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在升温及光照时间处理下,白云杉幼苗的秋季光合下降与生长停止过程解偶联。

Autumn photosynthetic decline and growth cessation in seedlings of white spruce are decoupled under warming and photoperiod manipulations.

机构信息

Department of Biology, University of Western Ontario, 1151 Richmond St., London, Ontario, Canada, N6A 5B6.

Nicholas School of the Environment, Duke University, Durham, NC, 27708, USA.

出版信息

Plant Cell Environ. 2017 Aug;40(8):1296-1316. doi: 10.1111/pce.12917. Epub 2017 Mar 20.

Abstract

Climate warming is expected to increase the seasonal duration of photosynthetic carbon fixation and tree growth in high-latitude forests. However, photoperiod, a crucial cue for seasonality, will remain constant, which may constrain tree responses to warming. We investigated the effects of temperature and photoperiod on weekly changes in photosynthetic capacity, leaf biochemistry and growth in seedlings of a boreal evergreen conifer, white spruce [Picea glauca (Moench) Voss]. Warming delayed autumn declines in photosynthetic capacity, extending the period when seedlings had high carbon uptake. While photoperiod was correlated with photosynthetic capacity, short photoperiods did not constrain the maintenance of high photosynthetic capacity under warming. Rubisco concentration dynamics were affected by temperature but not photoperiod, while leaf pigment concentrations were unaffected by treatments. Respiration rates at 25 °C were stimulated by photoperiod, although respiration at the growth temperatures was increased in warming treatments. Seedling growth was stimulated by increased photoperiod and suppressed by warming. We demonstrate that temperature is a stronger control on the seasonal timing of photosynthetic down-regulation than is photoperiod. Thus, while warming can stimulate carbon uptake in boreal conifers, the extra carbon may be directed towards respiration rather than biomass, potentially limiting carbon sequestration under climate change.

摘要

气候变暖预计将增加高纬度森林光合作用碳固定和树木生长的季节性持续时间。然而,光周期是季节性的关键线索,仍将保持不变,这可能限制树木对变暖的响应。我们研究了温度和光周期对北方常绿针叶树——白云杉(Picea glauca (Moench) Voss)幼苗每周光合作用能力、叶片生物化学和生长变化的影响。变暖延迟了秋季光合作用能力的下降,延长了幼苗高碳吸收的时期。虽然光周期与光合作用能力相关,但短光周期并不能限制在变暖条件下维持高光合作用能力。Rubisco 浓度动态受温度影响,但不受光周期影响,而叶片色素浓度不受处理影响。25°C 时的呼吸速率受光周期刺激,但在增温处理中,生长温度下的呼吸速率增加。光照时间的增加刺激了幼苗生长,而变暖则抑制了幼苗生长。我们证明,温度对光合作用下调的季节性时间的控制作用强于光周期。因此,虽然变暖可以刺激北方针叶树的碳吸收,但额外的碳可能会被导向呼吸而不是生物量,这可能会限制气候变化下的碳固存。

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