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首页> 外文期刊>Frontiers in Ecology and Evolution >Effects of Rate of Drying, Life History Phase, and Ecotype on the Ability of the Moss Bryum Argenteum to Survive Desiccation Events and the Influence on Conservation and Selection of Material for Restoration
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Effects of Rate of Drying, Life History Phase, and Ecotype on the Ability of the Moss Bryum Argenteum to Survive Desiccation Events and the Influence on Conservation and Selection of Material for Restoration

机译:干燥速率,生活史阶段和生态类型对阿根廷苔藓存活干燥能力的影响以及对修复材料的保存和选择的影响

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Desiccation stress is frequently experienced by the moss Bryum argenteum and can influence survival, propagation and niche selection. We attempted to disentangle the interacting factors of life history phase (five categories) and rate of desiccation (time allotted for induction of desiccation tolerance) for thirteen ecotypes of B. argenteum. Using chlorophyll fluorescence as a stress index, we determined how these parameters influenced desiccation tolerance. Rate of drying and life phase significantly affected desiccation tolerance. The reaction norms of desiccation tolerance displayed by the thirteen ecotypes showed a substantial degree of variation in phenotypic plasticity. We observed differences in survival and fluorescence between rapid and slow drying events in juveniles. These same drying applications did not produce as large of a response for adult shoots (which consistently displayed high values). Some juvenile and protonemal ecotypes, such as those from the southwest United States, possessed higher innate tolerance to rapid drying, and greater resilience compared to ecotypes sourced from mesic localities in the United States. These results show a complex nuanced response to desiccation with ecotypes displaying a range of responses to desiccation reflecting both inherently different capacities for tolerating desiccation as well as variation in capacity for phenotypic plasticity. Our results suggest that we should expect few short-term effects of climate change due to high desiccation tolerance of adult shoots, but significant adverse long-term effects on colony establishment due to low tolerance of protonema and juvenile shoots. Further, we would recommend that future studies using mosses for habitat restoration of aridlands consider the desiccation tolerance capacity of individual ecotypes used for cultivation and later re-introduction. Understanding how mosses respond to desiccation is essential to interpret ecological roles, habitat preferences, selective pressures, and responses to climate change, and to estimate the potential effects of climate changes on bryophyte species and populations.
机译:干燥苔藓常会遭受干燥压力,并且会影响生存,繁殖和生态位选择。我们试图弄清十三种阿根廷银芽孢杆菌的生活史阶段(五类)和脱水率(分配诱导脱水耐性的时间)的相互作用因素。使用叶绿素荧光作为压力指标,我们确定了这些参数如何影响干燥耐性。干燥速率和生命阶段显着影响干燥耐性。十三种生态型表现出的耐干燥性反应标准表明,表型可塑性有很大程度的差异。我们观察到了幼年快干事件和慢干事件之间在存活率和荧光上的差异。这些相同的干燥应用对成年芽的反应不大(始终表现出很高的价值)。某些幼稚和原生生态型,例如美国西南部的生态型,与美国中生地区的生态型相比,具有较高的先天耐旱性,并且具有较强的复原力。这些结果表明,对生态型的干燥具有微妙的细微反应,显示出对干燥的一系列反应,既反映了固有的不同耐受能力,又表现出表型可塑性的变化。我们的结果表明,由于成年芽的高耐干性,我们应该预期气候变化的短期影响很小,但是由于原生质和幼芽的低耐受性,对菌落建立的长期不利影响却很大。此外,我们建议未来使用苔藓进行干旱区栖息地恢复的研究应考虑用于种植和随后重新引入的单个生态型的耐旱能力。了解苔藓对干燥的响应方式对于解释生态作用,栖息地偏好,选择性压力以及对气候变化的响应,并估计气候变化对苔藓植物物种和种群的潜在影响至关重要。

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