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DOI10.1111/jac.12359
Elevated CO2 affects plant nitrogen and water-soluble carbohydrates but not in vitro metabolisable energy
Panozzo, Joe Francis1; Walker, Cassandra Kiely1; Maharjan, Pankaj1; Partington, Debra L.2; Korte, Chris J.1
发表日期2019
ISSN0931-2250
EISSN1439-037X
英文摘要

The effects of elevated concentrations of atmospheric CO2 (e[CO2]) on the nutritive value of wheat vegetative matter and grain as a feedstock for ruminants were investigated in a study undertaken at the Australian grains free-air CO2 enrichment (AGFACE) facility. The study included two commercial wheat cultivars (Janz and Yitpi) and two genetic selections from a Seri/Babex population (SB003 and SB062) which had previously been characterised for low and high water-soluble carbohydrate accumulation efficiency. The trial was grown under ambient (similar to 390 mu mol/mol) and elevated (similar to 550 mu mol/mol) CO2 conditions, and plants harvested at tillering, anthesis and physiological maturity. Composition analyses to determine the nutritive value for ruminant feed were undertaken on stems, leaves and grain. Plant and grain nitrogen were reduced in the e[CO2] treatments, and as expected, the water-soluble carbohydrates increased. All genotypes responded to e[CO2] with the effects of altered composition evident within 60 days of sowing. Determinants of ruminant feed quality such as neutral and acid detergent fibre and estimated in vitro metabolisable energy were not significantly affected. The reduced plant and grain N will impact on the nutritive value and supplementation may be required. The impact of e[CO2] on chemical composition of wheat plants may be greater if the predicted climate change is associated with concomitant abiotic stress such as high ambient temperature or low soil moisture.


WOS研究方向Agriculture
来源期刊JOURNAL OF AGRONOMY AND CROP SCIENCE
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/100673
作者单位1.Agr Victoria, Dept Jobs Precincts & Reg, Private Bag 260, Horsham, Vic 3400, Australia;
2.Agr Victoria, Dept Jobs Precincts & Reg, Hamilton, Vic, Australia
推荐引用方式
GB/T 7714
Panozzo, Joe Francis,Walker, Cassandra Kiely,Maharjan, Pankaj,et al. Elevated CO2 affects plant nitrogen and water-soluble carbohydrates but not in vitro metabolisable energy[J],2019.
APA Panozzo, Joe Francis,Walker, Cassandra Kiely,Maharjan, Pankaj,Partington, Debra L.,&Korte, Chris J..(2019).Elevated CO2 affects plant nitrogen and water-soluble carbohydrates but not in vitro metabolisable energy.JOURNAL OF AGRONOMY AND CROP SCIENCE.
MLA Panozzo, Joe Francis,et al."Elevated CO2 affects plant nitrogen and water-soluble carbohydrates but not in vitro metabolisable energy".JOURNAL OF AGRONOMY AND CROP SCIENCE (2019).
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