation Practice on House Hold Food Security in Haramaya District, Eastern Haraghe Zone, Eastern Ethiopia

Tasisa Temesge TOLOSSA

Grain Legumes Production in Ethiopia: A Review of Adoption, Opportunities, Constraints and Emphases for Future Interventions

Erana KEBEDE

Effect of Different Media on Short Term Storage of Leaping Mullet (Liza saliens (Risso, 1810)) Sperm

Serhat ENGİN, M. Kürşat FIRAT, OSMAN OZDEN, CÜNEYT SUZER, Müge HEKİMOĞLU, Onurkan ANTEPLİ, Şahin SAKA