Abstract
The experiment was conducted in 2004–2006, on a farm located in Frankamionka village, near Zamość. The experimental field was located on the soil with silty dust grain the composition, light acid, with an average content of the organic matter. The subject of the study were weeds in spring wheat canopy, “Helia” cultivars. The scheme of the study included two factors: I. methods of cropping – sole cropping and strip cropping systems; II – level of tending – mechanical, mechanical-chemical and chemical. Weed infestation of wheat was analysed two weeks prior the harvest analyzing species composition, weed density and aboveground air dry mater weight. It was proved that strip cropping system decreased the density and weight of weeds, but increased the number of weed species in a wheat canopy. The mechanical tending caused the highest weed infestation, while mechanical-chemical and chemical methods visibly decreased the weeds in a canopy of wheat. Galinsoga parviflora, Chenopodium album and Echinochloa crus-galli were the dominant taxons.
References
- Carruthers K.Fe.Q., Cloutier D., Smith D.L., 1998. Intercropping corn with soybean, lupine and forages: weed control by intercropping combined with inter-row cultivation. Eur. J. Agron., 8, 225–238.
- Francis Ch., 1986. Strip cropping corn and grain legumes: A review. Amer. J. Altern. Agric. 1(4), 159–164.
- Fukai S., Trenbath B.R., 1993. Processes determining intercrop productivity and yields of component crops. Field Crops Res. 34, 247–271.
- Ghaffarzadeh M., Garcia-Prechac F., Crusoe R.M., 1994. Grain yield response of corn, soybean and oat grown in a strip intercropping system. Americ. J. Altern. Agric. 9(4), 171–177.
- Głowacka A., 2007. Wpływ współrzędnej uprawy pasowej na zachwaszczenie kukurydzy pastewnej. Acta Agroph., 10(3), 573–582.
- Horwith B., 1985. A role for intercropping in modern agriculture. BioSci., 35, 286–291.
- Idziak R., Michalski T., 2003. Zachwaszczenie i plonowanie mieszanek jęczmienia jarego i owsa przy różnym udziale obu komponentów w zasiewie. Zesz. Prob. Post. Nauk Rol., 490, 99–104.
- Jendrzejczak E., 1991. Statystyczne opracowanie wyników doświadczeń, [w:] Doświadczalnictwo rolnicze. Pr. zb. pod red. F. Rudnickiego. Wyd. ATR Bydgoszcz, 99–194.
- Liebman M., Dyck E., 1993. Crop rotation and intercropping strategies for weed management. Ecol. App. 3, 92–122.
- Malicki L., Nawrocki S., Pawłowski F., 1986. Ogólna uprawa roli i roślin. Wyd. AR w Lublinie, 132–133.
- Mirek Z., Piękoś-Mirkowa H., Zając A., Zając M., 2002. Flowering plants and pterdophytes of Poland. A checklist. Krytyczna lista roślin naczyniowych Polski. Wyd. Inst. Bot. im. W. Szafera PAN Kraków, 442 ss.
- Ofori F., Stern W.R., 1987. Cereal-legume intercropping systems. Adv. Agron. 41, 41–86.
- Rola H., Rola J., Zalewski A., 2001. Rozmieszczenie chwastów segetalnych w uprawach rolniczych Polski. Wyd. IUNG Puławy.
- Stupnicka-Rodzynkiewicz E., Stępnik K., Dąbkowska T., Łabza T., 2003. Różnorodność zbiorowisk chwastów w uprawach zbóż w Beskidach. Frag. Agronom., 4(84), 45–53.
- Wenda-Piesik A., Rudnicki F., 2003. Przydatność mieszanek herbicydowych we współrzędnych uprawach grochu ze zbożami jarymi. Zesz. Probl. Post. Nauk Rol., 490, 285–292.
- Weil R.R., McFadden M.E., 1991. Fertility and weed stress effects on performance of maize/soybean intercrop. Agron. J., 83, 717–721.
- Wesołowski M., 2003. Wpływ gęstości siewu i poziomu agrotechniki na zachwaszczenie pszenicy jarej. Zesz. Prob. Post. Nauk Rol., 490, 293–301.
- Zhang F., Li L., 2003. Using competitive and facilitative interactions in intercropping systems enhances crop productivity and nutrient-use efficiency. Plant and Soil, 248, 305–312.
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