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首页> 外文期刊>Ecology and Evolution >Predicting drought tolerance from slope aspect preference in restored plant communities
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Predicting drought tolerance from slope aspect preference in restored plant communities

机译:从坡度方面的偏爱预测恢复植物群落的耐旱性

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Summary Plants employ strategies of tolerance, endurance, and avoidance to cope with aridity in space and time, yet understanding the differential importance of such strategies in determining patterns of abundance across a heterogeneous landscape is a challenge. Are the species abundant in drier microhabitats also better able to survive drought? Are there relationships among occupied sites and temporal dynamics that derive from physiological capacities to cope with stress or dormancy during unfavorable periods? We used a restoration project conducted on two slope aspects in a subwatershed to test whether species that were more abundant on more water-limited S-facing slopes were also better able to survive an extreme drought. The attempt to place many species uniformly on different slope aspects provided an excellent opportunity to test questions of growth strategy, niche preference, and temporal dynamics. Perennial species that established and grew best on S-facing slopes also had greater increases in cover during years of drought, presumably by employing drought tolerance and endurance techniques. The opposite pattern emerged for annual species that employed drought-escape strategies, such that annuals that occupied S-facing slopes were less abundant during the drought than those that were more abundant on N-facing slopes. Our results clarify how different functional strategies interact with spatial and temporal heterogeneity to influence population and community dynamics and demonstrate how large restoration projects provide opportunities to test fundamental ecological questions.
机译:总结植物采用宽容,耐力和回避策略来应对时空干旱,但是要理解此类策略在确定异构景观中的丰度模式方面的不同重要性是一个挑战。干燥微生境中丰富的物种还能够更好地抵抗干旱吗?在不利时期内,由于生理能力应付压力或休眠而在被占用的地点和时间动力之间是否存在关系?我们使用了在一个小流域的两个坡度方面进行的修复项目,以测试在水位受限的S坡度上更丰富的物种是否也能够更好地抵抗极端干旱。将许多物种均匀地放置在不同坡度上的尝试提供了绝佳的机会来测试生长策略,生态位偏好和时间动态的问题。在干旱年份,在S坡上建立并生长最好的多年生物种的覆盖率也有了更大的提高,大概是通过采用耐旱和耐力技术。对于采用干旱逃避策略的一年生物种,则出现了相反的模式,即在干旱期间,占据S面坡度的一年生植物比面对N面坡度的一年生植物丰富。我们的结果阐明了不同的功能策略如何与时空异质性相互作用,从而影响人口和社区动态,并证明了大型修复项目如何为检验基本生态问题提供了机会。

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