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叶片硅累积速率与光环境和造纸桑(桑科)枝生长速率的关系。

Leaf silicon accumulation rates in relation to light environment and shoot growth rates in paper mulberry (Broussonetia papyrifera, Moraceae).

机构信息

Graduate School of Agriculture, Kyoto University, Kitashirakawa Oiwakecho, Sakyo-ku, Kyoto, 606-8502, Japan.

出版信息

J Plant Res. 2021 Sep;134(5):1013-1020. doi: 10.1007/s10265-021-01326-z. Epub 2021 Jul 2.

Abstract

While increasing numbers of studies report wide variations of leaf silicon (Si) accumulation among plant species, within-species variations of leaf Si accumulation have scarcely been examined for tree species. As in crop plants, environmental factors that affect transpiration rates may influence passive transpiration-dependent transport of Si uptake in trees. Here, we tested a hypothesis that leaf Si accumulation rate should be higher in shoots that receive more light and thus achieve faster growth, using Broussonetia papyrifera, a pioneer tree species with successive leaf production and Si accumulation with leaf age. We marked individual leaves weekly throughout the growing season (June-September), and measured Si concentration and light availability in relation to the chronosequence of leaf age in September. In shoots that continued growing and successively produced leaves throughout the growing season, leaf Si content increased linearly with leaf age. In support of our hypothesis, leaf Si accumulation rate varied widely among shoots with positive correlations with shoot growth and light availability. In conclusion, both leaf age and microenvironment affect within-species variations in leaf Si concentration of this species, a moderate Si accumulator.

摘要

虽然越来越多的研究报告表明植物物种之间的叶片硅(Si)积累存在广泛的差异,但树种的叶片 Si 积累的种内差异几乎没有被研究过。与作物植物一样,影响蒸腾速率的环境因素可能会影响树木中 Si 吸收的被动蒸腾依赖性运输。在这里,我们使用了一种假设,即接收更多光的枝条的叶片 Si 积累率应该更高,从而实现更快的生长,研究了具有连续叶片生产和 Si 积累与叶片年龄相关的先锋树种构树。我们在整个生长季节(6 月至 9 月)每周标记单个叶片,并在 9 月根据叶片年龄的时间序列测量 Si 浓度和光可用性。在整个生长季节持续生长并连续产生叶片的枝条中,叶片 Si 含量随叶片年龄呈线性增加。支持我们的假设,叶片 Si 积累率在与枝条生长和光可用性呈正相关的枝条之间差异很大。总之,叶片年龄和微环境都会影响该中度 Si 积累物种的叶片 Si 浓度的种内变化。

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