References
- Adkins, S. & Shabbir A. (2014). Biology, Ecology and Management of the Invasive Parthenium Weed (Parthenium hysterophorus L.). Pest Manag. Sci., 70, 1023‒1029. DOI: 10.1002/ps.3708.
- Adugna, Y.B., Adinew, M.G., Getahun, A.K., Gurmu, E.A., Berhie, A., Awoke, A. & Desta T.G. (2022). Evaluation of the Antidiabetic Activity of Hydromethanolic Roots Extracts of Rumex abyssinicus Jacq: (Polygonaceae) in Swiss Albino Mice. Evidence-Based Complementary and Alternative Medicine, 2022, 5193250. DOI: 10.1155/2022/5193250.
- Arba Minch Zuria Woreda Agricultural Office Report (2020). Status of crop production in Arba Minch Zuria Woreda. Arba Minch: Arba Minch Zuria Woreda Agricultural Office.
- Auma, D.M. (2014). Distribution of Parthenium hystrophorus L. and its impacts on biodiversity and agricultural productivity in Nyndo Sub County, Kisumu County, Kenya. A Thesis Submitted in Partial Fulfillment of the Requirement MSc Thesis, Kenyatta University.
- Ayana, E., Ensermu, K. & Teshome S. (2011). Impact of Parthenium hysterophorus L .(Asteracea) on Herbaceous plant biodiversity of Awashe natinal park (ANP). Management and Biological Invasions, 2, 69‒80. DOI: 10.3391/mbi.2011.2.1.07.
- Birhanu, A. & Khan R.P. (2018). The distribution, status and mitigation methods of Parthenium hysterophorus L. in Ethiopia: A review. JMPS, 6(4), 5‒10.
- Boja, M., Girma, Z. & Dalle G. (2022). Impacts of Parthenium hysterophorus L. on Plant Species Diversity in Ginir District, Southeastern Ethiopia. Diversity, 14(8), 675. DOI: 10.3390/d1408067.
- Cheng, F. & Cheng Z. (2015). Research Progress on the use of Plant Allelopathy in Agriculture and the Physiological and Ecological Mechanisms of Allelopathy. Front. Plant Sci., 6, 1020. DOI: 10.3389/fpls.2015.01020.
- Costello, B., Osunkoya, O.O., Sandino, J., Marinic, W., Trotter, P., Shi, B., Gonzalez, F. & Dhileepan K. (2022). Detection of Parthenium Weed (Parthenium hysterophorus L.) and Its Growth Stages Using Artificial Intelligence. Agriculture, 12(11), 1838. DOI: 10.3390/agriculture12111838.
- Dhileepan, K. & Strathie L. (2009). Parthenium hysterophorus L. (Asteraceae). In R. Muniappan, D.V.P. Reddy & A. Raman (Eds.), Biological Control of Tropical Weeds Using Arthropods (pp. 274‒318). Cambridge: Cambridge University Press.
- Fan, W., Fan, L., Peng, C., Zhang, Q., Wang, L., Li, L., Wang, J., Zhang, D., Peng, W. & Wu C. (2019). Traditional Uses, Botany, Phytochemistry, Pharmacology, Pharmacokinetics and Toxicology of Xanthium strumarium L.: A Review. Molecules, 24, 359. DOI: 10.3390/molecules24020359.
- Fariba, H.M. (2017). An Observation of an Unusual Therapeutic Use of Amaranthus spinosus L. (Amaranthaceae) by the Garo Tribe of Bangladesh. Ethnopharmacological Note, 1(1), 19‒21.
- Fessehaie, A. & Walcott R.R. (2005). Biological Control to Protect Watermelon Blossoms and Seed from Infection by Acidovorax avenae subsp. citrulli. Bio. Control, 95(4), 413‒419. DOI: 10.1094/PHYTO-95-0413.
- Gao, F.L., He, Q.S., Zhang, Y.D., Hou, J.H. & Yu F.H. (2021). Effects of Soil Nutrient Heterogenedity on the Growth and Invasion Success of Alien Plants: A Multi-Species Study. Front. Ecol. Evol., 8, 619861. DOI: 10.3389/fevo.2020.619861.
- Gebeyehu, Adane Kebede (2008) The Distributions of Parthenium Weed (Parthenium hysterophorus L. Asteraceae) and some of its Socio-Economic and Ecological Impacts in the Central Rift Valley, Adami Tulu-Jido Kombolcha Woreda; Ethiopia. MSc thesis, Addis Ababa University, Ethiopia.
- Gebrehiwot, N. & Lemma B. (2015). Impacts of Parthenium hystrophorus on species diversity in Gamo Gofa, Ethiopia. Journal of Agricultural Science, 5(7), 226‒231.
- Gioria, M. & Pyšek P. (2016). The legacy of plant invasions: changes in the soil seed bank of invaded plant communities. Bioscience, 66(1), 40‒53. DOI: 10.1093/biosci/biv165.
- Gnanavel, I. (2013). Parthenium hysterophorus L.: a major threat to natural and agro eco-systems in India. Science International, 1(6), 186‒193. DOI: 10.5567/sciintl.2013.186.193.
- Greiner, J.T., McGlathery, K.J., Gunnel, J. & McKee B.A. (2013) Seagrass Restoration Enhances “Blue Carbon” Sequestration in Coastal Waters. PLoS ONE, 8(8): e72469. DOI: 10.1371/journal.pone.0072469.
- Gunarathne, R., Anni, N.H., Jinyao, L., Zhang, B., Ying, T. & Lu J. (2023). Potential Nutraceutical Use of Tribulus terrestris L. in Human Health. Food Reviews International, 39(8), 5326‒5355. DOI: 10.1080/87559129. 2022.2067172.
- Joshi, K.R. (2014). Chemical composition and antimicrobial activity of the essential oil of Ocimum basilicum L. (sweet basil) from Western Ghats of North West Karnataka, India. Anc. Sci. Life, 33(3), 151–156. DOI: 10.4103/0257-7941.144618.
- Kabir, M., Iqbal, Z.M., Farooqi, R.Z. & Shafiq M. (2010). Vegetation pattern and soil characteristics of the Polluted Industrial area of Karachi. Pak. J. Bot., 42(1), 661‒678.
- Karim, S.M.R., Nurzafirah, Z. & Norhafizah Md. Zain (2017). Weed seed bank of parthenium weed (Parthenium hysterophorus L.) in Batang Kali, Selangor, Malaysia. Pertanika Journal of Tropical Agricultural Science, 40(4), 565‒576.
- Kaur, M, Aggarwal, K.N., Kumar, V. & Dhiman R. (2014). Effects and Management of Parthenium hysterophorus: A Weed of Global Significance. International Scholarly Research Notices, 368647, 1‒12, DOI: 10.1155/2014/368647.
- Khan, H., Khan, B.M., Hassan, G. & Muhammad A.K. (2013). Socio-economic impacts of Parthenium (Parthenium hysterophorus L.) in Peshawar valley. Pakistan J. Weed Sci. Res., 19, 275‒293.
- Khatri-Chettri, J., Rokaya, M.B. & Shrestha B.B. (2022). Impact of parthenium weed invasion on plants and their soil seedbank in a subtropical grassland, central Nepal. Journal of Ecology and Environment, 46, 2. DOI: 10.5141/jee.21.00083.
- Kumar, B., Singh, P.B., Lalhlenmawia, H. & Kumar S.N. (2017). Pharmacological potential of Bidens pilosa L. and determination of bioactive compounds using UHPLC-QqQLIT-MS/MS and GC/MS. BMC Complementary and Alternative Medicine, 17(1), 492. DOI: 10.1186/s12906-017-2000-0.
- Kumar, S., Malhotra, R. & Kumar D. (2010). Euphorbia hirta: Its chemistry, traditional and medicinal uses, and pharmacological activities. Pharmacognosy Reviews, 4(7), 58‒61. DOI: 10.4103/0973-7847.65327.
- Lachmuth, S. (2019). Eco-evolutionary processes in natural populations at the opposing extremes of demographic success: Invasive and declining plant species in the era of anthropogenic global change. Habilitationsschrift, Martin-Luther Universität, Halle-Wittenberg. DOI: 10.25673/14092.
- Lorraine, S. & Lin B. (2015). The science and practice biological control. Agricultural Research Council-Plant Protection Research Institute (ARCPPRI) fact sheets on invasive alien plants and their control in South Africa.
- Mao, R., Osunkoya, O.O., Campbell, S. & Adkins W.S. (2022). Wind dispersal of seeds of Parthenium hysterophorus L. (Asteraceae) contributes to its steady invasion and spread. Austral Ecology, 47(4), 791‒803. DOI: 10.1111/aec.13159.
- Masum, S., Hasanuzzaman, M. & Ali M. (2013). Threats of Parthenium hysterophorus on agro-ecosystems and its management: a review. International Journal of Agriculture and Crop Sciences, 6(11), 684‒697.
- Masum, S.M., Halim, A., Mandal, M.S.H., Asaduzzaman, M. & Adkins S. (2022). Predicting Current and Future Potential Distributions of Parthenium hysterophorus in Bangladesh Using Maximum Entropy Ecological Niche Modelling. Agronomy, 12, 1592. DOI: 10.3390/agronomy12071592.
- Mcconnachie, A.J, Strathie, L.W., Mersie, W., Gebrehiwot, L., Zewdie, K., Abdurehim, A. & Abreha, T. (2010). Current and potential geographical distribution of the invasive plant Parthenium hysterophorus in east and southern Africa. Weed Research, 51, 71‒84. DOI: 10.1111/j.1365-3180.2010.00820.x.
- Msafiri, C.J., Tarimo, M.T. & Ndakidemi P.A. (2013). Allelopathic effects of Parthenium hysterophorus on seed germination, seedling growth, fresh and dry mass production of Alysicurpus glumaceae and Chloris gayana. American Journal of Research Communication, 1(11), 190‒205.
- Murono, A.D. & Abuto O.J. (2019). Parthenium hysterophorus Linn: Soil Seed Bank Analysis and Impact on Agricultural Production in Nyando SubCounty, Kisumu County, Kenya. European Academic Research, 7(5), 2888‒2910.
- Murono, A.D., Wabuyele, E., Muoria, K.P. & Abuto O.J. (2018). Distribution of Parthenium hysterophorus L. and its Impacts on Biodiversity in Nyando Sub-County, Kisumu County, Kenya. European Academic Research, 5(4), 1600‒1621.
- Ojija, F. (2022). Eco-friendly management of Parthenium hysterophorus. Science Progress, 105(3), 1‒15. DOI: 10.1177/00368504221118234.
- Ojija, F. & Lutambi L.P. (2022). An Invasive Plant Parthenium hysterophorus Reduces Native Forage Cover. East African Journal of Environment and Natural Resources, 5(1), 318‒326. DOI: 10.37284/eajenr.5.1.862.
- Ojija, F. & Ngimba C. (2021). Suppressive abilities of legume fodder plants against the invasive weed Parthenium hysterophorus (Asteraceae). Environmental and Sustainability Indicators, 10, 100111. DOI: 10.1016/j. indic.2021.100111.
- Ojong, P.M.K., Alvarez, M., Ihli, J.H., Becker, M. & He T. (2021). Action on Invasive Species: Control Strategies of Parthenium hysterophorus L. on Smallholder Farms in in Kenya. Environ. Manag., 69, 861–870. DOI: 10.1007/s00267-021-01577-5.
- Osunkoya, O., Akinsanmi, O. & Dhileepan D. (2017). Parthenium hysterophorus L. (Asteraceae) invasion had limited impact on major soil nutrients and enzyme activity: Is the null effect real or reflects data insensitivity? Plant Soil, 420(1‒2), 177‒194. DOI: 10.1007/s11104-017-3375-x.
- Oyebode, A.O., Erukainure, L.O, Sanni, O. & Islam S.M. (2020). Crassocephalum rubens (Juss. Ex Jacq.) S. Moore improves pancreatic histology, insulin secretion, liver and kidney functions and ameliorates oxidative stress in fructose-streptozotocin induced type 2 diabetic rats. Drug and Chemical Toxicology, 45(2), 481‒490. DOI: 10.1080/01480545. 2020.1716783.
- Patel, S. (2011). Harmful and beneficial aspects of Parthenium hysterophorus: an update. 3Biotech., 1(1), 1‒9. DOI: 10.1007/s13205-011-0007-7.
- Pirzada, M.A., Ali, H.H., Naeem, M., Latiif, M., Bukhari, H.A. & Tanveer A. (2015). Cyperus rotundus L.: Traditional uses, phytochemistry, and pharmacological activities. J. Ethnopharmacol., 4(174), 540‒560. DOI: 10.1016/j.jep.2015.08.012.
- Pratt, B., Paul A., Hyder, A. A. & Ali J. (2017). Ethics of health policy and sytems research: a scoping review of the literature. Health Policy and Planning, 32(6), 890‒910. DOI: 10.1093/heapol/czx003.
- Rajiv, K., Mona, R.K. & Ajay K.S. (2011). Preliminary Pharmacognosnostic and Physicochemical Evaluation of Aerial Parts of Ipomoea eriocarpa R.Br. Research J. Pharmacognosy and Phytochemistry, 3(6), 275‒277.
- Rokaya, M.B., Khatri-Chettri, J., Ghimire, S.R. & Shrestha B.B. (2020). Vegetation and soil seedbank dynamics in Parthenium hysterophorus L. invaded subtropical grassland in Nepal. Tropical Ecology, 61, 238–247. DOI: 10.1007/s42965-020-00085-7.
- Rubaba, O., Chimbari, M. & Mukaratirwa S. (2017). Scope of research on Parthenium hysterophorus in Africa South African Journal of Plant and Soil, 34(5), 323‒332. DOI: 10.1080/02571862.2016.1266046.
- Saini, A., Aggarwal, K.N., Sharma, A., Kaur, M. & Yadav A. (2014). Utility potential of Parthenium hysterophorus for its atrategic management. Advances in Agriculture, 381859, 1‒16. DOI: 10.1155/2014/381859.
- Seta, T., Assefa, A., Mesfin, F. & Balcha A. (2013). Distribution status and the impact of parthenium weed (Parthenium hysterophorus L.) at Gedeo Zone (Southern Ethiopia). African Journal of Agricultural Research,8(4), 386‒397. DOI: 10.5897/AJAR12.1646.
- Shabani, F., Ahmadi, M., Kumar, L., Solhjouy-fard, S., Shafapour Tehrany, M., Shabani, F., Kalantar, B. & Esmaeili A. (2020). Invasive weed species threats to global biodiversity future scenarios of changes in the number of invasive species in a changing climate. Ecological Indicators, 116, 106436. DOI: 10.1016/j.ecolind.2020.106436.
- Shiferaw, W., Demissew, S. & Bekele T. (2018). Invasive alien plant species in Ethiopia: ecological impacts on biodiversity a review paper. Int. J. Mol. Biol., 3(4), 171‒178. DOI: 10.15406/ijmboa.2018.03.00072.
- Studzinska-Sroka, E., Dudek-Makuch, M., Chanaj-Kaczmarek, J., Czepulis, N., Korybalska, K., Rutkowski, R., Łuczak, J., Grabowska, K., Bylka, W. & Witowski J. (2018). Anti-inflammatory Activity and Phytochemical Profile of Galinsoga parviflora Cav. Molecules, 23, 2133. DOI: 10.3390/molecules23092133.
- Tamado, T. & Milberg P. (2000). Weed flora in arable fields of eastern Ethiopia with emphasis on the occurrence of Parthenium hysterophorus. Weed Res., 40, 507–521. DOI: 10.1046/j.1365-3180.2000.00208.x.
- Tamado, T. & Milberg P. (2004). Control of Parthenium (Parthenium hysterophorus) in Grain Sorghum (Sorghum bicolor) in the Smallholder Farming System in Eastern Ethiopia. Weed Technology, 18(1), 100‒105. DOI: DOI: 10.1614/WT-03- 033R.
- Tamado, T., Schütz, W. & Milberg P. (2002). Germination ecology of the weed Parthenium hysterophorus, Eastern Ethiopia. Annals of Applied Biology, 140, 263‒270. DOI: 10.1111/j.1744-7348.2002.tb00180.x.
- Teklu, H.G., Desta, A., Hiben, G.M. & Araya M.E. (2020). Anti-Nociceptive and Anti-Inflammatory Activity of Hygrophila schulli Leaves. Journal of Inflammation Research, 13, 497–505. DOI: 10.2147/JIR.S269717.
- Timsina, B., Shrestha, B.B., Rokaya, M.B. & Munzbergova Z. (2011). Impact of Parthenium hysterophorus L. invasion on plant species composition and soil properties of grassland communities. Flora, 206(3), 233‒240. DOI: 10.1016/j.flora.2010.09.004.
- Tran, N., Pham, B. & Le L. (2020). Bioactive Compounds in Anti-Diabetic Plants: From Herbal Medicine to Modern Drug Discovery. Biology (Basel), 9(9), 252. DOI: 10.3390/biology9090252.
- Wu, Z., Milne I.R. Liu, J. Nathan, R., Corlett, T.R. & Li D. (2023). The establishment of plants following long-distance dispersal. Trends in Ecology & Evolution, 38(3), 289‒300. DOI: 10.1016/j.tree.2022.11.003.
- Wubneh, Y.W. (2019). Parthenium hystrophorus in Ethiopia: Distribution, Impact, and Management - A Review. World Scientific News, 130, 127‒136.
- Yamane, T. (1967). Statistics: A Introductory Analysis. New York: Harper and Row.