Influence of shade on productivity and nutritional value of Urochloa decumbens in silvopastoral systems using different spatial arrangements of eucalyptus cultivars

IF 0.9 4区 农林科学 Q3 AGRICULTURE, DAIRY & ANIMAL SCIENCE
Claudinei Alves dos Santos, A. Oliveira, E. Moreira, L. Gonçalves, M. C. M. Viana, Miguel Marques Gontijo Neto, Â. M. Lana
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引用次数: 1

Abstract

This study evaluated pasture productivity and nutritional characteristics of Urochloa decumbens in silvopastoral systems (SPS) with different eucalyptus cultivars and spatial arrangements providing differing levels of shade. SPS were arranged to provide 46 % shade (eucalyptus trees arranged in 2 double rows 2 m apart, with trees every 3 m in each row, and 20 m between double rows), 60 % shade (eucalyptus trees arranged in 2 double rows 2 m apart, with trees every 2 m in each row in double rows and 9 m between double rows) and 57 % shade (eucalyptus trees arranged in a single row, with trees every 2 m in the row and 9 m between rows) using eucalyptus cultivars ‘GG100’, ‘I144’ or ‘VM58’. Two full sun pastures treated as managed (soil pH correction and N, P and K fertilizer application) or non-managed (no correction or fertilizer application) were evaluated in addition to the 3 SPS arrangements. Photosynthetically active radiation (PAR) was 1,439 μmol/m2/s in full sun compared with a mean of 715 μmol/m2/s under different SPS arrangements. Leaf area index of U. decumbens was 28 % higher in 46 % shade and lower in all shade arrangements compared with full sun managed pasture. The dry matter yield was 58 % lower in 46 % shade and 86 % lower in 60 % shade compared with full sun managed pasture. The crude protein content in SPS pastures was higher than in the full sun pastures, with higher values in 57 % and 60 % shade. SPS significantly reduced the PAR and forage yield. These results indicate that in systems where the main objective is animal production, spacing between tree rows greater than 20 m should be used to provide sufficient high-quality grass.
不同桉树品种空间布局下遮荫对林栖系统中躺椅尾藻生产力和营养价值的影响
本研究对不同桉树品种和不同遮荫空间安排下的森林生态系统(SPS)下的草地生产力和卧斑尿藻的营养特性进行了评价。SPS安排提供46%遮荫(桉树安排在2双行2米,与树木在每一行,每3 m和20 m之间的双行),60%遮荫(桉树安排在2双行2米,与树木每2米每一行之间的双行和9米双行)和57%遮荫(桉树排成一行,树木每2 m行)之间的行和9米用桉树品种‘GG100’,‘I144’或‘VM58’。除了3种SPS安排外,还对2个全日光牧场进行了管理(土壤pH校正和施用氮、磷、钾肥)和非管理(不校正和施肥)的评价。光合有效辐射(PAR)在全光照条件下为1439 μmol/m2/s,而不同光照条件下的PAR平均值为715 μmol/m2/s。与全日光管理的牧场相比,46%遮荫条件下的叶面积指数高28%,而所有遮荫条件下的叶面积指数都较低。干物质产量在46%遮荫和60%遮荫下分别比全日光管理的牧场低58%和86%。SPS牧草的粗蛋白质含量高于全光照牧草,57%和60%遮荫牧草的粗蛋白质含量高于全光照牧草。SPS显著降低了PAR和饲料产量。这些结果表明,在以动物生产为主要目标的系统中,树行间距应大于20 m,以提供足够的优质草。
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来源期刊
Tropical Grasslands-Forrajes Tropicales
Tropical Grasslands-Forrajes Tropicales Agricultural and Biological Sciences-Agronomy and Crop Science
CiteScore
1.60
自引率
0.00%
发文量
36
审稿时长
16 weeks
期刊介绍: The Journal publishes, in English or Spanish, Research Papers and Short Communications on research and development, as well as contributions from practitioners (Farmer Contributions) and Review Articles, related to pastures and forages in the tropics and subtropics. There is no regional focus; the information published should be of interest to a wide readership, encomprising researchers, academics, students, technicians, development workers and farmers. In general, the focus of the Journal is more on sown (''improved'') pastures and forages than on rangeland-specific aspects of natural grasslands, but exceptions are possible (e.g. when a submission is relevant for a particularly broad readership in the pasture and forage science community). The Journal will also consider the occasional publication of associated, but closely related, research in the form of an additional scientific communication platform [e.g. a re-make of the former Genetic Resources Communication series of the former Division of Tropical Crops and Pastures of the Commonwealth Scientific and Industrial Research Organisation (CSIRO), Australia]. Areas of particular interest to the Journal are: Forage Genetic Resources and Livestock Production[...] Environmental Functions of Forages[...] Socio-economic Aspects[...] Topics within the aforementioned areas may include: Diversity evaluation; Agronomy; Establishment (including fertilization); Management and utilization; Animal production; Nutritive value; Biotic stresses (pests and diseases, weeds); Abiotic stresses (soil fertility, water, temperature); Genetics and breeding; Biogeography and germplasm collections; Seed production; Ecology; Physiology; Rhizobiology (including BNF, BNI, mycorrhizae); Forage conservation; Economics; Multilocational experimentation; Modelling.
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