Chenopodium album L. and Chenopodium murale L. are two principal weed species, causing substantial damage to numerous winter crops across the globe. For sustainable and resource-efficient management strategies, it is important to understand weeds’ germination behaviour under diverse conditions. For the germination investigations, seeds of both species were incubated for 15 days under different temperatures (10−30 °C), salinity (0−260 mM NaCl), osmotic stress (0−1 MPa), pH (4−10), and heating magnitudes (50−200 °C). The results indicate that the germination rates of C. album and C. murale were 54−95% and 63−97%, respectively, under a temperature range of 10 to 30 °C. The salinity levels for a 50% reduction in the maximum germination (GR50) for C. album and C. murale were 139.9 and 146.3 mM NaCl, respectively. Regarding osmotic stress levels, the GR50 values for C. album and C. murale were 0.44 and 0.43 MPa, respectively. The two species showed >95% germination with exposure to an initial temperature of 75 °C for 5 min; however, seeds exposed to 100 °C and higher temperatures did not show any germination. Furthermore, a drastic reduction in germination was observed when the pH was less than 6.0 and greater than 8.0. The study generated information on the germination biology of two major weed species under diverse ecological scenarios, which may be useful in developing efficient weed management tactics for similar species in future agri-food systems.
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http://dx.doi.org/10.3390/biology11111599 | DOI Listing |
Biology (Basel)
November 2022
Eastern Shore Agricultural Research and Extension Center, Virginia Tech, Painter, VA 23420, USA.
Chenopodium album L. and Chenopodium murale L. are two principal weed species, causing substantial damage to numerous winter crops across the globe.
View Article and Find Full Text PDFBraz J Biol
September 2022
King Khalid University, College of Science, Department of Biology, Abha, Saudi Arabia.
The present study was carried out in Hayat Abad Industrial Estate located in Peshawar to assess the levels of cadmium (Cd) that were present in the soil as well as the plant parts (Roots and shoots). To evaluate the phytoremediation potential of the plants different factors i.e.
View Article and Find Full Text PDFEnviron Sci Pollut Res Int
February 2019
The Centre for Crop Science, Queensland Alliance for Agriculture and Food Innovation, The University of Queensland, Gatton, QLD, 4343, Australia.
Chenopodium album and C. murale are cosmopolitan, annual weed species of notable economic importance. Their unique biological features, including high reproductive capacity, seed dormancy, high persistence in the soil seed bank, the ability to germinate and grow under a wide range of environmental conditions and abiotic stress tolerance, help these species to infest diverse cropping systems.
View Article and Find Full Text PDFInt Arch Allergy Immunol
June 2012
Allergology Service, University Hospital Lozano Blesa, Zaragoza, Spain.
Background: IgE-mediated sensitization to the Chenopodiaceae/Amaranthaceae families is a cause of allergic symptoms in arid areas. Salsola kali and Chenopodium album are considered the main species responsible; however, there is a discrepancy between the pollination period of these two plants and clinical symptoms. The objectives of this study were to identify new Chenopodiaceae/Amaranthaceae members with sensitization capacity and to correlate symptoms, pollen counts and degree of flowering of different species.
View Article and Find Full Text PDFEnviron Sci Pollut Res Int
January 2012
Department of Botany, St. John's College, Agra, UP, India.
Introduction: The effect of the glass industry on urban soil metal characterization was assessed in the area of Firozabad, India. A comprehensive profile of metal contamination was obtained in five zones each containing five specific sites.
Findings: Zn, Cd, and As showed a greater accumulation, whereas accumulation of Ni and Cu was high in limited samples.
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