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日本赤松树冠内叶龄对光合参数季节变化的影响及其与单位面积叶质量和叶氮浓度的关系。

Leaf-age effects on seasonal variability in photosynthetic parameters and its relationships with leaf mass per area and leaf nitrogen concentration within a Pinus densiflora crown.

作者信息

Han Qingmin, Kawasaki Tatsuro, Nakano Takashi, Chiba Yukihiro

机构信息

Department of Plant Ecology, Forestry and Forest Products Research Institute, Tsukuba, Ibaraki 305-8687, Japan.

出版信息

Tree Physiol. 2008 Apr;28(4):551-8. doi: 10.1093/treephys/28.4.551.

Abstract

In the temperate zone of Japan, Pinus densiflora Sieb. et Zucc. bears needles of up to three age classes in the upper crown and up to five age classes in the lower crown. To elucidate the effects of leaf age on photosynthetic parameters and its relationships with leaf mass per unit area (LMA) and leaf nitrogen (N(l)) concentration on an area (N(a)) and mass (N(m)) basis, we measured seasonal variations in LMA, N(l), light-saturated photosynthetic rate (A(max)), stomatal conductance (g(s)), maximum rate of carboxylation (V(cmax)) and maximum rate of electron transport (J(max)) in leaves of all age classes in the upper and lower crown. Leaf mass per unit area increased by 27% with increasing leaf age in the lower crown, but LMA did not depend on age in the upper crown. Leaf age had a significant effect on N(m) but not on N(a) in both crown positions, indicating that decreases in N(m) resulted from dilution. Photosynthetic parameters decreased significantly with leaf age in the lower crown (39% for A(max) and 43% for V(cmax)), but the effect of leaf age was not as great in the upper crown, although these parameters exhibited seasonal variation in both crown positions. Regression analysis indicated a close relationship between LMA and N(a), regardless of age class or when each age class was pooled (r(2) = 0.57-0.86). Relationships between LMA and N(a) and among A(max), V(cmax) and J(max) were weak or not significant when all age classes were examined by regression analysis. However, compared with older leaves, relationships among LMA, N(a) and A(max) were stronger in younger leaves. These results indicate that changes in LMA and N(l) mainly reflect light acclimation during leaf development, but they are only slightly affected by irradiance in mature leaves. In conclusion, LMA and N(l) are useful parameters for estimating photosynthetic capacity, but age-related effects need to be taken into account, especially in evergreen conifers.

摘要

在日本的温带地区,赤松(Pinus densiflora Sieb. et Zucc.)树冠上部最多有三个年龄级的针叶,树冠下部最多有五个年龄级的针叶。为了阐明叶龄对光合参数的影响及其与单位面积叶质量(LMA)以及基于面积(N(a))和质量(N(m))的叶片氮(N(l))浓度之间的关系,我们测量了树冠上部和下部所有年龄级叶片中LMA、N(l)、光饱和光合速率(A(max))、气孔导度(g(s))、最大羧化速率(V(cmax))和最大电子传递速率(J(max))的季节变化。树冠下部单位面积叶质量随叶龄增加而增加27%,但树冠上部的LMA不依赖于叶龄。在两个树冠位置,叶龄对N(m)有显著影响,但对N(a)没有影响,这表明N(m)的降低是由稀释作用导致的。树冠下部光合参数随叶龄显著降低(A(max)降低39%,V(cmax)降低43%),但叶龄对树冠上部的影响没有那么大,尽管这些参数在两个树冠位置都表现出季节变化。回归分析表明,无论年龄级如何或各年龄级合并时,LMA与N(a)之间都存在密切关系(r(2) = 0.57 - 0.86)。当通过回归分析检查所有年龄级时,LMA与N(a)之间以及A(max)、V(cmax)和J(max)之间的关系较弱或不显著。然而,与老叶相比,幼叶中LMA、N(a)和A(max)之间的关系更强。这些结果表明,LMA和N(l)的变化主要反映叶片发育过程中的光适应,但它们在成熟叶片中仅受到光照强度的轻微影响。总之,LMA和N(l)是估计光合能力的有用参数,但需要考虑与年龄相关的影响,尤其是在常绿针叶树中。

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