بررسی عملکرد، اجزای عملکرد و نسبت برابری زمین در کشت مخلوط جایگزینی رازیانه (Foeniculum vulgar Mill.) و ماش (Vigna radiata L. Wilczek)

نوع مقاله : مقاله پژوهشی

نویسندگان

گروه اگروتکنولوژی، دانشکده کشاورزی، دانشگاه فردوسی مشهد، مشهد، ایران.

چکیده

به‌منظور بررسی تأثیر نسبت­های جایگزینی کشت مخلوط گیاه دارویی رازیانه (Foeniculum vulgar Mill.) با ماش (Vigna radiata L. Wilczek) بر برخی خصوصیات کمّی و کیفی این دو گیاه، آزمایشی در سال زراعی 94-1393 در قالب طرح بلوک­های کامل تصادفی با پنج تیمار و سه تکرار در مزرعه تحقیقاتی دانشکده کشاورزی دانشگاه فردوسی مشهد اجرا شد. تیمارهای آزمایش شامل: 25 درصد ماش + 75 درصد رازیانه، 50 درصد ماش + 50 درصد رازیانه، 75 درصد ماش + 25 درصد رازیانه و کشت خالص دو گیاه بود. نتایج نشان داد که اثر نسبت­های کشت مخلوط رازیانه با ماش بر تمامی صفات مورد مطالعه معنی­دار بود. بالاترین عملکرد دانه، زیست‌توده و اسانس رازیانه برای کشت خالص به‌ترتیب با 4/1460، 4/12286 و 4/50 کیلوگرم در هکتار و کمترین مقادیر برای تیمار 25 درصد رازیانه + 75 درصد ماش به‌ترتیب با 2/263، 3/5843 و 1/8 کیلوگرم در هکتار مشاهده گردید. همچنین، بالاترین عملکرد دانه و زیست‌توده ماش برای کشت خالص به‌ترتیب با 1/2167 و 5/8900 کیلوگرم در هکتار و کمترین مقادیر برای تیمار 25 درصد رازیانه + 75 درصد ماش به‌ترتیب با 5/740 و 5/2540 کیلوگرم در هکتار مشاهده گردید. نتایج نشان داد که تیمارهای کشت مخلوط از نظر نسبت برابری زمین کل، اختلاف معنی­داری را با هم نشان ندادند. بیشترین مقدار نسبت برابری زمین کلی (07/1) از الگوی کشت مخلوط 50 درصد ماش + 50 درصد رازیانه و کمترین مقدار (91/0) از الگوی کشت مخلوط 25 درصد ماش + 75 درصد رازیانه به­دست آمد. به‌طور کلی، افزایش درصد حضور هر دو گیاه تا 75 درصد باعث افزایش عملکرد بیولوژیکی و دانه شد و افزایش بیش از این میزان، به‌دلیل افزایش رقابت درون گونه­ای بر سر جذب منابع محیطی کاهش این صفات را موجب گردید.

کلیدواژه‌ها


عنوان مقاله [English]

Evaluation of Yield, Yield Components and Land Equivalent Ratio in replacement intercropping of Fennel (Foeniculum vulgar Mill.) with Mung Bean (Vigna radiata L. Wilczek)

نویسندگان [English]

  • Mohammad Hassan Hatefi Farajian
  • Alireza Koocheki
  • Mahdi Nassiri Mahallati
Department of Agrotechnology, Faculty of Agriculture, Ferdowsi University of Mashhad, Mashhad, Iran
چکیده [English]

Introduction
Intercropping as an approach for development of sustainable agriculture systems is pursuing the purposes such as creating ecological balance, further exploitation of resources, increase the quantity and quality of yield and reduce losses due to pests, diseases and weeds and reduce the dependence of farmers to pesticides, to maintain product quality and marketability. Jahani et al (2007) reported that intercropping of lentil and cumin has significantly increased dry weight of vegetative organs, biological yield, 1000-seed weight and number of seeds per cumin umbrella and seed yield. Legume/non-legume intercropping system due to the beneficial use of resources produces more yields. In review of about the fennel and fenugreek intercropping, intercropping of the two plants significantly increased the fennel seed yield compared with monoculture.
Materials and Methods
The experiment was conducted in 2014-2015 growing season based on randomized complete block design with three replications at Agricultural Research Station, Faculty of Agriculture, Ferdowsi University of Mashhad. Experimental treatments were 25% mung bean + 75% fennel, 50% mung bean + 50% fennel, 75% mung bean + 25% fennel, monoculture of mung bean and monoculture of fennel. Species were sown at the same time in 12/06/2015 in rows with a distance of 50 cm. At harvesting time, dry matter, seed yield and yield components of these crops were measured. Yield advantages of intercrops over monocultures were compared by land equivalent ratios. Seeds of fennel were analyzed for essential oil content.  
  Results and Discussion
The highest seed yield, biomass and essential oil of fennel for monoculture with 1460.4, 12286.4 and 50.4 kg per hectare respectively and the lowest values for 25% fennel + 75% mung bean treatment with 263.2, 5843.3 and 8.1 kg per hectare respectively were observed. Also, the highest seed yield and biomass of mung bean for monoculture with 2167.1 and 8900.5 kg per hectare respectively and the lowest values for 25% fennel + 75% mung bean treatment with 740.5 and 2540.5 kg per hectare respectively were observed. The highest essential oil contents of fennel with 3.56% was observed in ratio of 50% fennel + 50% mung bean and the lowest value was observed in 25% fennel + 75% mung bean with 3.1%. It seems that interspecific competition between fennel and mung bean due to the abiotic stresses (competition) led to increasing essential oil percent in intercrops. The highest essential oil yield of fennel was observed in monoculture with 50.4 kg/ha and the lowest value was observed in 25% fennel + 75% mung bean with 8.1 kg/ha. The highest mung bean harvest index was 28% in 25% mung bean + 75% fennel and the lowest was observed in 50% mung bean + 50% fennel with 23.5%. Also, the highest fennel harvest index was observed with 12% in monoculture and the lowest in 25% fennel + 75% mung bean with 4.5%. The highest value of total land equivalent ratio (1.07) was obtained in ratio of 50% mung bean + 50% fennel indicating 7 percent yield advantage of intercropping compared to pure stands of species of these two products compare to each other that represents of showing the more efficient use of land. The lowest value by intercrops of land equivalent ratio was observed in ratio of 25% mung bean + 75% fennel which was 9% lower than the monoculture.
Conclusion
In general, intercropping of fennel with mung bean, had positive effect on biological and seed yield of two species as well as percent and yield of fennel essential oil. So, in order to reduce the consumption of chemical fertilizers in sustainable agriculture and as for nitrogen biological fixation ability of mung bean, intercropping this plant with fennel can be increased resources efficiency and improve of the quality and quantity yield of fennel.
 

کلیدواژه‌ها [English]

  • Biological nitrogen fixation
  • Essential oil yield
  • Medicinal plant
  • Seed yield
  1. Abbasi Alikamar, R., Hejazi, A., Akbari, G.A., Kafi, M., & Zand, E. (2006(. Study on different densities of cumin and chickpea intercropping. Journal of Iranian Field Crop Research, 4(1), 83-95. (In Persian with English Summary) https://doi.org/10.22067/gsc.v4i1.1320
  2. Abedi, K., & Majde Nasiri, B. (1994). Five years studied of yield comparison and best condition of mung bean cultivation in Isfahan. Center of Research, Education and Extension of Isfahan. (In Persian)
  3. Agboola, A.A., & Fayami, A.A. (1972). Fixation and excretion of nitrogen by tropical legumes. Agronomy Journal, 64(4), 409-412. https://doi.org/10.2134/agronj1972.00021962006400040001x
  4. Alizadeh, Y., Koocheki, A., & Nassiri Mahallati, M. (2010). Investigating of growth characteristics, yield, yield components and potential weed control in intercropping of bean (Phaseolus vulgaris) and vegetative sweet basil (Ocimum basilicum L.). Journal of Agroecology, 2(3), 383-397. (In Persian with English Summary) Doi: 10.22067/jag.v2i3.7652
  5. Anonymous, (1998). British Pharmacopoeia, Vol. 2. Pharmacopoeia Commission. HMSO, London, UK.
  6. Asadi, H. (2007). Effect of sesame and bean intercropping on growth indices and yield components. M.Sc. Thesis Agriculture, Faculty of Agriculture, Ferdowsi University of Mashhad, Iran. (In Persian with English Summary)
  7. Awasthi, D., Tripathi, A.K., Dubey, S.D., & Kumar, S. (2011). Effect of row ratio and fertility levels on growth, productivity, competition and economics in chickpea+fennel intercropping system under scarce moisture condition. Food Legumes, 24(3), 211-214.
  8. Bagheri, A., Khalilian, S., & Naghdi Badi, H.A. (2005). Medicinal plants in Iran and world. Collection of Articles the National Conference on the Sustainable Development of Medicinal Plants, Mashhad, Iran, 27-29 July 2005, p. 625-626. (In Persian)
  9. Behera, A.K., Panda, R.K., & Mishra, S.K. (1994). Intercropping of sesame (Sesamum indicum) with green gram (Phaseolus radiatus) and black gram (Phaseolus mungo) under irrigated condition. Indian Journal Agronomy, 39, 618-621.
  10. Carrubba, A., LaTorre, R., Saiano, F., & Aiello, P. (2008). Sustainable production of fennel and dill by intercropping. Agronomy for Sustainable Development, 28, 247-256. DOI: 10.1051/agro:2007040
  11. De Carvalho, L.M., de Oliveira, I.R., Almeida, N.A., & Andrade, K.R. (2011). The intercropping of fennel with beans and cowpeas in the agrestic region of Brazil. Acta Horticulturae, 925, 199-204. https://doi.org/10.17660/ActaHortic.2011.925.29
  12. Dhingra, K.K., Dhillon, M.S., Grewal, D.S., & Sharma, K. (1991). Performance of maize and mung bean intercropping in different planting patterns and row orientations. Indian Journal Agronomy, 36, 207-212.
  13. Esmaeili, A., Hosseini, M.B., Mohammadi, M., & Hosseinikhah, F.S. (2012). Evaluation of grain yield, dry matter production and some of the forage and silage quality properties in annual medic (Medicago scutellata) and spring barley (Hordeum vulgare) intercropping. Seed and Plant Production Journal, 28(3), 277-296. (In Persian) DOI: 22092/SPPJ.2017.110476
  14. Fernandez-Aparicio, M., Sillero, J.C., & Rubials, D. (2007). Intercropping with cereals reduces infection by Orobanche crenata in legumes. Crop Protection, 26(8), 1166-1172. https://doi.org/10.1016/j.cropro.2006.10.012
  15. Fininsa, C. (2003). Relationship between common bacterial blight severity and bean yield loss in pure Stan and bean-maize intercropping systems. International Journal of Pest Management, 49(3), 177-185. DOI: 10.1080/0967087021000049269
  16. Gul, R., Khan, H., Mairaj, Mairaj, G., Ali, S., Farhatullah, & Ikramullah. (2008). Correlation study on morphological and yield parameters of mung bean (Vigna radiata L.). Sarhad Journal Agriculture, 24(1), 37-42.
  17. Haggaard, H., Ambus, P., & Jensen, E.S. (2001). Interspecific competition, N use and interference with weeds in pea-baraley intercropping. Field Crop Research, 70(2), 101-109. https://doi.org/10.1016/S0378-4290(01)00126-5
  18. Hulet, , & Gosseye, P. (2000). Effect of intercropping cowpea on dry-matter and grain yield of millet in the semi-arid zone of Mail, http://www.fao.org/ Wairdocs/ ILRI/ x 5488E/ x5488e0r. Htm.
  19. Hussain, S.A., Ali, N., Rab, A., & Hashemi, A. (2005). Intercropping effect on growth and yield of winter vegetables. Sarhad Journal Agriculture, 21, 345-350.
  20. Jahan, M. (2005). Evaluation ecological aspects of intercropping of chamomile and marigold. M.Sc. Thesis Agriculture, Faculty of Agriculture, Ferdowsi University of Mashhad, Iran. (In Persian with English Summary)
  21. Jahani, M., Koocheki, A., & Nassiri Mahallati, M. (2008). Comparison of different intercropping arrangements of cumin (Cuminum cyminum) and lentil (Lens culinaris). Iranian Journal of Field Crops Research, 6(1), 67-78. (In Persian) DOI: 10.22067/GSC.V6I1.1177
  22. Khamooshi, A. (2014). Effects of planting ratio in intercropping of beans (Phaseolus vulgaris) and fennel (Foenicolum vulgare Mill.) in an additive and substitution experiment on species growth and yield. M.Sc. Thesis Agroecology, Faculty of Agriculture, Ferdowsi University of Mashhad, Iran. (In Persian with English Summary)
  23. Kiani, S., Moradi Telavat, M.R., Siadat, S.A., Abdali Mashhadi, A.R., & Sari, M., 2015. Evaluation of qualitative and quantitative of forage yield in intercropping of barley (Hordeum vulgare) and fennel (Foeniculum vulgare L.) at different levels of nitrogen. Journal of Agricultural Crop Management, 16(4), 973-986. (In Persian with English Summary) https://doi.org/10.22059/jci.2015.53591
  24. Koocheki, A., Shabahang, J., Khorramdel, S., & Amin Ghafouri, A. (2012). Row intercropping of borage (Borago officinalis ) with bean (Phaseolus vulgaris L.) on possible evaluating of the best strip width and assessing of its ecological characteristics. Journal of Agroecology, 4(1), 1-11. (In Persian with English Summary) DOI: 10.22067/JAG.V4I1.14951
  25. Kumar, A., Singh, R., & Chhillar, R.K. (2006). Nitrogen requirement of fennel (Foeniculum vulgare) based cropping systems. Indian Journal of Agricultural Science, 76(10), 599-602.
  26. Lithourgidis, A.S., Dhima, V., Vasilakoglou, I.B., Dordas, C.A., & Yiakoulaki, M.D. (2007). Sustainable production of barley and wheat by intercropping common vetch. Agronomy for Sustainable Development, 27(2), 95-99. https://hal.science/hal-00886333
  27. Maffei, , & Mucciarelli, M. (2003). Essential oil yield in peppermint/soybean strip intercropping. Field Crops Research, 84(3), 229-240. https://doi.org/10.1016/S0378-4290(03)00092-3
  28. Majnoon Hosseini, N., & Colar, G.S. (1988). Study of weed control in mixed cropping of cowpea and mung bean. Iranian Journal of Agriculture Science, 19(1 & 2), 9-12. (In Persian)
  29. Mandal, B.K., Dhara, M.C., Mandal, B.B., Das, S.K., & Nandy, R. (1990). Rice, mung bean, soybean, peanut, ricebean and blackgram yields under different intercropping systems. Agronomy Journal, 82(6), 1063-1066. https://doi.org/10.2134/agronj1990.00021962008200060006x
  30. Mandal, B.K., Saha, S., & Jana, T.K. (2000). Yield performance and complimentarity of rice (Oryza sativa) with greengram (Phaseolus radiatus), blackgram (Phaseolus mungo) and pigeonpea (Cajanus cajan) under different rice-legume associations. Indian Journal Agronomy, 45(1), 41-47.
  31. Mansouri, L., Jamshidi, K., Rastgoo, M., Saba, J., & Mansouri, H. (2013). The effect of additive maize-bean intercropping on yield, yield components and weeds control in Zanjan climate conditions. Iranian Journal of Field Crops Research, 11(3), 483-492. (In Persian with English Summary) DOI: 10.22067/GSC.V11I3.29751
  32. Mazaheri, D., Parsio, B., & Peighambari, S.A. (2001). Study of growth analysis in monoculture and intercropping of soybean. Journal of Research and Construction, 54, 37-54.
  33. Mirhashemi, M. (2006). Evaluation of copticum withfenugreek intercropping with an emphasis on the principles of biological agriculture (organic). M.Sc. Thesis Agriculture, Faculty of Agriculture, Ferdowsi University of Mashhad, Iran. (In Persian with English Summary)
  34. Mirhashemi, S.M., Koocheki, A., Parsa, M., & Nassiri Mahallati, M. (2009). Evaluating the benefit of Ajowan and Fenugreek intercropping in different levels of manure and planting pattern. Journal of Iranian Field Crops Research, 7(1), 259-269. (In Persian with English Summary) DOI: 20.1001.1.20081472.1388.7.1.26.4
  35. Naghipoor Dehkordi, P. (2015). Evaluation of yield, yield components and radiation use efficiency in intercropping of three medicinal plants of black seed, borago and marigold. M.Sc. Thesis Agroecology, Faculty of Agriculture, Ferdowsi University of Mashhad, Iran. (In Persian with English Summary)
  36. Nurbakhsh, F. (2013). Comparison between different indices for evaluation of mixed and row intercropping of sesame and bean. M.Sc. Thesis Agroecology, Faculty of Agriculture, Ferdowsi University of Mashhad, Iran. (In Persian with English Summary)
  37. Omidbeigi, R. (2003). Fennel. Publishers of Promotion Media Planning Office, Office of Flower and Ornamental Plants, Medicinal and Edible Mushrooms of Ministry of Agriculture, 15 p. (In Persian)
  38. Pandita, A.K., Saha, M.H., & Bali, A.S. (2000). Effect of row ratio in cereal-legume intercropping systems on productivity and competition functions under Kashmir conditions. Indian Journal Agronomy, 45(1), 48-53.
  39. Ranjbar, F. (2012). Assessment of growth indices and yield of intercropped Fennel (Foeniculum vulgar), sesame (Sesamum indicum) and bean (Phaseolus vulgaris). M.Sc. Thesis Agroecology, Faculty of Agriculture, Ferdowsi University of Mashhad, Iran. (In Persian with English Summary)
  40. Rezaei-Chianeh, E., Dabbagh Mohammadi Nassab, A., Shakiba, M.R., Ghassemi-Golezani, R., Aharizad, K., & Shekari, F. (2011). Intercropping of maize (Zea mays ) and faba bean (Vicia faba L.) at different plant population densities. African Journal of Agricultural Research, 6(7), 1786-1793. DOI: 10.5897/AJAR10.288
  41. Rezaei-Chianeh, E., Valizadehgan, O., Tajbakhsh, M., Dabbagh Mohammadi Nasab, A., & Rimaz, V. (2014). Evaluation of agronomical yield and insect diversity at different intercropping patterns of bean (Phaseolus vulgaris) and dill (Anethun graveolens L.). Journal of Agricultural Crop Management, 16(2), 353-368. https://doi.org/10.22059/jci.2014.53048
  42. Rezvan Beidokhti, S.H. (2004). Comparison of various combinations of maize and bean in intercropping. M.Sc. Thesis Agriculture, Faculty of Agriculture, Ferdowsi University of Mashhad, Iran. (In Persian with English Summary)
  43. Rezvani Moghadam, P., Raoofi, M.R., Rashed Mohassel, M.H., & Moradi, R. (2009). Evaluation of sowing patterns and weed control on mung bean (Vigna radiata Wilczek)-black cumin (Nigella sativa L.) intercropping system. Journal of Agroecology, 1(1), 65-79. (In Persian) DOI: 10.22067/JAG.V1I1.2655
  44. Rostami, L. (2009). Evaluation of yield, yield components and radiation use efficiency in different densities of intercropping corn (Zea mays) with bean (Phaseolus vulgaris L.). M.Sc. Thesis Agroecology, Faculty of Agriculture, Ferdowsi University of Mashhad, Iran. (In Persian with English Summary)
  45. Roy, D.K. (1997). Production potential of rice (Oryza sativa)-based cropping systems under deep water ecosystem of north Bihar. Indian Journal Agronomy, 42, 570-572.
  46. Sadri, S., Pouryousef, M., Soleimani, A., Barzegar, T., & Jamshidi, K. (2015). Evaluation of agronomical traits fennel (Foeniculum vulgare Mill)–fenugreek (Trigonella foenum-graecum) in intercropping. Iranian Journal of Field Crop Science, 45(4), 593-602. (In Persian with English Summary) DOI: 10.22059/IJFCS.2014.53569
  47. Seddighi Dehkordi, F., Hemmatzadeh, A., & Nazarpoor, M. (2011). Evaluation of advantage fennel and copticum intercropping in different levels of sowing dates and the distance between the planting rows. The Seventh Congress of Iranian Horticultural Science, Industrial University of Isfahan, Iran, 5-8 September 2011: 3. (In Persian)
  48. Siame, J.R., Willey, W., & Morse, (1998). The response of maize–phaseolus intercropping to applied nitrogen on oxisols in Northern Zambia. Field Crops Research, 55(1-2), 73-81. https://doi.org/10.1016/S0378-4290(97)00063-4
  49. Vandermeer, H. (1989). The Ecology of Intercropping, Cambridge, University Press, 297 p.
  50. Willey, R.W. (1990). Resources use in intercropping systems. Journal of Agricultural Water Management, 17(1-3), 215-231. https://doi.org/10.1016/0378-3774(90)90069-B
  51. Yildirim, E., & Guvenc, (2005). Intercropping based on cauliflower: More productivity, profitable and highly sustainable. European Journal of Agronomy, 22(1), 11-18. https://doi.org/10.1016/j.eja.2003.11.003
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