Kamal J (2011) Impact of allelopathy of sunflower (Helianthus annuus L.) roots extract on the
physiology of wheat (Triticum aestivum L.). Afr J Biotechnol 10(65):14465–14477. https://doi.
org/10.5897/AJB11.988
Kato-Noguchi H, Ota K, Kujime H, Ogawa M (2013) Effects of momilactone on the protein
expression in Arabidopsis germination. Weed Biol Manag 13:19–23. https://doi.org/10.1111/
wbm.12005
Khush GS (1996) Genetic improvement of rice for weed management. In: Naylor R (ed) Herbicides
in Asian rice: transitions in weed management. Institute for Int. Studies, Stanford University,
and Manila (Philippines): Int. Rice Research Institute, Palo Alto, pp 201–207
Kohli RK, Singh HP, Batish DR (2001) Allelopathy in agroecosystems. Food Products Press,
New York. https://doi.org/10.1300/J144v04n02_01
Korres NE, Burgos NR, Duke SO, Fujii Y, SarpongAppiah K (2019) Allelopathy for sustainable
weed management. Weed Control, pp 166–190. https://doi.org/10.1201/9781315155913-9
Kupidłowska E, Gniazdowska A, Stepien J, Corbineau F, Vinel D, Skoczowski A, Janeczko A,
Bogatek R (2006) Impact of sunflower (Helianthus annuus L.) extracts upon reserve mobilization and energy metabolism in germinating mustard (Sinapis alba L.) seeds. J Chem Ecol
32:2569–2583
Latif S, Chiapusio G, Weston LA (2017) Chapter two – Allelopathy and the role in plant defense.
https://doi.org/10.1016/bs.abr.2016.12.001
Li ZH, Shen YX (2006) Allelopathic effects of different varieties of Medicago sativa weed
regrowth in winter. Acta Pratac Sin 15:36–42
Li F-R, Peng S-L, Chen B-M, Hou Y-P (2010a) A meta-analysis of the responses of woody and
herbaceous plants to elevated ultraviolet-B radiation. ActaOecologica 36(1):1–9. https://doi.org/
10.1016/j.actao.2009.09.002
Li ZH, Wang Q, Ruan X, Pan CD, Jiang JD (2010b) Phenolics and plant allelopathy. Molecules: A J
Synth Chem Natl Prod Chem 15(12):8933–8952. https://doi.org/10.3390/molecules15128933
Lin WX, He HQ, Chen XX, Xiong J, Song BQ, Liang YY, Liang KJ (2005) Use of ISSR molecular
marker approach to estimate genetic diversity in rice and barley allelopathy. In: Haper JDI,
An M, Wu H, Kent JH (eds) Proceedings of the fourth world congress on allelopathy
“Establishing the Scientific Base”. WaggaWagga, Australia, pp 168–174
Ma Y, Zhang M, Li Y, Shui J, Zhou Y (2014) Allelopathy of rice (Oryza sativa L.) root exudates
and its relations with Orobanche cumana Wallr. and Orobanche minor Sm. germination. J Plant
Interact 9(1):722–730. https://doi.org/10.1080/17429145.2014.912358
Maqbool N, Wahid A, Farooq M, Cheema ZA, Siddique KHM (2013) Allelopathy and abiotic
stress interaction in crop plants. In: Cheema ZA, Farooq M, Wahid A (eds) Allelopathy.
Springer, Berlin, pp 451–468. https://doi.org/10.1007/978-3-642-30595-5_19
Meiners SJ, Kong CH, Ladwig LM, Pisula NL, Lang KA (2012) Developing an ecological context
for allelopathy. Plant Ecol 213:1221–1227. https://doi.org/10.2307/23267444
Mirsky SB, Ryan MR, Teasdale JR, Curran WS, Reberg-Horton CS, Spargo JT, Wells MS, Keene
CL, Moyer JW (2013) Overcoming weed management challenges in cover crop-based organic
rotational no-till soybean production in the eastern United States. Weed Technol 27:193–203
Mohamadi N, Rajaie P (2009) Effects of aqueous eucalyptus (E. camadulensis Labill) extracts on
seed germination, seedling growth, and physiological responses of Phaseolus vulgaris and
Sorghum bicolor. Res J Biol Sci 4(12):1292–1296
Murphy SD (2001) The role of pollen allelopathy in weed ecology. Weed Technol 15(4):867–872
Mushtaq W, Siddiqui MB (2018) Allelopathy in Solanaceae plants. J Plant Protect Res 58(1):1–7.
https://doi.org/10.24425/119113
Mushtaq W, Siddiqui MB, Hakeem KR (2020) Allelopathy: potential for green agriculture,
Springer briefs in agriculture. Springer. https://doi.org/10.24425/119113
Narwal SS (2000) Allelopathy in ecological agriculture, allelopathy in ecological agriculture and
forestry. Springer, pp 11–32. https://doi.org/10.1007/978-94-011-4173-4
Nawaz A, Farooq M, Cheema SA, Cheema ZA (2014) Role of allelopathy in weed management.
Recent advances in weed management. Springer, New York, pp 39–61
114
H. Palanivel et al.
physiology of wheat (Triticum aestivum L.). Afr J Biotechnol 10(65):14465–14477. https://doi.
org/10.5897/AJB11.988
Kato-Noguchi H, Ota K, Kujime H, Ogawa M (2013) Effects of momilactone on the protein
expression in Arabidopsis germination. Weed Biol Manag 13:19–23. https://doi.org/10.1111/
wbm.12005
Khush GS (1996) Genetic improvement of rice for weed management. In: Naylor R (ed) Herbicides
in Asian rice: transitions in weed management. Institute for Int. Studies, Stanford University,
and Manila (Philippines): Int. Rice Research Institute, Palo Alto, pp 201–207
Kohli RK, Singh HP, Batish DR (2001) Allelopathy in agroecosystems. Food Products Press,
New York. https://doi.org/10.1300/J144v04n02_01
Korres NE, Burgos NR, Duke SO, Fujii Y, SarpongAppiah K (2019) Allelopathy for sustainable
weed management. Weed Control, pp 166–190. https://doi.org/10.1201/9781315155913-9
Kupidłowska E, Gniazdowska A, Stepien J, Corbineau F, Vinel D, Skoczowski A, Janeczko A,
Bogatek R (2006) Impact of sunflower (Helianthus annuus L.) extracts upon reserve mobilization and energy metabolism in germinating mustard (Sinapis alba L.) seeds. J Chem Ecol
32:2569–2583
Latif S, Chiapusio G, Weston LA (2017) Chapter two – Allelopathy and the role in plant defense.
https://doi.org/10.1016/bs.abr.2016.12.001
Li ZH, Shen YX (2006) Allelopathic effects of different varieties of Medicago sativa weed
regrowth in winter. Acta Pratac Sin 15:36–42
Li F-R, Peng S-L, Chen B-M, Hou Y-P (2010a) A meta-analysis of the responses of woody and
herbaceous plants to elevated ultraviolet-B radiation. ActaOecologica 36(1):1–9. https://doi.org/
10.1016/j.actao.2009.09.002
Li ZH, Wang Q, Ruan X, Pan CD, Jiang JD (2010b) Phenolics and plant allelopathy. Molecules: A J
Synth Chem Natl Prod Chem 15(12):8933–8952. https://doi.org/10.3390/molecules15128933
Lin WX, He HQ, Chen XX, Xiong J, Song BQ, Liang YY, Liang KJ (2005) Use of ISSR molecular
marker approach to estimate genetic diversity in rice and barley allelopathy. In: Haper JDI,
An M, Wu H, Kent JH (eds) Proceedings of the fourth world congress on allelopathy
“Establishing the Scientific Base”. WaggaWagga, Australia, pp 168–174
Ma Y, Zhang M, Li Y, Shui J, Zhou Y (2014) Allelopathy of rice (Oryza sativa L.) root exudates
and its relations with Orobanche cumana Wallr. and Orobanche minor Sm. germination. J Plant
Interact 9(1):722–730. https://doi.org/10.1080/17429145.2014.912358
Maqbool N, Wahid A, Farooq M, Cheema ZA, Siddique KHM (2013) Allelopathy and abiotic
stress interaction in crop plants. In: Cheema ZA, Farooq M, Wahid A (eds) Allelopathy.
Springer, Berlin, pp 451–468. https://doi.org/10.1007/978-3-642-30595-5_19
Meiners SJ, Kong CH, Ladwig LM, Pisula NL, Lang KA (2012) Developing an ecological context
for allelopathy. Plant Ecol 213:1221–1227. https://doi.org/10.2307/23267444
Mirsky SB, Ryan MR, Teasdale JR, Curran WS, Reberg-Horton CS, Spargo JT, Wells MS, Keene
CL, Moyer JW (2013) Overcoming weed management challenges in cover crop-based organic
rotational no-till soybean production in the eastern United States. Weed Technol 27:193–203
Mohamadi N, Rajaie P (2009) Effects of aqueous eucalyptus (E. camadulensis Labill) extracts on
seed germination, seedling growth, and physiological responses of Phaseolus vulgaris and
Sorghum bicolor. Res J Biol Sci 4(12):1292–1296
Murphy SD (2001) The role of pollen allelopathy in weed ecology. Weed Technol 15(4):867–872
Mushtaq W, Siddiqui MB (2018) Allelopathy in Solanaceae plants. J Plant Protect Res 58(1):1–7.
https://doi.org/10.24425/119113
Mushtaq W, Siddiqui MB, Hakeem KR (2020) Allelopathy: potential for green agriculture,
Springer briefs in agriculture. Springer. https://doi.org/10.24425/119113
Narwal SS (2000) Allelopathy in ecological agriculture, allelopathy in ecological agriculture and
forestry. Springer, pp 11–32. https://doi.org/10.1007/978-94-011-4173-4
Nawaz A, Farooq M, Cheema SA, Cheema ZA (2014) Role of allelopathy in weed management.
Recent advances in weed management. Springer, New York, pp 39–61
114
H. Palanivel et al.
