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Ecophysiological responses of two dominant subalpine tree species Betula albo-sinensis and Abies faxoniana to intra-and interspecific competition under elevated temperature

机译:高温下两种优势亚高山树种桦木和冷杉冷杉对种内和种间竞争的生态生理响应

摘要

Seedlings of tree species Abies faxoniana and Betula albo-sinensis were grown under different competition regimes (single plant, monoculture or mixture) at ambient temperature (AT) and elevated temperature (ET) to evaluate the impact of inter-and intraspecific competition on photosynthesis capacity, N resorption efficiency, N uptake patterns, water use efficiency (foliar carbon isotope composition, delta C-13) and root carbon reserve accumulation. Our results showed that ET did not have significant effects on relative height growth rate (RGR(H)), relative diameter growth rate (RGR(D)), chlorophyll fluorescence parameters(F-v/F-m,Phi(PSll)), light-saturated photosynthetic rate (A(1400)) and nitrogen uptake in A. faxoniana, but it significantly reduced the values of these parameters in B. albo-sinensis. On the other hand, RGR(H) of A. faxoniana was not influenced by intraspecific competition irrespective of temperature regimes, while in B. albo-sinertsis intraspecific competition was severer under AT than under ET. Decreased photosynthetic capacity and reduced plant size detected in B. albo-sinensis under ET likely contribute to its low intraspecific competitive ability. However, we found positive effects of interspecific competition on A. faxoniana but negative effects on B. albo-sinensis under ET, as A. faxoniana exposed to interspecific competition showed higher RGR(H,) RGR(D), A(1400), chlorophyll fluorescence parameters, foliar delta C-13, foliar N, and percentages of N-15-ammonium and N-15-nitrate recovery than did A. faxoniana exposed to intraspecific competition or no competition. The results indicate that A. faxoniana is a better competitor than B. albo-sinensis under ET. Further, A. faxoniana altered resource use patterns and had a high plasticity in its ammonium uptake in mixtures compared with monocultures under ET, while B. albo-sinensis did not change its N use pattern. In all, our results showed that high temperature stress tolerance (e.g., higher root carbon accumulation), high ability to keep carbon balance (e.g., higher water use efficiency, lower leaf respiration rate, higher F-v/F-m), as well as a better N acquisition ability make A. faxoniana a better competitor when compared to B. albo-sinensisg under ET. (c) 2014 Elsevier B.V. All rights reserved.
机译:在环境温度(AT)和高温(ET)下,在不同的竞争机制下(单株,单株或混合种植),种植冷杉冷杉和白桦树种的幼苗,以评估种间竞争和种内竞争对光合作用能力的影响。 ,氮吸收效率,氮吸收模式,水分利用效率(叶碳同位素组成,δC-13)和根系碳储量的累积。我们的结果表明,ET对相对高度生长率(RGR(H)),相对直径生长率(RGR(D)),叶绿素荧光参数(Fv / Fm,Phi(PSll)),光饱和度没有显着影响光合速率(A(1400))和氮素吸收,但显着降低了白僵菌中这些参数的值。另一方面,无论温度如何,fax实线虫的RGR(H)不受种内竞争的影响,而在中华白僵菌中,在AT下,种内竞争比在ET下更为激烈。在ET条件下,白僵菌中光合作用能力的降低和植物大小的减少可能是其低种内竞争能力的原因。但是,我们发现,在ET的作用下,种间竞争对fax草的种具有正效应,而对白僵菌却具有消极作用,因为暴露于种间竞争的种fax表现出更高的RGR(H)RGR(D),A(1400),与暴露于种内竞争或不竞争的拟南芥相比,叶绿素荧光参数,叶面δC-13,叶面N和N-15-铵和N-15-硝酸盐的回收率。结果表明,在ET作用下,传真粉虱比白粉病更好。此外,与ET条件下的单培养相比,A。Faxoniana改变了资源利用方式,并且混合物中的铵吸收具有高可塑性,而白僵菌B. albo-sinensis并未改变其N利用方式。总而言之,我们的结果表明,高温胁迫耐受性(例如,更高的根部碳积累),高保持碳平衡的能力(例如,更高的水分利用效率,更低的叶片呼吸速率,更高的Fv / Fm)以及更好的与ET下的白僵菌相比,氮素的吸收能力使它能够成为更好的竞争者。 (c)2014 Elsevier B.V.保留所有权利。

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