Assessment of seed to seed allelopathic potential of Corn (Zea mays L.) on seed and seedling growth of some volunteer species

Paper Details

Research Paper 01/01/2013
Views (626)
current_issue_feature_image
publication_file

Assessment of seed to seed allelopathic potential of Corn (Zea mays L.) on seed and seedling growth of some volunteer species

Sirous Hassannejad, Soheila Porheidar Ghafarbi, Ramin Lotfi
Int. J. Biosci. 3(1), 121-127, January 2013.
Copyright Statement: Copyright 2013; The Author(s).
License: CC BY-NC 4.0

Abstract

The experiment was carried out to investigate the effects of interaction seed to seed between corn (Zea mays L.) with some of volunteer species like sainfoin (Onobrychis sativa var. subinermis.), black cumin (Nigella sativa L.), bitter vetch (Vicia ervilia (L.) Willd.), proso (Panicum miliaceum L.) and jimpson-weed datura (Datura stramonium L.) on seed and seedling growth factors. Results showed that O. sativa had inhibitory effect on Z. mays seedling growth, as shoot and root length and fresh weight of Z. mays by beside of this specie was significantly inhibited. In contrast, V. ervilia and P. miliaceum had stimulatory effect on seedling growth factors of Z. mays, as shoot and root length and fresh weight of Z. mays in the presence of these species was significantly increased. Seedling of P. miliaceum by beside of Z. mays had more germination percentage, shoot fresh weight and root dry weight in comparison with control. Less germination rate of Z. mays by beside of N. sativa was caused the reducing of shoot and root fresh and dry weight of this specie. Our results suggested that the seedling growth is suitable for potential testing of the allelopathic effect of the studied seed to seed interaction under laboratory conditions. In addition, the choice of vigorous seeds can be useful to alleviation of possible allelopathic risks.

Aliloo AA, Shahabivand S, Farjam L, Heravi S. 2012. Allelopathic effects of Pine Needle extracts on germination and seedling growth of Ryegrass and Kentucky bluegrass. Advances in Environmental Biology, 6, 2513-2518.

Caton BP, Mortimer AM, Hill TC, Gibson JE, Fisher AJ. 1999. Weed morphology effects on competitiveness for light in direct-seeded rice. Proc. 17th Asian-Pacific, weed science society conference, Bangkok, 1, 116-120.

Einhellig FA. 2002. The physiology of allelochemical action: clues and views. In Allelopathy: From Molecules to Ecosystems (Eds., Reigosa, M.J. & Pedrol, N.). Science Publishers, Enfield, New Hampshire, p. 1-23..

El-Khatib AA. 1997. Does allelopathy involves in the association pattern of Trifolium resupinatu. Biologia Plantarum 40, 425-431.

Ellis RH, Roberts EH. 1981. The quantification of ageing and survival in orthodoxes seeds. Seed Sci. and Technol. 9, 373-409.

Fujii Y, Furukawa M, Hayakawa Y, Sugahara K, Shibuya T. 1991. Survey of Japanese medicinal plants for the detection of allelopathic properties. Weed Research (Tokyo) 36, 36-42.

Gill S, Anoliefo O. Iduoze U. 2000. Allelopathic effects of aqueous extract from siamm weed on the growth of cowpea. Department Botany, University of Botany, Nigeria.

Hussain S, Siddiqui S, Khalid S, Jamal A, Qayyum A, Ahmad Z. 2007. Allelopathic potential of Senna (Cassia angustifolia Vahl.) on germination and seedling characters of some major cereal crops and their associated grassy weeds. Pakistan Journal of Botany 39, 1145-1153.

Iman A, Wahab S, Rastan M, Halim M. 2006. Allelopathic effect of sweet corn and vegetable soybean extracts at two growth stages on germination and seedling growth of corn and soybean varieties. Journal of Agronomy 5, 62-68.

Kocaçalışkan İ. 2006. Allelopati, Bizim Büro Basım Yayın, Ankara.

Kohil KK, Rani D. 1994. Parthenium hysterophorus–a review. Research Bulletin (Sci.) Panjab University. 44, 105-149.

Nazir T, Uniyal AK, Todari NP. 2007. Allelopathic behaviour of three medicinal plant species on traditional agriculture crops of Garhwal Himalaya, India. Agroforestry System 69, 183-187.

Perry, D.A. 1977. A vigour test for seed of barley (Hordeum vulgare L.), based on measurement of plumule growth. Seed Sci. and Technol. 5, 709-719.

Phetchawee S, Vibulsukh N, Theppoolpon M, Masarugson W. 1985. Long term effect of mulching with fertilizer under corn-legumes intercropping on crop yield and improvement of soil chemical and physical properties. In: Thailand National Corn and Sorghum Program 1985 AnnualReport. Department of Agriculture, Kasetsart University and CIMMYT pp: 204-212.

Quasem JR. 1995. The allelopathic effect of three Amaranthus spp. (Pigweeds) on wheat (Triticum durum). Weed Research 35, 41-49.

Rice EL. 1984. Allelopathy, 2nd Edn. Academic Press, Orlando, Florida. Science Publishers, Enfield, New Hampshire.

Rice EL. 1995. Biological control of weeds and plant diseases. Univ. Oklahoma Press, Norman.

Tanveer A, Tahir M, Nadeem MA, Younis K, Aziz A, Yaseen M. 2008 Allelopathic effects of Xanthium strumarium L. on seed germination and seedling growth of crops. Allelopathy Journal 21, 317-327.

Willis RJ. 1994. Terminology and trends in allelopathy. Allelopathy Journal 1, 6-28.

Zeng RS, Luo SM, Shi YH. 2001. Physiological and biochemical mechanism of allelopathy of secalonic acid on higher plants. Agronomy Journal 93, 72-79.

Related Articles

Unravelling the complex interactions between microplastics and PPCPs: The environment and health implications

Roshy Ann Mathews, S. Rajakumar, N. Aishwarya, M. Prashanthi Devi, Int. J. Biosci. 27(5), 40-72, November 2025.

Nutraceutical value of Gigantochloa atter and Bambusa blumeana

Eddilyn B. Plaza, Gemma A. Gruyal, Int. J. Biosci. 27(5), 34-39, November 2025.

Absence of climatic factors influence on the prevalence of COVID-19 in Benin: A spatiotemporal analysis

Houndonougbo Antoine, Lagaki Koudousse, Dramane Gado, Chogolou Ruth, Sanoussi Falilath, Kissira Islamiath, Sohou Stephane, Oloukou Freedy, Senou Elie, Yadouleton Anges, Int. J. Biosci. 27(5), 16-23, November 2025.

Isopulegol mitigates high glucose-induced oxidative stress in HK-2 cells via activation of the Nrf2/ARE pathway

Mathew Maria Caroline Rebellow, Ravishankar Sarumathi, Chandrasekaran Sankaranarayanan, Int. J. Biosci. 27(5), 6-15, November 2025.

Exploring Ctenolepis garcinii as a natural anti-diabetic agent: A phytochemical, biochemical and molecular docking approach

A. M. Thafshila Aafrin, R. Anuradha, Int. J. Biosci. 27(4), 208-214, October 2025.

Assessment of the population dynamics of microorganisms in mountainous brown soils of Gobustan in relation to soil-climate conditions

Zohra N. Mammadzada, Basti N. Alyeva, Sevinch J. Garayeva, Nizami R. Namazov, Int. J. Biosci. 27(4), 203-207, October 2025.