Sowing configuration affects competition and persistence of lucerne (
Autor: | Matthew T. Newell, Guangdi Li, Richard Hayes, Mark B. Peoples, Keith G. Pembleton |
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Rok vydání: | 2021 |
Předmět: |
0106 biological sciences
geography geography.geographical_feature_category ved/biology media_common.quotation_subject ved/biology.organism_classification_rank.species Sowing 04 agricultural and veterinary sciences Plant Science Interspecific competition Biology 01 natural sciences Groundcover Pasture Competition (biology) Agronomy Soil water 040103 agronomy & agriculture 0401 agriculture forestry and fisheries Interception Cover crop Agronomy and Crop Science 010606 plant biology & botany media_common |
Zdroj: | Crop and Pasture Science. 72:707-722 |
ISSN: | 1836-5795 1836-0947 |
DOI: | 10.1071/cp20270 |
Popis: | Spatial separation of species at sowing has been proposed as a means of managing interspecific competition in mixed swards. This study examined the effect of row configuration on persistence of lucerne (Medicago sativa L.) in pastures and pasture–cover crop mixtures at three sites in the Central West, and in pasture mixtures at three sites in the Riverina, New South Wales, Australia. Lucerne density, taproot diameter, groundcover, and spatial distribution relative to the original drill row were measured at all sites, and plant-available soil water and light interception during spring were assessed at some sites. Row configuration (alternate or mixed drill rows) did not affect lucerne persistence; however, where lucerne seed was concentrated in every third drill row, intraspecific competition led to increased lucerne mortality. This was estimated to occur at densities >28 plants/m drill row. A lucerne density of ~55 plants/m2 in every or alternate drill rows (at row spacings of 250 mm) would likely achieve maximum lucerne production in the semi-arid environments tested, subject to the chance event of favourable conditions in the period after sowing that would maintain that density (e.g. cumulative summer rainfall >100 mm and summer day degrees |
Databáze: | OpenAIRE |
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