Galinsoga parviflora Response to Different Application Rates of the Herbicide Chwastox Turbo 340 SL in Spring Barley
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References
Abbas, N., Tanveer, A., Ahmad, T., & Amin, M. (2018). Use of adjuvants to optimize the activity of two broad-spectrum herbicides for weed control in wheat. Planta Daninha, 36, Article 36. https://doi.org/10.1590/S0100-83582018360100126
Ali, S., Zameer, S., & Yaqoob, M. (2017). Ethnobotanical, phytochemical and pharmacological properties of Galinsoga parviflora (Asteraceae): A review. Tropical Journal of Pharmaceutical Research, 16(12), 3023–3033.
Andersson, L. (1996). Characteristics of seeds and seedlings from weeds treated with sublethal herbicide doses. Weed Research, 36(1), 55–64. https://doi.org/10.1111/j.1365- 3180.1996.tb01801.x
Biczak, R., & Pawłowska, B. (2016). Effect of the quaternary ammonium salts, tetraethylammonium halide on Rumex acetosa L., Chenopodium album L. and Galinsoga parviflora Cav.: Inhibition of growth and changes in assimilation pigments content in plants. Folia Pomeranae Universitatis Technologiae Stetinensis – Agricultura, Alimentaria, Piscaria et Zootechnica, 39(3), 35–52. https://doi.org/10.21005/AAPZ2016.39.3.03
Carrithers, V. F., Roché, C. T., Gaiser, D. R., Horton, D., Duncan, C. L., & Scherer, P. N. (2004). Herbicides reduce seed production in reproductive-stage yellow starthistle (Centaurea solstitialis). Weed Technology, 18, 1065–1071. https://doi.org/10.1614/WT-03-240R
Clark, B., & Bullock, S. (2007). Shedding light on plant competition: Modelling the influence of plant morphology on light capture (and vice versa). Journal of Theoretical Biology, 244(2), 208–217. https://doi.org/10.1016/j.jtbi.2006.07.032
Damalas, C. A. (2008). Distribution, biology, and agricultural importance of Galinsoga parviflora (Asteraceae). Weed Biology and Management, 3, 147–153. https://doi.org/10.1111/j.1445-6664.2008.00290.x
Domaradzki, K., & Kieloch, R. (2007). Działanie różnych dawek herbicydów z grupy regulatorów wzrostu i pochodnych sulfonylomocznika na Galium aparine i Stellaria media w zależności od fazy rozwojowej [The influence of various doses of growth regulators herbicides and sulfonylurea herbicides on Galium aparine and Stellaria media depending on growth stage]. Annales Universitatis Mariae Curie-Skłodowska, Sectio E, Agricultura, 62(2), 1–9.
Gange, A. C., Brown, V. K., & Farmer, L. M. (1992). Effects of pesticides on the germination of weed seeds: Implications for manipulative experiments. Journal of Applied Ecology, 29(2), 303–310. https://doi.org/10.2307/2404499
Głowacka, A. (2011). Dominant weeds in maize (Zea mays L.) cultivation and their competitiveness under conditions of various methods of weed control. Acta Agrobotanica, 64(2), 119–126. https://doi.org/10.5586/aa.2011.023
Haliniarz, M. (2006). Wybrane cechy biologiczne stulichy psiej [Descurainia sophia (L.) Webb ex Prantl] [Selected biological traits of flixweed Descurainia Sophia (L.) Webb ex Prantl]. Acta Agrophysica, 8(2), 357–366.
Haliniarz, M. (2019). Reakcja wybranych agrofitocenoz na zróżnicowane dawki substancji biologicznie czynnych herbicydów [Reaction of selected agrophytocoenoses to different doses of biologically active substances of herbicides]. Uniwersytet Przyrodniczy w Lublinie.
Harper, J. L., & Ogden, J. (1970). The reproductive strategy of higher plants. The concept of strategy with special reference to Senecio vulgaris L. Journal of Ecology, 58, 681–698. https://doi.org/10.2307/2258529
Hübner, R., Fykse, H., Hurle, K., & Klemsdal, S. S. (2003). Morphological differences, molecular characterization, and herbicide sensitivity of catchweed bedstraw (Galium aparine) populations. Weed Science, 51, 214–225. https://doi.org/fdvhj6
Idziak, R., & Woźnica, Z. (2013). Effect of nitrogen fertilizers and oil adjuvants on nicosulfuron efficacy. Turkish Journal of Field Crops, 18, 174–178.
Jastrzębski, W. P., Jastrzębska, M., Szewczak, M., & Ciućkowska-Sadlak, B. (2015). Plenność Galium aparine L. w łanach czterech roślin uprawnych [Fruit production of Galium aparine L. in canopies of four field crops]. Fragmenta Agronomica, 32(2), 29–38.
Kaczmarek, S., & Matysiak, K. (2015). Application of reduced doses of chlorsulfuron in semi- dwarf and full-height cultivars of winter triticale. Journal of Plant Protection Research, 55(1), 8–15. https://doi.org/10.1515/jppr-2015-0002
Kieloch, R., & Domaradzki, K. (2011). The role of the growth stage of weeds in their response to reduced herbicide doses. Acta Agrobotanica, 64(4), 259–266. https://doi.org/10.5586/aa.2011.068
Kieloch, R., & Kucharski, M. (2018). Ocena możliwości ograniczenia dawki tribenuronu metylu w zależności od wybranych czynników abiotycznych i fazy rozwojowej chwastów [Evaluation of the possibility of tribenuron methyl dose limitation in relations to selected abiotic factors and growth stage of weeds]. Progress in Plant Protection, 55(4), 461–465. https://doi.org/10.14199/ppp-2015-076
Kolczyk, J., Stolarczyk, P., & Płachno, B. J. (2014). Comparative anatomy of ovulesin Galinsoga, Solidago and Ratibida (Asteraceae). Acta Biologica Cracoviensia, Series Botanica, 56(2), 115–125. https://doi.org/10.2478/abcsb-2014
Koтт [Kott], C.A. [S.A.]. (1961). Сopныe pacтeния и бopьбa c ними [Handbook on weed control]. Сeльxoзгиз [Sel′khozgiz].
Kristensen, L., Olsen, J., & Weiner, J. (2008). Crop density, sowing pattern, and nitrogen fertilization effects on weed suppression and yield in spring wheat. Weed Science, 56, 97–102. https://doi.org/10.1614/WS-07-065.1
Kwiecińska, E. (2004). Plenność niektórych gatunków chwastów segetalnych na glebie lekkiej [Seed production of some segetal weed species on light soil]. Annales Universitatis Mariae Curie-Skłodowska, Sectio E, Agricultura, 59(3), 1183–1191.
Kwiecińska-Poppe, E. (2006). Plenność wybranych gatunków chwastów segetalnych na ciężkiej rędzinie czarnoziemnej [Seed production of some segetal weed species on heavy charnozem rendzina]. Acta Agrophysica, 8(2), 441–448.
Lutman, P. J. W. (2002). Estimination of seed production by Stellaria media, Sinapis arvensis and Tripleurospermum inodorum in arable crops. Weed Research, 42, 359–369. https://doi.org/10.1046/j.1365-3180.2002.00296.x
Majda, J., Buczek, J., & Trąba, C. (2007). Plenność niektórych gatunków chwastów owocujących na odłogu [Seed production of some weed species fruiting on fallows]. Annales Universitatis Mariae Curie-Skłodowska, Sectio E, Agricultura, 62(2), 48–55.
Markov, M. (1978). Agrofitocenologia [Agrophytocenology]. Powszechne Wydawnictwo Rolnicze i Leśne.
Pawłowski, F., Kapeluszny, J., Kolasa, A., & Lecyk, Z. (1970). Płodność chwastów w różnych siedliskach [Weed fertility in various habitats]. Annales Universitatis Mariae Curie- Skłodowska, Sectio E, Agricultura, 25(5), 61–75.
Praczyk, T., & Skrzypczak, G. (2004). Herbicydy [Herbicides]. Powszechne Wydawnictwo Rolnicze i Leśne.
Qi, Y., Yan, B., Fu, G., Guan, X., Du, L., & Li., J. (2017). Germination of seeds and seedling growth of Amaranthus retroflexus L. following sublethal exposure of parent plants to herbicides. Scientific Reports, 7, Article 157. https://doi.org/10.1038/s41598-017-00153-4
Shen, S., Xu, G., Li., D., Jin, G., Liu, S., Clements, D. R., Yang, Y., Rao, J., Chen, A., Zhang, F., Zhu, X., & Weston, L. A. (2019). Potential use of sweet potato [Ipomoea batatas (L.) Lam.] to suppress three invasive plant species in agroecosystems (Ageratum conyzoides L., Bidens pilosa L., and Galinsoga parviflora Cav.). Agronomy, 9(318), Article 318. https://doi.org/10.3390/agronomy9060318
Shuma, J. M., Quick, W. A., Raju, M. V. S., & Hsiao, A. I. (1995). Germination of seeds from plants of Avena fatua L. treated with glyphosate. Weed Research, 35, 249–255. https://doi.org/10.1111/j.1365-3180.1995.tb01787.x
Staniak, M., Haliniarz, M., Kwiecińska-Poppe, E., Harasim, E., & Wesołowski, M. (2017). Diversity of agrocoenoses in the Lublin region, Poland. Acta Agrobotanica, 70(4), Article 1722. https://doi.org/10.5586/aa.1722
Tanveer, A., Nadeem, M. A., Ali, A., Tahir, M., & Zamir, M. S. (2009). Germination behaviour of seeds from herbicide treated plants of Chenopodium album L. Anais da Academia Brasileira de Ciências, 81(4), 873–879. https://doi.org/10.1590/s0001- 37652009000400022
Tokarska-Guzik, B., Dajdok, Z., Zając, M., Zając, A., Urbisz, A., Danielewicz, W., & Hołdyński, C. (2012). Rośliny obcego pochodzenia w Polsce ze szczególnym uwzględnieniem gatunków inwazyjnych [Alien plants in Poland with particular reference to invasive species]. Generalna Dyrekcja Ochrony Środowiska.
Wnuk, Z., & Ziaja, M. (2010). Galinsoga sp. w zbiorowiskach segetalnych Pasma Przedborsko- Małogoskiego [Galinsoga sp. in segetal communities of the Range Przedborsko- Małogoskie]. Fragmenta Agronomica, 27(3), 159–166.
Zhang, J., & Cavers, P. B. (1994). Seedling emergence after maternal bentazone application to 10 cocklebur (Xanthium strumarium) populations. Canadian Journal of Plant Science, 74, 863–866. https://doi.org/10.4141/cjps94-157
Zhang, Z., Chen, Y., Jiang, X., Zhu, P., Zeng, Y., Tang, T., & Li, L. (2019). Characterization of the complete chloroplast genome sequence of Galinsoga parviflora and its phylogenetic implications. Mitochondrial DNA Part B, 4(2), 2106–2108. https://doi.org/10.1080/23802359.2019.1623106
DOI: https://doi.org/10.5586/aa.7335
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