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春季光抑制限制了冬季去除林冠树木后日本落叶松林底层幼苗的再生。

Springtime photoinhibition constrains regeneration of forest floor seedlings of Abies sachalinensis after a removal of canopy trees during winter.

机构信息

Hokkaido Research Center, Forestry and Forest Products Research Institute, Hitsujigaoka 7, Sapporo, 062-8516, Japan.

Department of Plant Ecology, Forestry and Forest Products Research Institute, Matsunosato 1, Tsukuba, 305-8687, Japan.

出版信息

Sci Rep. 2018 Apr 20;8(1):6310. doi: 10.1038/s41598-018-24711-6.

Abstract

A clear-cutting of canopy trees during winter often causes severe foliar damage during the following spring in forest floor seedlings of Abies sachalinensis, a typical shade-tolerant evergreen coniferous species. The maximum photochemical efficiency of photosystem II after an overnight dark adaptation showed a temporary decrease immediately before budbreak in 1-year-old shoots of A. sachalinensis seedlings grown under full sunlight in a nursery, suggesting "springtime photoinhibition" related to the phenology of evergreen coniferous species. In the field, a greater rate of canopy tree cutting during winter was associated with more severe photoinhibition in the following spring, immediately before budbreak, which subsequently resulted in a reduction in carbon gain in 1-year-old shoots, and consequently suppressed the growth of current-year shoots. Although photoinhibition under low temperature is a well-known factor to determine the survival rate of tree seedlings during winter in cool regions, the present study additionally proposes that the temporary increase in the susceptibility to photoinhibition in springtime i.e. "springtime photoinhibition" would be a constraint for the regeneration of coniferous seedlings especially when the canopy trees are removed during winter.

摘要

冬季林冠树木的皆伐常常导致翌年春季林下红松(Abies sachalinensis)幼苗严重的叶片损伤,红松是一种典型的耐阴常绿针叶树种。在苗圃中全光照下生长的 1 年生红松幼苗,经过一夜暗适应后,最大光化学效率在芽突破前的一段时间内会暂时下降,这表明与常绿针叶树种物候有关的“春季光抑制”。在野外,冬季林冠树木的砍伐率越高,翌年春季芽突破前的光抑制越严重,这导致 1 年生枝条的碳增益减少,进而抑制当年生枝条的生长。虽然低温下的光抑制是决定寒冷地区树木幼苗冬季存活率的一个众所周知的因素,但本研究还提出,春季对光抑制敏感性的暂时增加,即“春季光抑制”,可能会限制针叶树幼苗的更新,特别是在冬季去除林冠树木时。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4d7/5910419/2bc71692049f/41598_2018_24711_Fig1_HTML.jpg

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