更极端和频繁的干旱期降低了作物产量,改变了植物体内碳和氮的稳定同位素比率

Q4 Agricultural and Biological Sciences
Bodenkultur Pub Date : 2023-03-01 DOI:10.2478/boku-2023-0004
Andrea Watzinger, Judith Prommer, Andreea Spiridon, Weronika Kisielinska, Rebecca Hood-Nowotny, Herbert Formayer, Anna Wawra, Johannes Hösch, Julia Miloczki
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引用次数: 0

摘要

气候变化情景预测2071-2100年奥地利最重要和集约利用的农业区Marchfeld将出现更频繁和强烈的干旱期。在一个渗湿计站模拟了9年的当前和预测的低降水情景。在第7 ~ 9年监测植物生物量、氮素和碳含量以及植物室的δ 13c和δ 15n值。在预测情景下,谷物地上生物量和产量下降,而谷物品质(% N)未受影响。冬季种植的杂草和捕捞作物不受影响,甚至受到积极影响,可能是由于夏季植物吸收较低后土壤中养分的积累。因此,较低的植物δ 15 N值主要归因于预测降水情景中较高比例的矿质肥料的存在。正如预期的那样,水分胁迫显著增加了夏季生长的植株的δ 13c值,而冬季生长的植株则没有出现这种情况。肥沃的农业土壤可能会改善,但无法抵消更频繁和更严重的干旱时期的负面影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
More extreme and frequent drought periods reduced crop production and altered stable isotope ratios of C and N in plants
Summary Climate change scenarios predict more frequent and intense drought periods for 2071–2100 in the most important and intensively used agricultural region of Austria, the Marchfeld. Current and predicted lower precipitation scenarios were simulated at a lysimeter station for 9 years. Plant biomass, nitrogen (N) and carbon (C) content, and δ 13 C and δ 15 N values of plant compartments were monitored in years 7–9. Aboveground biomass of cereals and grain yield decreased under the predicted scenario, while the quality of grain (% N) was unaffected. Weed and catch crops grown in winter were not affected or were even positively affected, possibly due to the accumulation of nutrients in the soil following the lower plant uptake in summer. Accordingly, low plant δ 15 N values were mainly attributed to the presence of higher proportion of mineral fertilizer in the predicted precipitation scenario. As expected, water stress significantly increased δ 13 C values in plants grown over summer, while this was not seen for plants growing over winter. Fertile agricultural soil might ameliorate but cannot outbalance the negative impact of more frequent and intense drought periods.
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来源期刊
Bodenkultur
Bodenkultur Agricultural and Biological Sciences-Agronomy and Crop Science
CiteScore
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审稿时长
26 weeks
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