由于气候变化,北岛北部多年生黑麦草(Lolium perenne L.)夏季生长率和年产量预计将下降

Q3 Environmental Science Journal of New Zealand Grasslands Pub Date : 2023-05-03 DOI:10.33584/jnzg.2022.84.3565
Andrea Babylon, S. Woodward, P. Beukes
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引用次数: 0

摘要

评估多年生黑麦草在未来气候变化情景下继续支撑新西兰低成本乳制品生产系统的能力需要一种建模方法。在BASGRA牧草模型中,采用不同气候变化情景下的气候预测,对多年生黑麦草的年产量和牧草生长季节变化规律进行了预测。这些预测(包括不确定性)是针对新西兰上北岛14个以乳制品为主的分区域在2010-2014年、2040-2044年和2090-2094年做出的。多年生黑麦草的适宜性预计在未来所有分区域都将下降,在较高的大气温室气体水平下,预计结果会更糟。预计冬季受气候变化影响最小,夏季受影响最大。冬末/春季为主要生长季节,晚秋/初冬次之。农民适应其耕作方式的能力对于保持盈利和国际竞争力至关重要。
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Summer growth rates and annual yields of perennial ryegrass (Lolium perenne L.) in the Upper North Island are expected to decline as a result of climate change
Evaluating the ability of perennial ryegrass to continue underpinning New Zealand’s low-cost dairy production systems under future climate change scenarios requires a modelling approach. In this study, climate projections for different climate change scenarios were used in the BASGRA pasture model to predict changes in annual yields and seasonal pasture growth rate patterns of perennial ryegrass. These predictions, including uncertainty, were made for the years 2010-2014, 2040-2044 and 2090-2094 in 14 dairy-dominant subregions in the Upper North Island of New Zealand. The suitability of perennial ryegrass is expected to decline in the future across all subregions, with worse outcomes expected under higher atmospheric greenhouse gas levels. Winter is expected to be the season least affected by climate change and summer the most affected. Late-winter/spring is predicted to become the main growing season, followed by late-autumn/early-winter. The ability offarmers to adapt their farming practices is essential in remaining profitable and internationally competitive.
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来源期刊
Journal of New Zealand Grasslands
Journal of New Zealand Grasslands Environmental Science-Nature and Landscape Conservation
CiteScore
0.90
自引率
0.00%
发文量
27
期刊最新文献
Legume yield and persistence when sown in grass and herb pasture mixes in Lees Valley, South Island High Country Māori cultural values and soil fertility management – an exploratory study An assessment of the agronomic effectiveness of N‐(n‐butyl) thiophosphoric triamide (nBTPT) - treated urea on the production of clover-based pastures, pastures, grasses and crops. Using leaf regrowth stage to define defoliation interval for diverse pastures of complementary species (Lolium perenne L., Bromus valdivianus Phil., Dactylis glomerata L. and Trifolium repens L.) Five-year old diversified pasture delivers greater lamb liveweight gain than a standard perennial ryegrass-white clover pasture
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