1,584
Views
3
CrossRef citations to date
0
Altmetric
Agriculture

Response of Lactuva Sativa Var. Crispa to deficit irrigation and leonardite treatments

ORCID Icon &
Pages 105-117 | Received 09 Jun 2021, Accepted 21 Dec 2021, Published online: 17 Jan 2022

References

  • Abd El-Wahed MH, Baker GA, Ali MM, Abd El-Fattah FA. 2017. Effect of drip deficit irrigation and soil mulching on growth of common bean plant, water use efficiency and soil salinity. Sci Hortic. 225:235–242.
  • Acar B, Paksoy M, Türkmen Ö, Seymen M. 2008. Irrigation and nitrogen level affect lettuce yield in greenhouse condition. Afr J Biotechnol. 7(24):4450–4453.
  • Afzal M, Battilani A, Solimando D, Ragab R. 2016. Improving water resources management using different irrigation strategies and water qualities: field and modelling study. Agric Water Manag. 176:40–54.
  • Akinremi OO, Janzen RL, Lemke RL, Larney FJ. 2000. Response of canola, wheat and green beans to leonardite additions. Can J Soil Sci. 80:437–443.
  • Akıncı Ş, Lösel DM. 2012. Plant water-stress response mechanisms. In I.M. Rahman, H. Hasegawa, editors. Water stress. Rijeka, Croatia: InTech Europe; p. 15–42.
  • Alenazi  M, Wahb-Allah MA, Abdel-Razzak HS, Ibrahim AA, Alsadon A. 2016. Water regimes and humic acid application influences potato growth, yield, tuber quality and water use efficiency. Am. J. Potato Res. 93(5):463–473.
  • Ali MGM, Ibrahim MM, El Baroudy A, Fullen M, Omar EH, Ding Z, Kheir AMS. 2020. Climate change impact and adaptation on wheat yield, water use and water use efficiency at North Nile Delta. Front Earth Sci. 14(3):522–536.
  • Bae J, Dall’erba S. 2018. Crop production, export of virtual water and water-saving strategies in Arizona. Ecol Econ. 146:148–156.
  • Bhardwaj ML. 2012. Effect of climate change on vegetable production in India. In M.L. Bhardwaj, H.D. Sharma, M. Kumar, et al., editors. Vegetable production under changing climate scenario. Solan: Dr. Y. S. Parmar University of Horticulture and Forestry; p. 1–12.
  • Bozkurt S, Mansuroğlu GS, Kara M, Önder S. 2009. Responses of lettuce to irrigation levels and nitrogen forms. Afr J Agric Res. 4(11):1171–1177.
  • Brempong MB, Norton U, Norton JB. 2019. Compost and soil moisture effects on seasonal carbon and nitrogen dynamics, greenhouse gas fluxes and global warming potential of semi-arid soils. Int J Recycl Org Waste Agric. 8(1):367–376.
  • Calvo P, Nelson L, Kloepper JW. 2014. Agricultural uses of plant biostimulants. Plant Soil. 383:3–41.
  • Capra A, Consoli S, Russo A, Scicolone B. 2008. Integrated agroeconomic approach to deficit ırrigation on lettuce crops in Sicily (Italy). J Irrig Drain Eng. 134(4):437–445.
  • Chala M, Yohannes KW. 2015. Effect of irrigation application levels on yield and water productivity of drip irrigated lettuce (Lactuca sativa L.), Gedio Zone. Southern Ethiopia. Int J Appl Sci. 4(4):229–234.
  • Chen Y, Aviad T. 1990. Effects of humic substances on plant growth. In: MacCarthy P, editor. Humic substances in soil and crop science: selected readings. Madison: American Society of Agronomy and Soil Science Society of America; p. 161–186.
  • Çivit B. 2010. Bazı doğal maddelerin (gidya, zeolit ve leonardit) marulda (lactuca sativa l.var longifolia) verim ve büyüme üzerine etkisi. Kahramanmaraş Sütçü İmam Üniversitesi Fen Bilimleri Enstitüsü Bahçe Bitkileri Anabilim Dalı Yüksek Lisans Tezi. Kahramanmaraş.
  • Demir M, Noyan ÖF, Oğuz İ. 2012. Leonardit kullanımı ile birlikte azaltılmış azotlu gübre uygulamalarının bitki verim ve toprak özellikleri üzerine etkileri. Orta Karadeniz Geçit Kuşağı Tarımsal Araştırma İstasyonu Müdürlüğü. Gaziosmanpaşa Üniversitesi, Ziraat Fakültesi, Toprak Bölümü- SAÜ Fen Edebiyat Dergisi (2012-1). Tokat.
  • Ding Z, Ali EF, Elmahdy AM, Ragab KE, Seleiman MF, Kheir AMS. 2021. Modeling the combined impacts of deficit irrigation, rising temperature and compost application on wheat yield and water productivity. Agric Water Manag. 224:1–12.
  • Ding Z, Kheir AMS, Ali MGM, Ali OAM, Abdelaal AIN, Lin X, Zhou Z, Wang B, Liu B, He Z. 2020. The integrated effect of salinity, organic amendments, phosphorus fertilizers, and deficit irrigation on soil properties, phosphorus fractionation and wheat productivity. Sci Rep. 10:2736.
  • Erice G, Louahlia S, Irigoyen JJ, Sanchez-Diaz M, Alami IT, Avice JC. 2011. Water use efficiency, transpiration and net CO2 exchange of four alfalfa genotypes submitted to progressive drought and subsequent recovery. Environ Exp Bot. 72(2):123–130.
  • Erkoç İ. 2009. Sera domates yetiştiriciliğinde kükürt ve leonardit uygulamalarının fosfor yarayışlılığına etkileri. Adana: Çukurova Üniversitesi Fen Bilimleri Enstitüsü Yüksek Lisans Tezi.
  • FAOSTAT. 2020. The total production of lettuce and chicory by Turkey. Retrieved on Febuary 06, 2020 from: http://www.fao.org/faostat/en/#data/QC/visualize.
  • Gallardo M, Jackson LE, Schulbach K, Snyder RL, Thompson RB, Wyland LJ. 1996. Production and water use in lettuces under variable water supply. Irrig Sci. 16:125–137.
  • Garcia MV, Estrella FS, Lopes M, Moreno J. 2008. Influence of compost amendment on soil biological properties and plants. Dyn Soil Dyn Plant. 1:1–9.
  • Gianino D, Malladi A, van Iersel MW. 2015. Water use efficiency of four types of lettuce (Lactuca sativa) in response to different drought severities. ASHS 2015 Annual Conference; New Orleans, 4–7 August 2015.
  • Hartz T, Bottoms T. 2010. Humic substances generally ineffective in improving vegetable crop nutrient uptake or productivity. Hortic Sci. 45:906–910.
  • Hassanpanah D, Khodadadi M. 2009. Evaluation of potassium humate effects on germination, yield and yield components of HPS-II/67 hybrid true potato seeds under in vitro and in vivo conditions. Am J Plant Physiol. 4:52–57.
  • Kaçar B. 2014. Bitki, toprak ve gübre analizleri 2, kolay uygulanabilir bitki analizleri. Nobel Akademik Yayıncılık, Yayın No:910, Ankara, ISBN:978-605-133-812-5.
  • Karam F, Mounzer O, Sarkis F, Lahoud R. 2002. Yield and nitrogen recovery of lettuce under different irrigation regimes. J Appl Hortic. 4(2):70–76.
  • Ket P, Garré S, Oeurng C, Hok L, Degré A. 2018. Simulation of crop growth and water-saving irrigation scenarios for lettuce: a monsoon-climate case study in Kampong Chhnang, Cambodia. Water (Basel). 10(5):666.
  • Kirda C. 2002. Deficit irrigation scheduling based on plant growth stages showing water stress tolerance. In Deficit irrigation practices, water reports. Vol. 22. Rome: Food and Agriculture Organization of the United Nations; p. 3–10.
  • Kırnak H, Demir S, Tas İ, Çakmaklı M. 2002. Response of different irrigation water applications on yield and growth of lettuce grown in greenhouse. J Agric Fac Harran Univ. 6:47–54.
  • Klute A. 1986. Water retention: laboratory methods. In A. Klute, editor. Methods of soil analysis, Part 1, Physical and mineralogical methods. Madison, WI: Agronomy. Monograph. American Society of Agronomy and Soil Science Society of America; p. 635–662.
  • Kögler F, Söffker D. 2017. Water (stress) models and deficit irrigation: system-theoretical description and causality mapping. Ecol Modell. 361:135–156.
  • Kolay B, Gürsoy L S, Avşar Ö, Bayram N, Öztürkmen AR, Aydemir S, Aktaş H. 2016. Buğday bitkisine uygulanan farklı miktarlarda leonarditin bazı toprak özelliklerine etkisi. Toprak Su Dergisi. 5(2):32–36.
  • Křístková E, Doležalová I, Lebeda A, Vinter V, Novotná A. 2008. Description of morphological characters of lettuce (Lactuca sativa L.) genetic resources. Hortic Sci. 35:113–129.
  • Kurunc A, Unlukara A, Cemek B. 2011. Salinity and drought affect yield response of bell pepper similarly. Acta Agric Scand, Sect B. 61:514–522.
  • Kuslu Y, Dursun A, Sahin U, Kiziloglu FM, Turan M. 2008. Short communication. Effect of deficit irrigation on curly lettuce grown under semiarid conditions. Span J Agric Res 6:714–719.
  • Lopez JR, Winter JM, Elliott J, Ruane AC, Porter C, Hoogenboom G. 2017. Integrating growth stage deficit irrigation into a process based crop model. J Agric Meteorol. 243:84–92.
  • Maraseni TN, Mushtaq S, Reardon-Smith K. 2012. Integrated analysis for a carbon-and water-constrained future: an assessment of drip irrigation in a lettuce production system in eastern Australia. J Environ Manag 111:220–226.
  • Marschner H. 1995. Mineral nutrition of higher plants, 2nd ed. London: Academic Press.
  • Mengel K, Kirkby EA, Kosegarten H, Appel T. 2001. Principles of plantnutrition. Dordrecht: Kluwer Academic.
  • Michelon N, Pennisi G, Myint NO, Orsini F, Gianquinto G. 2020. Strategies for improved water use efficiency (WUE) of field-grown lettuce (Lactuca sativa L.) under a semi-arid climate. Agronomy. 10(5):668.
  • Moghadam HT, Khamene MK, Zahedi H. 2014. Effect of humic acid foliar application on growth and quantity of corn in irrigation withholding at different growth stages. Maydica. 59:124–128.
  • Molina-Montenegro MA, Zurita-Silva A, Oses R. 2011. Effect of water availability on physiological performance and lettuce crop yield (Lactuca sativa). Cien Inv Agr. 38:65–74.
  • Moreira MA, Dos Santos CAP, Lucas AAT, Bianchini FG, De Souza IM, Viégas PRA. 2014. Lettuce production according to different sources of organic matter and soil cover. Agric Sci. 5:99–105.
  • Oğuz İ, Karaş E, Erşahin S, Susam T. 2016. Land Degradation in the Çelikli Basin, Turkey. In Abiud Kaswamila, editor. Land degradation and desertification – a global crisis. London: IntechOpen Book Series; p. 93–114. doi:10.5772/64624.
  • Patanè C, Tringali S, Sortino O. 2011. Effects of deficit irrigation on biomass, yield, water productivity and fruit quality of processing tomato under semi-arid Mediterranean climate conditions. Sci Hortic. 129:590–596.
  • Rolbiecki R, Rolbiecki S. 2007. Effects of micro-irrigation systems on lettuce and radish production. Acta Hortic. 729:331–335.
  • Sahin U, Kuslu Y, Kiziloglu FM, Cakmakci T. 2016. Growth, yield, water use and crop quality responses of lettuce to different irrigation quantities in a semi-arid region of high altitude. J Appl Hortic. 18(3):195–202.
  • Silva VPR, Tavares AL, Sousa IF, Silva TGF, Holanda RM, Souza EP, Silva BB, Braga CC, Almeida RSR. 2018. Evapotranspiration, water use efficiency and crop coefficient of three lettuce varieties grown in a tropical region. Rev Fac Cienc Agra. 41(3):798–805.
  • Stevenson FJ. 1994. Humus chemistry: genesis, composition, and reactions. New York: John Wiley.
  • Torun B. 2009. Tarla koşullarında gyttja uygulamasının tahılların Dane verimine ve toprağın fiziksel ve kimyasal özelliklerine etkisi. Harran Üniversitesi, Z.F.Dergisi. 13(3):60–72.
  • Ünlükara A, Kurunç A, Kesmez GD, Yurtseven E, Suarez DL. 2010. Effects of salinity on eggplant (Solanum melongena L.) growth and evapotranspiration. Irrig Drain. 59:203–214.
  • Yang C, Luo Y, Sun L, Wu N. 2015. Effect of deficit irrigation on the growth, water use characteristics and yield of cotton in arid northwest China. Pedosphere. 25:910–924.
  • Yazgan S, Ayas S, Demirtas C, Büyükcangaz H, Candogan BN. 2008. Deficit irrigation effects on lettuce (Lactuca sativa var. Olenka) yield in unheated greenhouse condition. J Food Agric Environ. 6:357–361.
  • Yılmaz E, Alagöz Z, Öktüren F. 2008. Farklı organik materyal uygulamalarının toprak agregatları üzerine etkisi. Akdeniz Univ Ziraat Fak Derg. 21(2):213–222.
  • Zandonadi DB, Santos MP, Dobbss LB, Olivares FL, Canellas LP, Binzel ML. 2010. Nitric oxide mediates humic acids-induced root development and plasma membrane H+-ATPase activation. Planta. 231:1025–1030.