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杨树树皮贮藏蛋白积累的光周期调控

Photoperiod control of poplar bark storage protein accumulation.

作者信息

Coleman G D, Chen T H, Ernst S G, Fuchigami L

机构信息

Department of Horticulture, Oregon State University, Corvallis, Oregon 97331.

出版信息

Plant Physiol. 1991 Jul;96(3):686-92. doi: 10.1104/pp.96.3.686.

Abstract

Bark storage proteins (BSPs) accumulate in the inner bark parenchyma of many woody plants during autumn and winter. We investigated the effect of a short-day (SD) photoperiod on the accumulation of the 32-kilodalton bark storage protein of poplar (Populus deltoides Bart. ex Marsh.) under controlled environmental and natural growing conditions. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis and protein gel blot analysis revealed that 10 days of SD exposure (8 hours of light) resulted in a 20% increase in the relative abundance of the 32-kilodalton bark storage protein of poplar. After 17 days of SD exposure, the 32-kilodalton bark storage protein accounted for nearly one-half of the soluble bark proteins. In natural field conditions, accumulation of the 32-kilodalton bark storage protein was observed to start by August 18 (daylength 14.1 hours). Immunoprecipitation of in vitro translation products with anti-BSP serum revealed that the SD protein accumulation was correlated with changes in the pool of translatable mRNA. A survey of poplar clones from different geographic origins revealed the presence of the 32-kilodalton BSP in the dormant bark of all the clones tested. These results demonstrate that a SD photoperiod induces, whether directly or indirectly, rapid changes in woody plant gene expression, leading to the accumulation of BSP.

摘要

树皮贮藏蛋白(BSPs)在许多木本植物的内树皮薄壁组织中于秋冬季节积累。我们在可控环境和自然生长条件下,研究了短日照(SD)光周期对杨树(Populus deltoides Bart. ex Marsh.)32千道尔顿树皮贮藏蛋白积累的影响。十二烷基硫酸钠-聚丙烯酰胺凝胶电泳和蛋白质凝胶印迹分析表明,10天的SD暴露(8小时光照)使杨树32千道尔顿树皮贮藏蛋白的相对丰度增加了20%。SD暴露17天后,32千道尔顿树皮贮藏蛋白占可溶性树皮蛋白的近一半。在自然田间条件下,观察到32千道尔顿树皮贮藏蛋白的积累在8月18日(日长14.1小时)开始。用抗BSP血清对体外翻译产物进行免疫沉淀表明,SD蛋白积累与可翻译mRNA库的变化相关。对来自不同地理来源的杨树无性系进行的一项调查显示,在所测试的所有无性系的休眠树皮中都存在32千道尔顿的BSP。这些结果表明,SD光周期直接或间接诱导木本植物基因表达的快速变化,导致BSP的积累。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/94c0/1080831/1b02806ab32d/plntphys00694-0027-a.jpg

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