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Impacts of drought on plant water relations and nitrogen nutrition in dryland perennial grasses

机译:干旱对旱地多年生草植物水关系和氮营养的影响

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摘要

Background and aims Extensive worldwide dryland degradation calls for identification of functional traits critical to dryland plant performance and restoration outcomes. Most trait examination has focused on drought tolerance, although most dryland systems are water and nutrient co-limited. We studied how drought impacts both plant water relations and nitrogen (N) nutrition.Methods We grew a suite of grasses common to the Intermountain West under both well-watered and drought conditions in the greenhouse. These grasses represented three congener pairs (Agropyron, Elymus, Festuca) differing in their habitat of origin (“wetter” or “drier”). We measured growth, water relations, N resorption efficiency and proficiency and photosynthetic N use efficiency in response to drought.Results Drought decreased growth and physiological function in the suite of grasses studied, including a negative impact on plant N resorption efficiency and proficiency. This effect on resorption increased over the course of the growing season. Evolutionary history constrained species responses to treatment, with genera varying in the magnitude of their response to drought conditions. Surprisingly, habitat of origin influenced few trait responses.Conclusions Drought impacted plant N conservation, although these responses also were constrained by evolutionary history. Future plant development programs should consider drought tolerance not only from the perspective of water relations but also plant mineral nutrition, taking into account the role of phylogeny.
机译:背景和目的广泛的全球旱地退化呼吁旱地设备性能和恢复结果是至关重要的功能性状的鉴定。大多数性状检查的重点是耐旱性,尽管大多数旱地系统是水和营养合作的限制。我们研究了如何干旱影响既植物水分关系和氮(N)nutrition.Methods我们在温室都在水分充足和干旱条件下成长了一套草常见的山际西方。这些草表示的三个同源对(冰草,披碱草,羊茅)在其原籍(“湿润剂”或“干燥”)的栖息地不同。我们测量生长,水分关系,N再吸收效率和熟练程度和光合氮效率响应于drought.Results干旱在所研究的套件草减少生长和生理功能,包括对植物氮吸收效率和能力产生负面影响。在吸收这种效应增加了生长季节的过程。进化史约束物种应对处理,与属他们的干旱条件的反应的幅度不同。出人意料的是,产地的栖息地影响的几个特点responses.Conclusions干旱影响植株氮保护,虽然这些反应也被进化历史的制约。未来工厂发展计划不应该仅仅从水的关系,而且植物矿质营养的角度来考虑耐旱性,考虑到系统发育的作用。

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