Nitrogen cycling in grazed pastures at elevated CO2:: N returns by ruminants

被引:28
作者
Allard, V
Newton, PCD
Lieffering, M
Clark, H
Matthew, C
Soussana, JF
Gray, YS
机构
[1] AgRes Grasslands, Land & Environm Management Grp, Palmerston North, New Zealand
[2] Massey Univ, Nat Resources Inst, Palmerston North, New Zealand
[3] INRA Agron, Fonctionnement & Gest Ecosyst Prairial, F-63039 Clermont Ferrand 2, France
关键词
FACE; faeces; N cycling; sheep; temperate grassland; urine;
D O I
10.1111/j.1365-2486.2003.00711.x
中图分类号
X176 [生物多样性保护];
学科分类号
090705 ;
摘要
In pastures grazed by large herbivores, nutrients cycle both through litter and animal excreta. We compared nitrogen (N) returns from sheep grazing a temperate pasture exposed to ambient or elevated CO2 (475 mumol mol(-1)) in a FACE (Free Air CO2 Enrichment) experiment established in the spring of 1997. In the spring of 2000 and 2001, we measured the chemical composition of the diet, sheep faeces and of individual plant species before grazing to characterize feed intake and to compare the intake of N to the N produced in faeces. In both years under elevated CO2, leaves of the individual species exhibited lower N concentrations and higher water-soluble carbohydrate (WSC) concentrations. There was a significantly greater proportion of legume in the diet at elevated CO2 but, together with the changes in chemical composition of individual species, this resulted in diets that had similar N but higher WSC and digestibility for both ambient and elevated CO2. We found that a greater proportion of dietary N was partitioned to urine at elevated CO2, probably because of the higher proportion of legume N in the diet, with possible differences in protein quality. A potentially significant consequence of this change in partitioning is greater N loss through volatilization at higher CO2 levels.
引用
收藏
页码:1731 / 1742
页数:12
相关论文
共 53 条
[1]  
BALL PR, 1982, P WORKSH NITR BAL TE
[2]   NITROGEN-BALANCE IN URINE-AFFECTED AREAS OF A NEW-ZEALAND PASTURE [J].
BALL, R ;
KEENEY, DR ;
THEOBALD, PW ;
NES, P .
AGRONOMY JOURNAL, 1979, 71 (02) :309-314
[3]  
BEEVER DE, 1993, P 17 INT GRASSL C PA, P535
[4]  
Brock J. L., 1988, Proceedings of the New Zealand Grassland Association, V49, P203
[5]  
Corson D. C., 1999, Proceedings of the New Zealand Grassland Association, V61, P127
[6]   Elevated CO2 reduces the nitrogen concentration of plant tissues [J].
Cotrufo, MF ;
Ineson, P ;
Scott, A .
GLOBAL CHANGE BIOLOGY, 1998, 4 (01) :43-54
[7]  
DENT J. W., 1963, J NAT INST AGR BOT, V9, P261
[8]   EVIDENCE OF A FEEDBACK MECHANISM LIMITING PLANT-RESPONSE TO ELEVATED CARBON-DIOXIDE [J].
DIAZ, S ;
GRIME, JP ;
HARRIS, J ;
MCPHERSON, E .
NATURE, 1993, 364 (6438) :616-617
[9]   Effects of elevated atmospheric CO2 on root decomposition in a scrub oak ecosystem [J].
Dilustro, JJ ;
Day, FP ;
Drake, BG .
GLOBAL CHANGE BIOLOGY, 2001, 7 (05) :581-589
[10]   Seedling performance of pasture species under elevated CO2 [J].
Edwards, GR ;
Newton, PCD ;
Tilbrook, JC ;
Clark, H .
NEW PHYTOLOGIST, 2001, 150 (02) :359-369