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Global Climate Niche Estimates for Bioenergy Crops and Invasive Species of Agronomic Origin: Potential Problems and Opportunities

机译:生物能源作物和农作物起源的入侵物种的全球气候小生境估计:潜在的问题和机会

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摘要

The global push towards a more biomass-based energy sector is ramping up efforts to adopt regionally appropriate high-yielding crops. As potential bioenergy crops are being moved around the world an assessment of the climatic suitability would be a prudent first step in identifying suitable areas of productivity and risk. Additionally, this assessment also provides a necessary step in evaluating the invasive potential of bioenergy crops, which present a possible negative externality to the bioeconomy. Therefore, we provide the first global climate niche assessment for the major graminaceous (9), herbaceous (3), and woody (4) bioenergy crops. Additionally, we contrast these with climate niche assessments for North American invasive species that were originally introduced for agronomic purposes as examples of well-intentioned introductions gone awry. With few exceptions (e.g., Saccharum officinarum, Pennisetum purpureum), the bioenergy crops exhibit broad climatic tolerance, which allows tremendous flexibility in choosing crops, especially in areas with high summer rainfall and long growing seasons (e.g., southeastern US, Amazon Basin, eastern Australia). Unsurprisingly, the invasive species of agronomic origin have very similar global climate niche profiles as the proposed bioenergy crops, also demonstrating broad climatic tolerance. The ecoregional evaluation of bioenergy crops and known invasive species demonstrates tremendous overlap at both high (EI≥30) and moderate (EI≥20) climate suitability. The southern and western US ecoregions support the greatest number of invasive species of agronomic origin, especially the Southeastern USA Plains, Mixed Woods Plains, and Mediterranean California. Many regions of the world have a suitable climate for several bioenergy crops allowing selection of agro-ecoregionally appropriate crops. This model knowingly ignores the complex biotic interactions and edaphic conditions, but provides a robust assessment of the climate niche, which is valuable for agronomists, crop developers, and regulators seeking to choose agro-ecoregionally appropriate crops while minimizing the risk of invasive species.
机译:全球朝着更多的以生物质为基础的能源部门的推动正在加大努力,以采用适合当地情况的高产作物。随着潜在的生物能源作物在世界范围内的转移,对气候适宜性的评估将是确定合适的生产力和风险领域的谨慎的第一步。此外,该评估还为评估生物能源作物的入侵潜力提供了必要的步骤,这可能给生物经济带来负面的外部影响。因此,我们为主要禾本科(9),草本(3)和木质(4)生物能源作物提供了首次全球气候生态位评估。此外,我们将这些与北美入侵物种的气候生态位评估进行了对比,而北美入侵物种最初是出于农业目的而引入的,这些实例原本是出于善意引入的。除少数例外(例如,蔗糖,狼尾草)外,生物能源作物表现出广泛的气候耐受性,这为选择作物提供了极大的灵活性,尤其是在夏季降雨多,生长季节长的地区(例如,美国东南部,亚马逊河流域,东部澳大利亚)。毫不奇怪,农艺起源的入侵物种具有与拟议的生物能源作物非常相似的全球气候生态位特征,也证明了其广泛的气候耐受性。对生物能源作物和已知入侵物种的生态区域评估表明,在高(EI≥30)和中(EI≥20)气候适宜性方面都有巨大的重叠。美国南部和西部生态区支持着数量最多的农业起源的入侵物种,尤其是美国东南平原,混合森林平原和地中海加州。世界上许多地区的气候都适合几种生物能源作物,因此可以选择适合农业生态地区的作物。该模型有意地忽略了复杂的生物相互作用和环境条件,但提供了对气候利基的强有力评估,这对于寻求农艺学家,农作物开发者和监管者选择农业生态区域适宜的农作物,同时最大程度地减少入侵物种的风险具有重要意义。

著录项

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类
  • 入库时间 2022-08-20 20:40:50

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