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亚热带雨林木本植物不同功能类型在小枝发育过程中叶与茎之间的生长同步性存在差异。

Growth synchrony between leaves and stems during twig development differs among plant functional types of subtropical rainforest woody species.

作者信息

Meng Fengqun, Zhang Guangfu, Li Xincheng, Niklas Karl J, Sun Shucun

机构信息

The State Key Laboratory of Pharmaceutical Biotechnology, College of Life Sciences, Nanjing University, Nanjing 210093, China.

Jiangsu Key Laboratory of Biodiversity and Biotechnology, School of Life Sciences, Nanjing Normal University, Nanjing 210023, China.

出版信息

Tree Physiol. 2015 Jun;35(6):621-31. doi: 10.1093/treephys/tpv021. Epub 2015 Mar 26.

Abstract

During the development of woody twigs, the growth in leaf may or may not be proportional to the growth in stem. The presence or absence of a synchronicity between these two phenologies may reflect differences in life history adaptive strategies concerning carbon gain. We hypothesized that sun-adapted species are more likely to be less synchronous between growths in total leaf area (TLA) and stem length compared with shade-adapted species, with a bias in growth in stem length, and that shade-adapted species are more likely to be more synchronous between increases in individual leaf area (ILA) (leaf size) and leaf number (LN) during twig development compared with sun-adapted species, giving priority to growth of leaf size. We tested these two hypotheses by recording the phenologies of leaf emergence, leaf expansion and stem elongation during twig development for 19 evergreen woody species (including five shade-adapted understory species, six sun-adapted understory species and eight sun-adapted canopy species) in a subtropical evergreen broad-leaved forest in eastern China. We constructed indices to characterize the synchronicity between TLA and stem length (αLS) and between leaf size and leaf number (αSN) and we derived the α values from logistic functions taking the general form of A = A(max)/[1 + exp(β - αB)] (where A is the TLA or average ILA, B is the corresponding stem length or LN at a specific time, and A(max) is the maximum TLA or the maximum ILA of a twig; the higher the numerical value of α, the less synchronous the corresponding phenologies). Consistent with our hypotheses, sun-adapted species were higher both in α(LS) and α(SN), showing less synchronous patterns in the growths of TLA vs stem length and leaf size vs LN during twig development. Moreover, α(LS) and α(SN) were significantly positively correlated with relative growth rates of LN and leaf size across species, as indicated by both analyses of ordinary regression and phylogenetic generalized least squares. The across-species synchronies during twig development show that the temporal dynamics of the leaf size-twig size spectrum is of adaptive significance in plants. We suggest that temporal dynamics of plant functional traits should be extensively studied to characterize plant life history.

摘要

在木本小枝的发育过程中,叶片的生长与茎的生长可能成比例,也可能不成比例。这两种物候现象之间是否同步,可能反映了植物在碳获取方面生活史适应策略的差异。我们推测,与耐阴物种相比,阳生适应物种在总叶面积(TLA)增长和茎长增长之间更可能不同步,且茎长增长有偏差;与阳生适应物种相比,耐阴物种在小枝发育过程中,单个叶面积(ILA,即叶片大小)增加和叶片数量(LN)增加之间更可能同步,优先考虑叶片大小的增长。我们通过记录中国东部亚热带常绿阔叶林19种常绿木本植物(包括5种耐阴的林下物种、6种阳生适应的林下物种和8种阳生适应的冠层物种)小枝发育过程中的叶片出现、叶片扩展和茎伸长物候,来检验这两个假设。我们构建了指数来表征TLA与茎长之间(αLS)以及叶片大小与叶片数量之间(αSN)的同步性,并从逻辑函数中得出α值,其一般形式为A = A(max)/[1 + exp(β - αB)](其中A为TLA或平均ILA,B为特定时间的相应茎长或LN,A(max)为小枝的最大TLA或最大ILA;α的数值越高,相应物候现象的同步性越低)。与我们的假设一致,阳生适应物种的α(LS)和α(SN)值都更高,表明在小枝发育过程中,TLA与茎长以及叶片大小与LN的生长模式不同步。此外,普通回归分析和系统发育广义最小二乘法分析均表明,α(LS)和α(SN)与物种间LN和叶片大小的相对生长速率显著正相关。小枝发育过程中的跨物种同步性表明,叶片大小 - 小枝大小谱的时间动态在植物中具有适应性意义。我们建议应广泛研究植物功能性状的时间动态,以表征植物的生活史。

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