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Yield components and nutritive value of Robinia pseudoacacia and Albizia julibrissin in Arkansas, USA

Authors :
Adrian Ares
Ed Clausen
Danielle Julie Carrier
David P. Belesky
Daniel H. Pote
David M. Burner
Source :
Agroforestry Systems. 72:51-62
Publication Year :
2007
Publisher :
Springer Science and Business Media LLC, 2007.

Abstract

Ranchers need alternative livestock feeds when herbaceous forages become limiting in summer. Our objectives were to determine: (1) leaf and stem biomass components, (2) nutritive value [in vitro dry matter digestibility (IVDMD), total nonstructural carbohydrate (TNC), N, and N digestibility] of leaves for animal browse, (3) concentration of the secondary metabolites robinin and mimosine, and (4) in vitro leaf and bark toxicity for black locust (Robinia pseudoacacia L.) and mimosa (Albizia julibrissin Durz.), respectively, pollarded at 50 cm in Arkansas, USA. Black locust exceeded mimosa for every yield component (leaf mass tree−1, leaves shoot−1, shoots tree−1, shoot mass tree−1, stem basal area, and biomass tree−1) except mass leaf−1. Projected yields were 1,900 and 1,600 kg leaves ha−1 for black locust and mimosa, respectively, assuming a population of 12,300 trees ha−1. Mimosa leaves had greater IVDMD, TNC, and N digestibility than black locust. Mimosa leaves exceeded the nutritional N requirements of growing cattle (Bos taurus L.) and goats (Capra hircus L.), but protein supplementation would be needed for growing goats grazing black locust leaves. Tissue concentrations of secondary metabolites robinin and mimosine were below detectable limits in black locust and mimosa, respectively. The extract of black locust bark, but not leaves, was toxic to bioassayed African green monkey (Cercopithecus aethiops L.) cells. Either black locust or mimosa could provide moderate quantities of high quality, rotationally grazed forage for goats during summer months when herbaceous forage may in short supply.

Details

ISSN :
15729680 and 01674366
Volume :
72
Database :
OpenAIRE
Journal :
Agroforestry Systems
Accession number :
edsair.doi...........1176ad22fb23a83d07e2e5d35a8d9698
Full Text :
https://doi.org/10.1007/s10457-007-9098-x