Hostname: page-component-cd9895bd7-dk4vv Total loading time: 0 Render date: 2024-12-29T06:03:12.177Z Has data issue: false hasContentIssue false

Environmental Factors Affecting Seed Germination and Seedling Emergence of Foxtail Sophora (Sophora alopecuroides)

Published online by Cambridge University Press:  05 September 2017

Iraj Nosratti*
Affiliation:
Assistant Professor, Assistant Professor, and Graduate Student, Department of Agronomy and Plant Breeding, Faculty of Science and Agricultural Engineering, Razi University, Kermanshah, Iran
Sahar Amiri
Affiliation:
Assistant Professor, Assistant Professor, and Graduate Student, Department of Agronomy and Plant Breeding, Faculty of Science and Agricultural Engineering, Razi University, Kermanshah, Iran
Alireza Bagheri
Affiliation:
Assistant Professor, Assistant Professor, and Graduate Student, Department of Agronomy and Plant Breeding, Faculty of Science and Agricultural Engineering, Razi University, Kermanshah, Iran
Bhagirath Singh Chauhan
Affiliation:
Associate Professor, Centre for Plant Science, Queensland Alliance for Agriculture and Food Innovation (QAAFI), University of Queensland, Gatton, Queensland, Australia
*
*Corresponding author’s E-mail: Irajnosratti@gmail.com

Abstract

Foxtail sophora is a widely distributed problematic weed in western Iranian dryland farming systems. Little information is available on seed germination and seedling emergence of this weed species in response to environmental and agronomic factors. This study was conducted to address this knowledge gap. Maximum seed germination (80%) occurred at 25 C and decreased at lower temperatures (<1% at 5 C) or under fluctuating temperature regimes. Light and pH did not have any substantial effect on seed germination. Foxtail sophora was tolerant to osmotic stress and moderately tolerant to sodium chloride. It was tolerant to salinity and drought stress during germination, which suggests that the population of this weed may increase in western farmlands of Iran. No seedlings emerged when seeds were buried at depths greater than 6 cm, which indicates that minimum- and no-till systems would increase seedling emergence of this species. Therefore, using sweep cultivators would be beneficial in management of foxtail sophora seedlings in the drylands of west of Iran.

Type
Weed Biology and Ecology
Copyright
© Weed Science Society of America, 2017 

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

Footnotes

Associate Editor for this paper: Steven S. Seefeldt, USDA-ARS

References

Literature Cited

Ahmadi, H (1999). Applied Geomorphology (Wind Erosion). Tehran: University of Tehran Press. 258 pGoogle Scholar
Baskin, CC, Baskin, JM (2014). Seeds: Ecology, Biogeography, and Evolution of Dormancy and Germination. San Diego: Elsevier/Academic. 1586 pGoogle Scholar
Baskin, JM, Baskin, CC (1988) Role of temperature in regulating the timing of germination in Portulaca oleracea . Can J Bot 66:563567 CrossRefGoogle Scholar
Batlla, D, Benech-Arnold, RL (2006) The role of fluctuations in soil water content on the regulation of dormancy changes in buried seeds of Polygonum aviculare L. Seed Sci Res 16:4759 Google Scholar
Boyd, NS, Hughes, A (2011) Germination and emergence characteristics of spreading dogbane (Apocynum androsaemifolium). Weed Sci 59:533537 Google Scholar
Chauhan, BS, Gill, G, Preston, C (2006a) Factors affecting seed germination of annual sowthistle (Sonchus oleraceus) in southern Australia. Weed Sci 54:854860 CrossRefGoogle Scholar
Chauhan, BS, Gill, G, Preston, C (2006b) Factors affecting turnipweed (Rapistrum rugosum) seed germination in southern Australia. Weed Sci 54:10321036 Google Scholar
Chauhan, BS, Gill, G, Preston, C (2006c) Seedling recruitment pattern and depth of recruitment of 10 weed species in minimum tillage and no-till seeding systems. Weed Sci 54:658668 CrossRefGoogle Scholar
Chauhan, BS, Johnson, DE (2008) Seed germination and seedling emergence of giant sensitiveplant (Mimosa invisa). Weed Sci 56:244248 Google Scholar
Crisraudo, A, Gresta, F, Luciani, F, Resticcia, A (2007) Effects of after harvest period and environmental factors on seed dormancy of Amaranthus species. Weed Res 47:327334 Google Scholar
De Cauwer, B, Devos, R, Claerhout, S, Bulcke, R, Reheul, D (2014) Seed dormancy, germination, emergence and seed longevity in Galinsoga parviflora and G. quadriradiata . Weed Res 54:3847 Google Scholar
Del Monte, JP, Dorado, J (2011) Effects of light conditions and after-ripening time on seed dormancy loss of Bromus diandrus Roth. Weed Res 51:581590 Google Scholar
Ebrahimi, E, Eslami, SV (2012) Effect of environmental factors on seed germination and seedling emergence of invasive Ceratocarpus arenarius . Weed Res 52:5059 Google Scholar
Egley, G, Chandler, J (1978) Germination and viability of weed seeds after 2.5 years in a 50-year buried seed study. Weed Sci 5:230239 CrossRefGoogle Scholar
Eslami, S (2011) Comparative germination and emergence ecology of two populations of common lambsquarters (Chenopodium album) from Iran and Denmark. Weed Sci 59:9097 CrossRefGoogle Scholar
Fenner, M, Thompson, K (2005) The Ecology of Seeds (2nd edn., Cambridge: Cambridge University Press. 250 pGoogle Scholar
Finch‐Savage, WE, Leubner‐Metzger, G (2006) Seed dormancy and the control of germination. New Phytol 171:501523 Google Scholar
Gutterman, Y, Gendler, T (2005) Annual rhythm of germination of seeds of Mesembryanthemum nodiflorum 32 years after collection. Seed Sci Res 15:249253 Google Scholar
Jain, R, Singh, M (1989) Factors affecting goatweed (Scoparia dulcis) seed germination. Weed Sci 37:766770 Google Scholar
Koger, CH, Reddy, KN, Poston, DH (2004) Factors affecting seed germination, seedling emergence, and survival of texasweed (Caperonia palustris). Weed Sci 52:989995 Google Scholar
Lee, J, Chauhan, BS, Johnson, DE (2011) Germination of fresh horse purslane (Trianthema portulacastrum) seeds in response to different environmental factors. Weed Sci 59:495499 CrossRefGoogle Scholar
Malik, MS, Norsworthy, JK, Riley, MB, Bridges, W (2010) Temperature and light requirements for wild radish (Raphanus raphanistrum) germination over a 12-month period following maturation. Weed Sci 58:136140 CrossRefGoogle Scholar
Michel, BE (1983) Evaluation of the water potentials of solutions of polyethylene glycol 8000 both in the absence and presence of other solutes. Plant Physiol 72:6670 Google Scholar
Mir Kamali, H (1995) Guide of Weed Control in Wheat (Triticum aestivum L.) Fields in Iran (2nd edn.). Karaj, Iran: Agricultural Education Publishing. 336 pGoogle Scholar
Norsworthy, JK, Oliveira, MJ (2006) Sicklepod (Senna obtusifolia) germination and emergence as affected by environmental factors and seeding depth. Weed Sci 54:903909 CrossRefGoogle Scholar
Nosratti, I, Alizadeh, H, Rahimian, H (2011) Effect of some adjuvants on overcoming antagonistic effects of spray carrier water quality on glyphosate and herbicide mixture 2,4-D+MCPA efficacy on licorice (Glycyrrhiza glabra). Iranian J Weed Sci 7:4960 Google Scholar
Reddy, KN, Singh, M (1992) Germination and emergence of hairy beggarticks (Bidens pilosa). Weed Sci 40:195199 Google Scholar
Sabila, MH, Grey, TL, Webster, TM, Vencill, WK, Shilling, DG (2012) Evaluation of factors that influence Benghal dayflower (Commelina benghalensis) seed germination and emergence. Weed Sci 60:7580 CrossRefGoogle Scholar
Schutte, BJ, Tomasek, BJ, Davis, AS (2014) An investigation to enhance understanding of the stimulation of weed seedling emergence by soil disturbance. Weed Res 54:112 Google Scholar
Sharma, MP, Born, WHV (1978) The biology of Canadian weeds. 27. Avena fatua L. Can J Plant Sci 58:141157 Google Scholar
Shaw, DR, Mack, RE, Smith, CA (1991) Redvine (Brunnichia ovata) germination and emergence. Weed Sci 39:3336 CrossRefGoogle Scholar
Silva, C, Parreira, M, Alves, P, Pavani, M (2009) Aspectos germinativos de capim-camalote (Rottboellia cochinchinensis). Planta Daninha 12:273281 CrossRefGoogle Scholar
Singh, M, Ramirez, AH, Sharma, SD, Jhala, AJ (2012) Factors affecting the germination of tall morningglory (Ipomoea purpurea). Weed Sci 60:6468 Google Scholar
Vaisi, M, Minbashi, MM, Sabeti, P, Mohammadi, AR (2013) Evaluation the community structure, species variation, and distribution map of weeds of rainfed wheat (Triticum aestivum L.) of Kermanshah. J Weed Ecol 1:5568 Google Scholar
Wei, DD, Cheng, D, Liu, WB, Liu, T, Yang, XH, Zheng, YH (2015) Adequate potassium application enhances salt tolerance of moderate-halophyte Sophora alopecuroides . Plant Soil Environ 61:364370 Google Scholar
Wu, X, Li, J, Xu, H, Dong, L (2015) Factors affecting seed germination and seedling emergence of Asia minor bluegrass (Polypogon fugax). Weed Sci 63:440447 CrossRefGoogle Scholar
Zhou, J, Deckard, EL, Messersmith, CG (2005) Factors affecting eastern black nightshade (Solanum ptycanthum) seed germination. Weed Sci 53:651656 CrossRefGoogle Scholar