BibTex RIS Cite

Nohut (Cicer arietinum L.) ve Mercimek (Lens culinaris Medik)’te Bazı Agronomik Çalışmalar

Year 2014, Volume: 1 Issue: 1, 42 - 51, 26.07.2014

Abstract

This study consisted of four different experiments in chickpea (Cicer arietinum L.) and lentil (Lens culinaris Medik): phosphorus fertilizer doses in chickpea and lentil, nitrogen fertilizer doses in chickpea and sowing rates in lentil. Studies were conducted at Diyarbakir in Southeast Anatolia of Turkey over two years (2010-2012). The experiment of phosphorus fertilizer doses in chickpea revealed that the effect of phosphorus on plant height and number of branches plant-1 and 100 seed weight was non-significant and with starter dose of 15 kg P ha-1 initially increased the yield and 30 kg P ha-1 application increased in chickpea. The effect of nitrogen fertilizer doses on plant height, number of branches, pods and seeds plant-1 and grain yield was significant, and the high grain yield was obtained from 20 kg N ha-1. The effect of phosphorus doses on number of pods and seeds plant-1 was significant, but grain yield and harvest index was not significant in lentil. The effect of plant population densities on plant height, number of pods and seeds plant-1, grain yield, biological yield and harvest index was significant. The highest grain yield was obtained in 200 seed m-2 sowingrates, (compared to low density seeding rate of 100 seed m-2) but grain yield from 100 seed m-2 was low.

References

  • Aliloo, A.A., Khorsandy, H., Mustafavi, H., 2012. Response of chickpea cultivars to nitrogen applications at vegetative and reproductive stages. Cercetări Agronomice in Moldova, XLV, 4(152), 49-55.
  • Aulakh, M.S., Pasricha, N.S., Bahl, G.S., 2003. Phosphorus fertilizer response in an irrigated soybean-wheat production system on a subtropical semiarid soil. Field Crops Res. 80, 99-109.
  • Basir, A., Shah, Z., Naeem, M., Bakht, J., 2008. Effect of phosphorus and farm yard manure on agronomic traits of chickpea (Cicer arietinum L.). Sarhad J. Agric. 24(4), 5675
  • Chen, C., Jackson, G., Neill, K., Miller, J., 2006. Spring Pea. Lentil and Chickpea Response To Phosphorus Fertilizer. Fertilizer Facts Number 38. Montana State University.
  • Dahiya, S., Mehar, S., Singh, M., 1993. Relative growth performances of chickpea genotypes to irrigation and fertilizers application. Haryana J. Agron. 9(2), 1721
  • Eyupoglu, F., 1999. Turkiye Topraklarinin Verimlilik Durumu Koy Hiz. G.M. Toprak ve Gubre Arastirma Enstitusu Yay. No:220 ANKARATurkiye.
  • Falah, S., 2002. Effect of plant densities and soil moisture in yield and yield component of chickpea cultivars. Master Thesis. Isfahan University, İran.
  • Islam, M.S., Mohsan, S., Afzal, S., Akmal, M.A., Khalid, R., 2011. Phosphorus and sulfur application improves the chickpea productivity under rainfed conditions. Int. J. Agric. Biol. 13, 713-718.
  • Johansen, C., Sahrawat, K.L., 1991. Strategies for Maximizing The Efficiency of Phosphorus Utilization in Cropping Systems Involving Chickpea and Pigeonpea. In 'Phosphorus Nutrition of Grain Legumes in The Semiarid Tropics', ed. Johansen C., Lee K.K., Sahrawat K.L., ICRISAT: Patancheru. Andhra Pradesh. India.
  • Kamithi, D.K., Kibe, A.M., Akuja, T.E., 2009. Effects of nitrogen fertilizer and plant population on growth, yield and harvest index (HI) of chickpea under dryland conditions in Kenya. J. of Applied Biosci. 22, 1359-1367.
  • Kanayama, Y., Watanabe, I., Yamamoto, Y., 1990. Inhibition of nitrogen fixation in soybean plants supplied with nitrate. I. Nitrite accumulation and formation of nitrosylleghaemoglobin in nodules. Plant Cell Physiol. 31, 341-346.
  • Kantar, F., Caglar, O., Akten, S., 1994. Lentil yields in Erzurum in relation to sowing density. Atatürk Ü. Zir.Fak.Der. 25 (3), 390-397.
  • Kanwar, J.S., 1981. Trends in consumption and production. Proc. FAI- IFDC Fertilizer Seminar. 11/3: 1-16 FAI, New Delhi, AGR
  • Karaköy, T., Erdem, H., Baloch, F.S., Toklu, F., Eker, S., Kilian, B., Özkan, H., 2012. Diversity of macro- and micronutrients in the Seeds of Lentil Landraces. The Scientific World Journal., doi:10.1100/2012/710412.
  • Khan, M.A., Fuller, M.P., Baloch, F.S., 2008. Effect of Soil Applied Zinc Sulphate on Wheat (Triticum aestivum L.) Grown on a Calcareous Soil in Pakistan. Cereal Research Communications 36(4), 571–582
  • Khourgamy, A., Farnia, A., 2009. Effect of phosphorus and zinc fertilization on yield components of chickpea cultivars. African Crop Sci. Conference Proc., 9,205-208.
  • McDonald, G.K., Hollaway, K.L., McMurray, L., 200 Increasing plant density improves weed competition in lentil. Australian J. of Exp. Agric. 47(1), 48-56. Morrison, K.L., Muehlbauer, F.J., 1986. `Brewer` lentils. U.S. Department of Agriculture, Agriculture Research Services, Technical Bulletin No.1408.
  • Muehlbauer, F.J., 1973. Seeding rates for 'Tekoa' lentils. Washington Agricultural Experimental Station Circular. No. 565:3.
  • Namvar, A., Sharifi, R.S., Khandan, T., 2011a. Growth analysis and yield of chickpea in relation to organic and inorganic nitrogen fertilization. Ekologij 57(3), 97-108.
  • Namvar, A., Sharifi, R.S., Sedghi, M., Asghari, Z.R., Khandan, T., Eskandarpour, B., 2011b. Study on the effects of organic and inorganic nitrogen fertilizer on yield, yield components, and nodulation state of chickpea. Communications in Soil Sci. and Plant analysis. 42(9), 1097-1109.
  • Özer, S., Karaköy, T., Toklu, F., Baloch, F.S., Kilian, B., Özkan, H., 2010. Nutritional and physicochemical variation in Turkish kabuli chickpea (Cicer arietinum L.) landraces. Euphytica. 175, 237–249
  • Riley, I.T., 1994. Phosphorus nutrition of largeseeded chickpea cv. Macarena in the Ord River irrigation Area. Western Australia. Australian J. of Exp. Agric. 34, 797-801.
  • Saleem, A., Zahid, M.A., Javed, H.I., Ali, M.A.A., Saleem R., Saleem, N., 2012. Effect of seeding rate on lentil seed yield under rainfed conditions. Pakistan J. Agric. Res. 25(3), 181-185.
  • Saxena, M.C., 1980. Recent Advances in Chickpea Agronomy. In Proceedings of the Int. Workshop on Chickpea Improvement. Ed. Green J.M., Newne Y.L. and Smithson J.B., 89-96, Hyderabad/India.
  • Selim, M.M., 1999. Response of lentil plants to sowing methods and seed rate grown under new reclaimed sandy soil conditions. Egyptian J. Agron. 20 (1-2), 153-163
  • Shukla, S.C., 1964. Response of gram to nitrogen and phosphatic fertilization. Indian J. Agron. 9, 104-112.
  • Sheikh H.M., Siadat, M., 2003. Effect of supplemental irrigation on yield of chickpea. Master Thesis. Azad Islamic university, Dezfol.
  • Turk, M.A., Tawaha, A.M., El-Shatnawi, M.K.J., 200 Response of lentil to plant density, sowing date, phosphorus fertilization and ethephon application in the absence of moisture stress. J. Agron. Crop Sci. 189,1-6.

Some Agronomic Studies in Chickpea (Cicer arietinum L.) and Lentil (Lens culinaris Medik)

Year 2014, Volume: 1 Issue: 1, 42 - 51, 26.07.2014

Abstract

Bu çalışma, nohut (Cicer arietinum L.)’ta farklı fosfor ve azot dozları ile mercimekte (Lens culinaris Medik) farklı azot dozları ve bitki sıklığı denemesi olarak 4 farklı deneme sonucunu içermektedir. Araştırma, iki yıl süreyle (2010-2012) Diyarbakır’da yürütülmüştür. Araştırma sonuçlarına göre; nohutta farklı fosfor dozlarının bitki boyu, bitkide dal sayısı ve 100 tohum ağırlığına etkisi önemsiz bulunmuştur. İlk başlangıç dozu olan 15 kg P ha-1 ve 30 kg P ha-1 tane verimini arttırmıştır. Farklı azot dozlarının nohutta bitki boyu, bitkide dal, bakla ve tane sayısı ve tane verimine etkisi önemli bulunmuş, 20 kg ha-1 azot uygulaması nohut tane veriminde artış sağlamıştır. Mercimekte farklı fosfor dozlarının bitkide bakla ve tane sayısına etkisi önemli, tane verimi ve hasat indeksine etkisi önemsiz bulunmuştur. Mercimekte farklı bitki sıklıklarının bitki boyu, bitkide bakla ve tane sayısı, tane verimi, biyolojik verim ve hasat indeksine etkisi önemli olup, 200 tohum m-2 bitki sıkılığı en yüksek, 100 tohum m-2 bitki sıkılığı ise en düşük tane verimi vermiştir.

References

  • Aliloo, A.A., Khorsandy, H., Mustafavi, H., 2012. Response of chickpea cultivars to nitrogen applications at vegetative and reproductive stages. Cercetări Agronomice in Moldova, XLV, 4(152), 49-55.
  • Aulakh, M.S., Pasricha, N.S., Bahl, G.S., 2003. Phosphorus fertilizer response in an irrigated soybean-wheat production system on a subtropical semiarid soil. Field Crops Res. 80, 99-109.
  • Basir, A., Shah, Z., Naeem, M., Bakht, J., 2008. Effect of phosphorus and farm yard manure on agronomic traits of chickpea (Cicer arietinum L.). Sarhad J. Agric. 24(4), 5675
  • Chen, C., Jackson, G., Neill, K., Miller, J., 2006. Spring Pea. Lentil and Chickpea Response To Phosphorus Fertilizer. Fertilizer Facts Number 38. Montana State University.
  • Dahiya, S., Mehar, S., Singh, M., 1993. Relative growth performances of chickpea genotypes to irrigation and fertilizers application. Haryana J. Agron. 9(2), 1721
  • Eyupoglu, F., 1999. Turkiye Topraklarinin Verimlilik Durumu Koy Hiz. G.M. Toprak ve Gubre Arastirma Enstitusu Yay. No:220 ANKARATurkiye.
  • Falah, S., 2002. Effect of plant densities and soil moisture in yield and yield component of chickpea cultivars. Master Thesis. Isfahan University, İran.
  • Islam, M.S., Mohsan, S., Afzal, S., Akmal, M.A., Khalid, R., 2011. Phosphorus and sulfur application improves the chickpea productivity under rainfed conditions. Int. J. Agric. Biol. 13, 713-718.
  • Johansen, C., Sahrawat, K.L., 1991. Strategies for Maximizing The Efficiency of Phosphorus Utilization in Cropping Systems Involving Chickpea and Pigeonpea. In 'Phosphorus Nutrition of Grain Legumes in The Semiarid Tropics', ed. Johansen C., Lee K.K., Sahrawat K.L., ICRISAT: Patancheru. Andhra Pradesh. India.
  • Kamithi, D.K., Kibe, A.M., Akuja, T.E., 2009. Effects of nitrogen fertilizer and plant population on growth, yield and harvest index (HI) of chickpea under dryland conditions in Kenya. J. of Applied Biosci. 22, 1359-1367.
  • Kanayama, Y., Watanabe, I., Yamamoto, Y., 1990. Inhibition of nitrogen fixation in soybean plants supplied with nitrate. I. Nitrite accumulation and formation of nitrosylleghaemoglobin in nodules. Plant Cell Physiol. 31, 341-346.
  • Kantar, F., Caglar, O., Akten, S., 1994. Lentil yields in Erzurum in relation to sowing density. Atatürk Ü. Zir.Fak.Der. 25 (3), 390-397.
  • Kanwar, J.S., 1981. Trends in consumption and production. Proc. FAI- IFDC Fertilizer Seminar. 11/3: 1-16 FAI, New Delhi, AGR
  • Karaköy, T., Erdem, H., Baloch, F.S., Toklu, F., Eker, S., Kilian, B., Özkan, H., 2012. Diversity of macro- and micronutrients in the Seeds of Lentil Landraces. The Scientific World Journal., doi:10.1100/2012/710412.
  • Khan, M.A., Fuller, M.P., Baloch, F.S., 2008. Effect of Soil Applied Zinc Sulphate on Wheat (Triticum aestivum L.) Grown on a Calcareous Soil in Pakistan. Cereal Research Communications 36(4), 571–582
  • Khourgamy, A., Farnia, A., 2009. Effect of phosphorus and zinc fertilization on yield components of chickpea cultivars. African Crop Sci. Conference Proc., 9,205-208.
  • McDonald, G.K., Hollaway, K.L., McMurray, L., 200 Increasing plant density improves weed competition in lentil. Australian J. of Exp. Agric. 47(1), 48-56. Morrison, K.L., Muehlbauer, F.J., 1986. `Brewer` lentils. U.S. Department of Agriculture, Agriculture Research Services, Technical Bulletin No.1408.
  • Muehlbauer, F.J., 1973. Seeding rates for 'Tekoa' lentils. Washington Agricultural Experimental Station Circular. No. 565:3.
  • Namvar, A., Sharifi, R.S., Khandan, T., 2011a. Growth analysis and yield of chickpea in relation to organic and inorganic nitrogen fertilization. Ekologij 57(3), 97-108.
  • Namvar, A., Sharifi, R.S., Sedghi, M., Asghari, Z.R., Khandan, T., Eskandarpour, B., 2011b. Study on the effects of organic and inorganic nitrogen fertilizer on yield, yield components, and nodulation state of chickpea. Communications in Soil Sci. and Plant analysis. 42(9), 1097-1109.
  • Özer, S., Karaköy, T., Toklu, F., Baloch, F.S., Kilian, B., Özkan, H., 2010. Nutritional and physicochemical variation in Turkish kabuli chickpea (Cicer arietinum L.) landraces. Euphytica. 175, 237–249
  • Riley, I.T., 1994. Phosphorus nutrition of largeseeded chickpea cv. Macarena in the Ord River irrigation Area. Western Australia. Australian J. of Exp. Agric. 34, 797-801.
  • Saleem, A., Zahid, M.A., Javed, H.I., Ali, M.A.A., Saleem R., Saleem, N., 2012. Effect of seeding rate on lentil seed yield under rainfed conditions. Pakistan J. Agric. Res. 25(3), 181-185.
  • Saxena, M.C., 1980. Recent Advances in Chickpea Agronomy. In Proceedings of the Int. Workshop on Chickpea Improvement. Ed. Green J.M., Newne Y.L. and Smithson J.B., 89-96, Hyderabad/India.
  • Selim, M.M., 1999. Response of lentil plants to sowing methods and seed rate grown under new reclaimed sandy soil conditions. Egyptian J. Agron. 20 (1-2), 153-163
  • Shukla, S.C., 1964. Response of gram to nitrogen and phosphatic fertilization. Indian J. Agron. 9, 104-112.
  • Sheikh H.M., Siadat, M., 2003. Effect of supplemental irrigation on yield of chickpea. Master Thesis. Azad Islamic university, Dezfol.
  • Turk, M.A., Tawaha, A.M., El-Shatnawi, M.K.J., 200 Response of lentil to plant density, sowing date, phosphorus fertilization and ethephon application in the absence of moisture stress. J. Agron. Crop Sci. 189,1-6.
There are 28 citations in total.

Details

Primary Language Turkish
Journal Section Research Articles
Authors

B. Tuba Biçer This is me

Publication Date July 26, 2014
Submission Date July 26, 2014
Published in Issue Year 2014 Volume: 1 Issue: 1

Cite

APA Biçer, B. T. (2014). Some Agronomic Studies in Chickpea (Cicer arietinum L.) and Lentil (Lens culinaris Medik). Turkish Journal of Agricultural and Natural Sciences, 1(1), 42-51.