1. Alam, S.M., Ala, S.A., Azmi, A.R., Khan, M.A., and Ansari, R. 2001. Allelopathy and its role in agriculture. Journal of Biological Science, 1: 308-315. [
DOI:10.3923/jbs.2001.308.315]
2. Alipoor, Sh., Filizadeh, Y., and Montazeri, M. 2010. Evaluation allelopathic effects of Artemisia annua L. on weed plant (Zea mays). Weed Research Journal, 2(1): 69-83. [In Persian with English Summary].
3. Al-Rowaily, S.L., El-Bana, M.I., Al-Bakre, D.A., Assaeed, A.M., Hegazy, A.K., and Ali, M.B. 2015. Effects of open grazing and livestock exclusion on floristic composition and diversity in natural ecosystem of Western Saudi Arabia. Saudi Journal of Biological Sciences, 22(4): 430-437. [
DOI:10.1016/j.sjbs.2015.04.012] [
PMID] [
PMCID]
4. Arnon, D.I. 1949. Copper enzymes in isolated chloroplasts. Polyphenol oxidase in Beta vulgaris plant. Plant Physiology, 24(1): 1-5. [
DOI:10.1104/pp.24.1.1] [
PMID] [
PMCID]
5. Bagheri, R., and Mohammadi, S. 2011. Allelopathic effects of Artemisia sieberi Besser on three important species (Agropyron desertorum, Agropyron elongatum and Atriplex canescens) in range improvement. Iran Journal of Range and Desert Research, 17: 538-549. [In Persian with English Summary].
6. Bajji, M., Kinet, J.M., and Lutts, S. 2002.Osmotic and ionic effects of NaCl on germination, early seedling growth, and ion content of Atriplex halimus (Chenopodiaceae). Canadian Journal of Botany, 80(3): 297-304. [
DOI:10.1139/b02-008]
7. Bertin, C., Yang, X., and Weston, L.A. 2003. The role of root exudates and allelochemicals in the rhizosphere. Plant and Soil, 256(1): 67-83. [
DOI:10.1023/A:1026290508166]
8. Bhawmik, P.C., and Doll, J.D. 1983. Growth analysis of corn and soybean response to allelopathic effects of weed residues at various temperatures and photosynthetic photon flux densities. Journal of Chemical Ecology, 9(8): 1263-1280. [
DOI:10.1007/BF00982228] [
PMID]
9. Bouchikh-Boucif, Y., Labani, A., Bebabdeli, K.H., and Bouhelouane, S. 2014. Allelopathic effects of shoot and root extracts from three alien and native Chenopodiaceae species on lettuce seed germination. Ecologia Balakanica, 6(2): 51-55.
10. Chillo, V., Ojeda, R.A., Anand, M., and Reynolds, J.F. 2015. A novel approach to assess livestock management effects on biodiversity of dry lands. Ecological Indicators, 50: 69-78. [
DOI:10.1016/j.ecolind.2014.10.009]
11. Chon, S.U., and Kim, J.D. 2002. Biological activity and quantification of suspected allelochemicals from Alfalfa plant parts. Journal of Agronomy and Crop Science, 188(4): 281-285. [
DOI:10.1046/j.1439-037X.2002.00574.x]
12. Chon, S.U., Choi, S.K., Jang, H.G., Pyo, B.S., and Kim, S.M. 2002. Effects of alfalfa leaf extracts and phenolic allelochemicals on early seedling growth and root morphology of alfalfa and barnyard grass. Crop Protection, 21: 1077-1082. [
DOI:10.1016/S0261-2194(02)00092-3]
13. Ghaderi Vangah, B., Safaeeian, N., and Sadeghi, S.H.R. 2008. The effect of alfalfa (Medicago sativa) sowing on some vegetation characteristics of natural rangelands. Pajouhesh and Sazandegi, 79: 166-172. [In Persian with English Summary].
14. Gholami, P., Ghorbani, J., and Ghaderi, Sh. 2011. Allelopathic effects of Artemisia aucheri on seed germination and Dactylis glomerata properties of Festuca arundinacea Schreb. Plant Eco-physiology, 9: 41-52. [In Persian with English Summary].
15. Ghorbanli, M.L., Bakhshi Khanegi, G.R., and Shojaie, A.A. 2008. Survey of allelopathic potential of Artemisia siberi beeser on Avena lodoviciana seedling and Amaranthus retroflexus. Pajouhesh and Sazandegi, 129-134. [In Persian with English Summary].
16. Hejazi, A. 2001. Allelopathy (Autotoxicity and Hetrotoxicity. University of Tehran press, 181p. [In Persian].
17. Hoffman, M.L., Weston, L.A., Shyder, J.C., and Regnier, E.E. 1996. Separating the effects of sorghum (Sorghum bicolar) and rye (Secale cereal) root and shoot residues on weed development. Weed Science, 44: 402-407.
18. Iman, A., and Zakaria, W. 2006. Allelopathic effect of sweet corn and vegetable soybean extracts at germination and seedling growth of corn and soybean varieties. Journal of Agronomy, 25: 62-68.
19. Ismail, B.S., and Chong, T.V. 2002. Effect of aqueous extract and decomposition of Mikania micrantha on selected agronomic crops. Weed Biology Management Journal, 2: 31-38. [
DOI:10.1046/j.1445-6664.2002.00045.x]
20. Jangali, K., Salehi, P., and Jafari, A. 2012. The investigation of the genetic variability for yield and morphological and seedling characteristics in of Bromegrass populations. Plant and Ecosystem, 8(1): 14-29. [In Persian with English Summary].
21. Kazerooni Monfared, S., Tokasi, M., and Banayan Awal, M. 2013. Study of allelopathic effects of berseem clover (Trifolium alexandrium) shoot aqueous extract on germination and initial seedling growth of some weed species. Journal of Plant Protection. 27: 509-512. [In Persian with English Summary].
22. Koloren, Q. 2007. Allelopathic effects of Medicago sativa L. and Vicia cracca L. leaf and root extracts on weeds. Pakistan Journal of Biological Science, 10(10): 1639-1642. [
DOI:10.3923/pjbs.2007.1639.1642]
23. Lydon, J., Rteasdele, J., and Chen, P.K. 1997. Allelopathic activity of annual wormwood (Artemisia annua) and the role artemisinin. Weed Science, 45: 807-811.
24. Narwal, S. 2004. Allelopathy in crop production. Jodhpur, Scientific Publishers. 303 p.
25. Naseem, M., Aslam, M., Asnar, M., and Azhar, M. 2009. Allelopathic effects of sunflower water extract on weed control and wheat productivity. Pakistan Journal of Weed Science Research, 15: 107-116.
26. Purvis, C.E., Jessop, R.S., and Lovea, J.V. 1985. Selective regulation of germination and growth of annual weeds by crop residues. Weed Research, 25(6): 415-421. [
DOI:10.1111/j.1365-3180.1985.tb00664.x]
27. Qasem, J.R. 2001. Allelopathic potential of white top and Syrian sage on vegetable crops. Journal of Agronomy, 93: 64-71. [
DOI:10.2134/agronj2001.93164x]
28. Rice, E.L. 1995. Biological control of weeds and plant diseases. University of Oklahoma press, Norman and London. 439 p.
29. Ricki Maryshany, A. 2015. Effects of Trifolium alexandrium, Artemisia sieberi and fertilizer on agree extract on germination and morphological properties of Peganum harmala and Prosopis cineraria. Range Management M.Sc. Thesis. University of Zabol, 86 P. [In Persian with English Summary].
30. Ryan, J., Estefan, G., and Rashid, A. 2001. Soil and Plant Analysis Laboratory Manual, International Centre for Agricultural Research in the Dry Areas (ICARDA). Aleppo and National Agricultural Research Centre (NARC), Islamabad, Pakistan. 172 p.
31. Samedani, B., and Baghestani, M.A. 2005. Comparison of allelopathic activity of different Artemisia species on seed germination rate and seedling growth of Avena ludoviciana. Pajouhesh and Sazandegi, 68: 69–74. [In Persian with English Summary].
32. Shirmardi, H.A., Ghaderi, Sh., Gholami, P., and Amozegar, L. 2013.The allelopathic effect of Artemisia aucheri Boiss on some seed germination properties of Bromus tomentellus Boiss and Bromus inermis Leyss. Journal of Plant and Ecosystem Conservation, 1(2): 71-80. [In Persian with English Summary].
33. Tripathi, S.A., and Kori, D.C. 1999. Allelopathic evolution of Tectona grandis leaf, root and soil aqua extracts on soybean. Indian Journal of Forestry, 22: 366-374.
34. Yu, Q.J., and Matsui, Y. 1997. Effect of root exudates of cucumber (Cucumis sativus) and allelochemicales on ion uptake by cucumber seedlings. Journal of Chemical Ecology, 23: 817-827. [
DOI:10.1023/B:JOEC.0000006413.98507.55]