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土壤养分供应调节结实一年生草本植物的温度诱导信号。

Soil nutrient supply modulates temperature-induction cues in mast-seeding grasses.

机构信息

Department of Plant Sciences, University of Cambridge, Cambridge CB2 3EA, United Kingdom.

出版信息

Ecology. 2012 Mar;93(3):462-9. doi: 10.1890/11-1750.1.

Abstract

Synchronous and intermittent reproduction in long-lived plants, known as mast seeding, is induced by climatic cues, but the mechanism explaining variation in masting among neighboring but edaphically segregated species is unknown. Soil nutrients can enhance flowering, and thus, populations on nutrient-rich soils may require less-favorable growing temperatures to flower. We tested this hypothesis by predicting the probability of flowering in response to air temperature for five species of alpine Chionochloa grasses in South Island, New Zealand, over 37 years and relating our predictions to soil N supply (NH4(+) + NO3(-)). Summer air temperatures better predicted flowering than spring air temperatures, which were correlated with soil N mineralization. Species on N-rich soils required lower mean temperatures to induce flowering and/or responded more consistently across a gradient of air temperatures, contributing to the higher probability of their tillers and tussocks flowering at low summer temperatures. Our results suggest that flowering primarily occurs in response to warm summer temperatures, but species on N-rich soils require less favorable growing conditions because they invest relatively less N in seeds. Thus, predicting masting requires a consideration of the interactions among climate, the internal resources of plants, and mineral nutrient uptake.

摘要

长寿命植物的同步和间歇性繁殖,即结实高峰期,是由气候线索诱导的,但解释相邻但土壤隔离物种间结实高峰期变化的机制尚不清楚。土壤养分可以促进开花,因此,在养分丰富的土壤上的种群可能需要较低的适宜生长温度才能开花。我们通过预测新西兰南岛五种高山雀稗草在 37 年间对空气温度开花的概率来检验这一假设,并将我们的预测与土壤氮供应(NH4(+) + NO3(-))相关联。夏季空气温度比春季空气温度更能预测开花情况,而春季空气温度与土壤氮矿化有关。在富氮土壤上的物种需要较低的平均温度才能诱导开花,并且在空气温度梯度上的响应更为一致,这有助于它们的分蘖和草丛在较低的夏季温度下开花的概率更高。我们的结果表明,开花主要是对温暖夏季温度的响应,但在富氮土壤上的物种需要较差的生长条件,因为它们在种子中投入的氮相对较少。因此,预测结实高峰期需要考虑气候、植物内部资源和矿物质养分吸收之间的相互作用。

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