Relationship between growth rate and the development of hollow stem in broccoli

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dc.contributor Boersma, M
dc.contributor Gracie, AJ
dc.contributor Brown, PH
dc.date.accessioned 2012-03-08T00:45:09Z
dc.date.available 2012-03-08T00:45:09Z
dc.date.issued 2009
dc.identifier.uri http://livestocklibrary.com.au/handle/1234/31886
dc.description.abstract Boron deficiency is widely accepted as the dominant cause of hollow stem in broccoli (Brassica oleracea L. var. italica Plenck), although high growth rate has also been mentioned in the literature as a possible cause of the disorder. In this study, we investigated the role of growth rate and boron in the development of hollow stem. Two experiments were conducted with broccoli cv. Marathon, using planting density to manipulate growth rate. In the first experiment, plants were grown at 3 planting densities (19512, 32520, and 69686 plants/ha) and either supplemented or not supplemented with foliar boron applications (0.35kgB/ha) on two occasions. In the second experiment, broccoli plants at 2 planting densities (32520 and 100000plants/ha) were treated in factorial combination from inflorescence initiation onwards with complete trace element fertiliser (1.5% B), 57% light interception, and paclobutrazol (480g a.i./ha). The incidence and severity of hollow stem were assessed using digital image analysis and were found to increase with plant spacing but were not affected by boron application. The probability of hollow stem occurring increased with absolute growth rate in the first trial, but not the second. Absolute growth rate, measured as dry weight accumulation, was suppressed independently of planting density by the shading treatment, but did not influence the incidence or severity of hollow stem. The application of paclobutrazol did not influence absolute growth rate but reduced the severity of hollow stem at the lowest planting density. Our data support the hypothesis that the rate and pattern of growth are involved in the development of hollow stem, and that a boron deficiency is not the major causal factor.
dc.publisher CSIRO
dc.source.uri http://www.publish.csiro.au/?act=view_file&file_id=CP09391.pdf
dc.subject Brassica oleracea L var italica
dc.subject boron
dc.title Relationship between growth rate and the development of hollow stem in broccoli
dc.type Research
dc.description.version Journal article
dc.identifier.volume 60
dc.identifier.page 995-1001
dc.identifier.issue 10


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