Araştırma Makalesi
BibTex RIS Kaynak Göster
Yıl 2022, Cilt: 8 Sayı: 2, 128 - 138, 31.07.2022

Öz

Kaynakça

  • Abd El-Lattief EA, (2014). Determining the optimization seeding rate for improved productivity of wheat under Southern Egypt conditions. International J Agronomy and Agricultural Research, 4(1):47-57
  • Ahmadi AY and Arian MJ, (2021). Comparison of broadcast and row planting methods on growth, grain yield and yield components of wheat (Triticum aestivum L.), Khost province, Afghanistan. Asian Plant Research Journal 7(4): 11-17, doi:10.9734/APRJ/2021/v7i430160
  • Ahmadi AY, Salari MW, Arian MJ and Mosawer A, (2021). Effects of seed density on grain yield and agronomic traits of wheat (Triticum aestivum L.) under Kabul and Khost agro ecological conditions, Afghanistan. International J Scientific Research in Biological Sciences 8(2):27-30
  • Ali S, Zamir MSII, Farid M, Farooq MA, Rizwan M, Ahmad R and Hannan F, (2016). Growth and yield response of wheat (Triticum aestivum L.) to tillage and row spacing in maize-wheat cropping system in semi-arid region. Eurasian Journal of Soil Science, 5(1):53-61
  • Fahad S, Hussain S, Chauhan B S, Saud, S, Wu C, Hassan S and Huang J, (2015). Weed growth and crop yield loss in wheat as influenced by row spacing and weed emergence times. Crop Protection, 71: 101-108, doi:10.1016/j. cropro.2015.02.005
  • Geravandi M, Farshadfar E and Kahrizi D, (2011). Evaluation of some physiological traits as indicators of drought tolerance in bread wheat genotypes. Russian J Plant Physiology, 58(1):69- 75, doi:10.1134/S1021443711010067
  • Goverdhan M, Pasha ML and Reddy DM, (2018). Effect of different levels of nitrogen and seed rates on growth and yield of nontraditional crop wheat (Triticum aestivum) in Telangana. IJCS, 6(3):2585-2587
  • Gupta V, Gupta M, Bharat R, Singh M, Kour S and Sharma BC, (2020). Performance of wheat (Triticum aestivum) varieties under different thermal regimes and N-levels under lower Shivalik foothills. Indian J Agricultural Sciences 90(4):775–79
  • Hameed E, Shah WA, Shad AA, Bakht J and Muhammad T, (2003). Effect of different planting dates, seed rate and nitrogen levels on wheat. Asian J Plant Sciences, 2(6):467-474, doi:10.3923/ajps.2003.467.474.
  • Kahrizi D, Cheghamirza K, Kakaei M, Mohammadi R and Ebadi A, (2010). Heritability and genetic gain of some morphophysiological variables of durum wheat (Triticum turgidum var. durum). African J Biotechnology 9(30):4687-4691
  • Khan IA and Gul H, (2006). Effect of wild oats (Avena fatua) densities and proportions on yield and yield components of wheat. Pakistan J Weed Science Research 12(1/2):69-77. https://www. cabdirect.org/cabdirect/abstract/20063204936
  • MAIL, Afghanistan. Islamic Republic of Afghanistan National Wheat Policy, (2013). http:// extwprlegs1.fao.org/docs/pdf/afg189837.pdf
  • Mirbahar AA, Markhand GS, Mahar AR, Abro SA and Kanhar NA, (2009). Effect of water stress on yield and yield components of wheat (Triticum aestivum L.) varieties. Pakistan J. Botany, 41(3):1303-1310
  • Osmanzai M and Sharma RC, (2008). High yielding stable wheat genotypes for the diverse environments in Afghanistan (No. CIS-5518. CIMMYT.)
  • Osmanzai M, Sharma RC, Ghanizada GH, Ahmadzada Z, (2008). Wheat rusts in Afghanistan: An assessment of occurrence and cultivar resistance. Karna 39(2):3-6
  • Šíp V, Vavera R, Chrpová J, Kusá H and Růžek P, (2013). Winter wheat yield and quality related to tillage practice, input level and environmental conditions. Soil Tillage Research 132:77-85. doi:10.1016/j.still.2013.05.002
  • Tilley M S, Heiniger RW and Crozier C R, (2019). Tiller initiation and its effects on yield and yield components in winter wheat. Agronomy Journal, 111(3):1323-1332. doi:10.2134/ agronj2018.07.0469
  • Tolera A, Tsegaye B and Berg T, (2008). Effects of variety, cropping year, location and fertilizer application on nutritive value of durum wheat straw. Journal of Animal Physiology and Animal Nutrition, 92(2):121-130, doi:10.1111/j.1439- 0396.2007.00717.x
  • USDA (2022). World Agriculture Production. https:// apps.fas.usda.gov/psdonline/circulars/production. pdf

Evaluation of Sowing Density and Agro-Ecological Conditions on Wheat (Triticum aestivum L.) Yield and Components

Yıl 2022, Cilt: 8 Sayı: 2, 128 - 138, 31.07.2022

Öz

Wheat is the strategic crop in Afghanistan. Most wheat growers broadcast wheat seeds during sowing time, and sometimes
the growers sow more seeds 3 to 4 times more than appropriate rate. Variety adaptation is another concern when releasing
wheat varieties adapted to a broad environment. The main objective of this study was to evaluate the effects of sowing
densities at the rate of 100, 110, and 120 kg ha-1 seed density on the total yield of three wheat varieties, Baghlan 09, Kabul
013, and Moqwim 09 under Kabul and Khost Agro-Ecological conditions, Afghanistan. The experiment was conducted
using a randomized complete block design with three replications. The results indicated that seed rate at 110 kg ha-1 in
Kabul province for Kabul 013 and Baghlan 09 varieties and 120 kg ha-1 in Khost province for all three varieties produced
maximum grain yield. Ranking the three varieties, Kabul 013 and Moqwim 09 produced the highest grain yield while
Baghlan 09 did not perform well in either of the two locations, Kabul and Khost. Interaction effects for all traits under
evaluation in the two locations were also significant. Traits like days to heading, days to maturity, plant height, and grain
yield were high in Kabul province compared to Khost. Correlation analysis revealed significant positive correlations among
days to heading and days to maturity (r=0.98***), spikelets spike-1 and grain yield (r=0.88*** and r=0.75***) in Kabul and
Khost provinces, respectively. Analysis indicated that the seed rate at 110 kg ha-1 for Kabul 013 and Baghlan 09 varieties
in Kabul province and 120 kg ha-1 for all three varieties were optimum sowing density in Khost province

Kaynakça

  • Abd El-Lattief EA, (2014). Determining the optimization seeding rate for improved productivity of wheat under Southern Egypt conditions. International J Agronomy and Agricultural Research, 4(1):47-57
  • Ahmadi AY and Arian MJ, (2021). Comparison of broadcast and row planting methods on growth, grain yield and yield components of wheat (Triticum aestivum L.), Khost province, Afghanistan. Asian Plant Research Journal 7(4): 11-17, doi:10.9734/APRJ/2021/v7i430160
  • Ahmadi AY, Salari MW, Arian MJ and Mosawer A, (2021). Effects of seed density on grain yield and agronomic traits of wheat (Triticum aestivum L.) under Kabul and Khost agro ecological conditions, Afghanistan. International J Scientific Research in Biological Sciences 8(2):27-30
  • Ali S, Zamir MSII, Farid M, Farooq MA, Rizwan M, Ahmad R and Hannan F, (2016). Growth and yield response of wheat (Triticum aestivum L.) to tillage and row spacing in maize-wheat cropping system in semi-arid region. Eurasian Journal of Soil Science, 5(1):53-61
  • Fahad S, Hussain S, Chauhan B S, Saud, S, Wu C, Hassan S and Huang J, (2015). Weed growth and crop yield loss in wheat as influenced by row spacing and weed emergence times. Crop Protection, 71: 101-108, doi:10.1016/j. cropro.2015.02.005
  • Geravandi M, Farshadfar E and Kahrizi D, (2011). Evaluation of some physiological traits as indicators of drought tolerance in bread wheat genotypes. Russian J Plant Physiology, 58(1):69- 75, doi:10.1134/S1021443711010067
  • Goverdhan M, Pasha ML and Reddy DM, (2018). Effect of different levels of nitrogen and seed rates on growth and yield of nontraditional crop wheat (Triticum aestivum) in Telangana. IJCS, 6(3):2585-2587
  • Gupta V, Gupta M, Bharat R, Singh M, Kour S and Sharma BC, (2020). Performance of wheat (Triticum aestivum) varieties under different thermal regimes and N-levels under lower Shivalik foothills. Indian J Agricultural Sciences 90(4):775–79
  • Hameed E, Shah WA, Shad AA, Bakht J and Muhammad T, (2003). Effect of different planting dates, seed rate and nitrogen levels on wheat. Asian J Plant Sciences, 2(6):467-474, doi:10.3923/ajps.2003.467.474.
  • Kahrizi D, Cheghamirza K, Kakaei M, Mohammadi R and Ebadi A, (2010). Heritability and genetic gain of some morphophysiological variables of durum wheat (Triticum turgidum var. durum). African J Biotechnology 9(30):4687-4691
  • Khan IA and Gul H, (2006). Effect of wild oats (Avena fatua) densities and proportions on yield and yield components of wheat. Pakistan J Weed Science Research 12(1/2):69-77. https://www. cabdirect.org/cabdirect/abstract/20063204936
  • MAIL, Afghanistan. Islamic Republic of Afghanistan National Wheat Policy, (2013). http:// extwprlegs1.fao.org/docs/pdf/afg189837.pdf
  • Mirbahar AA, Markhand GS, Mahar AR, Abro SA and Kanhar NA, (2009). Effect of water stress on yield and yield components of wheat (Triticum aestivum L.) varieties. Pakistan J. Botany, 41(3):1303-1310
  • Osmanzai M and Sharma RC, (2008). High yielding stable wheat genotypes for the diverse environments in Afghanistan (No. CIS-5518. CIMMYT.)
  • Osmanzai M, Sharma RC, Ghanizada GH, Ahmadzada Z, (2008). Wheat rusts in Afghanistan: An assessment of occurrence and cultivar resistance. Karna 39(2):3-6
  • Šíp V, Vavera R, Chrpová J, Kusá H and Růžek P, (2013). Winter wheat yield and quality related to tillage practice, input level and environmental conditions. Soil Tillage Research 132:77-85. doi:10.1016/j.still.2013.05.002
  • Tilley M S, Heiniger RW and Crozier C R, (2019). Tiller initiation and its effects on yield and yield components in winter wheat. Agronomy Journal, 111(3):1323-1332. doi:10.2134/ agronj2018.07.0469
  • Tolera A, Tsegaye B and Berg T, (2008). Effects of variety, cropping year, location and fertilizer application on nutritive value of durum wheat straw. Journal of Animal Physiology and Animal Nutrition, 92(2):121-130, doi:10.1111/j.1439- 0396.2007.00717.x
  • USDA (2022). World Agriculture Production. https:// apps.fas.usda.gov/psdonline/circulars/production. pdf
Toplam 19 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Ziraat Mühendisliği
Bölüm Makaleler
Yazarlar

Ahmad Yar Ahmadı Bu kişi benim

Mohammad Wali Saları Bu kişi benim

Yayımlanma Tarihi 31 Temmuz 2022
Yayımlandığı Sayı Yıl 2022 Cilt: 8 Sayı: 2

Kaynak Göster

APA Ahmadı, A. Y., & Saları, M. W. (2022). Evaluation of Sowing Density and Agro-Ecological Conditions on Wheat (Triticum aestivum L.) Yield and Components. Ekin Journal of Crop Breeding and Genetics, 8(2), 128-138.
AMA Ahmadı AY, Saları MW. Evaluation of Sowing Density and Agro-Ecological Conditions on Wheat (Triticum aestivum L.) Yield and Components. Ekin Journal. Temmuz 2022;8(2):128-138.
Chicago Ahmadı, Ahmad Yar, ve Mohammad Wali Saları. “Evaluation of Sowing Density and Agro-Ecological Conditions on Wheat (Triticum Aestivum L.) Yield and Components”. Ekin Journal of Crop Breeding and Genetics 8, sy. 2 (Temmuz 2022): 128-38.
EndNote Ahmadı AY, Saları MW (01 Temmuz 2022) Evaluation of Sowing Density and Agro-Ecological Conditions on Wheat (Triticum aestivum L.) Yield and Components. Ekin Journal of Crop Breeding and Genetics 8 2 128–138.
IEEE A. Y. Ahmadı ve M. W. Saları, “Evaluation of Sowing Density and Agro-Ecological Conditions on Wheat (Triticum aestivum L.) Yield and Components”, Ekin Journal, c. 8, sy. 2, ss. 128–138, 2022.
ISNAD Ahmadı, Ahmad Yar - Saları, Mohammad Wali. “Evaluation of Sowing Density and Agro-Ecological Conditions on Wheat (Triticum Aestivum L.) Yield and Components”. Ekin Journal of Crop Breeding and Genetics 8/2 (Temmuz 2022), 128-138.
JAMA Ahmadı AY, Saları MW. Evaluation of Sowing Density and Agro-Ecological Conditions on Wheat (Triticum aestivum L.) Yield and Components. Ekin Journal. 2022;8:128–138.
MLA Ahmadı, Ahmad Yar ve Mohammad Wali Saları. “Evaluation of Sowing Density and Agro-Ecological Conditions on Wheat (Triticum Aestivum L.) Yield and Components”. Ekin Journal of Crop Breeding and Genetics, c. 8, sy. 2, 2022, ss. 128-3.
Vancouver Ahmadı AY, Saları MW. Evaluation of Sowing Density and Agro-Ecological Conditions on Wheat (Triticum aestivum L.) Yield and Components. Ekin Journal. 2022;8(2):128-3.