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Warming effects on growth and physiology in the seedlings of the two conifers Picea asperata and Abies faxoniana under two contrasting light conditions

机译:在两种相反的光照条件下,变暖对两种针叶树云杉和冷杉冷杉幼苗生长和生理的影响

摘要

The short-term effects of two levels of air temperature (ambient and warmed) and light (full light and ca. 10% of full light regimes) on the early growth and physiology of Picea asperata and Abies faxoniana seedlings was determined using open-top chambers (OTC). The OTC manipulation increased mean air temperature and soil surface temperature by 0.51 degrees C and 0.34 degrees C under the 60-year plantation, and 0.69 degrees C and 0.41 degrees C under the forest opening, respectively. Warming, with either full-light or low-light conditions, generally caused a significant increase in plant growth, biomass accumulation, and stimulated photosynthetic performance of P. asperata seedlings. However, the warming of A. faxoniana seedlings only significantly increased their growth under low-light conditions, possibly as a result of photoinhibition caused by full light, which may shield and/or impair the effects of warming manipulation, per se, on the growth and physiological performance of A. faxoniana seedlings. In response to warming, P. asperata seedlings allocated relatively more biomass to roots and A. faxoniana more to foliage under similar environments. This might provide A. faxoniana with an adaptive advantage when soil moisture was not limiting and an advantage to P. asperata if substantial moisture stress occurred. Warming markedly increased the efficiency of PSII in terms of the increase in F-v/F-m and photosynthetic pigment concentrations for the two conifer seedlings, but the effects of warming were generally more pronounced under low-light conditions than under full-light conditions. On balance, this study suggested that warming had a beneficial impact on the early growth and development of conifer seedlings, at least in the short term. Consequently, warming may lead to changes in forest regeneration dynamics and species composition for subalpine coniferous ecosystems under future climate change.
机译:使用开顶测定两种温度水平(环境和温暖)和光照(全光照和全光照模式的大约10%)对云杉和冷杉冷杉幼苗早期生长和生理的短期影响。室(OTC)。在60年的人工林下,OTC操作将平均气温和土壤表面温度分别提高了0.51摄氏度和0.34摄氏度,在森林开放下使平均气温和土壤表面温度分别升高了0.69摄氏度和0.41摄氏度。在全光照或低光照条件下变暖,通常会导致植物生长,生物量积累和刺激的光合作用(P. asperata)幼苗的光合性能显着提高。但是,仅在弱光条件下,fax桐幼苗的变暖仅能显着提高其生长,这可能是由于全光照引起的光抑制作用,这可能会屏蔽和/或削弱变暖本身对生长的影响。刺槐幼苗的生理特性响应变暖,在相似的环境下,曲霉幼苗向根部分配相对更多的生物量,而梧桐向叶子分配更多的生物量。当土壤水分不受限制时,这可能为拟花假单胞菌提供了适应性优势,如果发生大量水分胁迫,则可以为曲霉提供优势。就两种针叶树幼苗的F-v / F-m和光合色素浓度的增加而言,变暖显着提高了PSII的效率,但通常在弱光条件下比在全光条件下变暖的效果更为明显。总的来说,这项研究表明,至少在短期内,变暖对针叶树幼苗的早期生长和发育具有有益的影响。因此,变暖可能导致未来气候变化下亚高山针叶生态系统的森林更新动态和物种组成发生变化。

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    Yin HJ; Liu Q; Lai T;

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