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强遮荫条件下库页冷杉分生组织生长和死亡的抑制:顶芽、顶侧芽和茎形成层之间的比较

Suppression of growth and death of meristematic tissues in Abies sachalinensis under strong shading: comparisons between the terminal bud, the terminally lateral bud and the stem cambium.

作者信息

Yasuda Yuko, Utsumi Yasuhiro, Tan Xianfang, Tashiro Naoaki, Fukuda Kenji, Koga Shinya

机构信息

Graduate School of Bioresource and Bioenvironmental Sciences, Kyushu University, 6-10-1, Hakozaki, Higashi-ku, Fukuoka, 812-8581, Japan.

Faculty of Agriculture, Kyushu University, 6-10-1, Hakozaki, Higashi-ku, Fukuoka, 812-8581, Japan.

出版信息

J Plant Res. 2018 Sep;131(5):817-825. doi: 10.1007/s10265-018-1051-8. Epub 2018 Jun 23.

DOI:10.1007/s10265-018-1051-8
PMID:29936574
Abstract

The suppression of apical growth and radial trunk growth in trees under shade is a key factor in the competition mechanism among individuals in natural and artificial forests. However, the timing of apical and radial growth suppression after shading and the physiological processes involved have not been evaluated precisely. Twenty-one Abies sachalinensis seedlings of 5-years-old were shaded artificially under a relative light intensity of 5% for 70 days from August 1, and the histological changes of the terminal bud and terminally lateral bud of terminal leader and the cambial zone of the trunk base were analyzed periodically. In shade-grown trees, cell death of the leaf primordia in a terminal bud of terminal leader was observed in one of the three samples after 56 and 70 days of shading, whereas the leaf primordia in a terminal bud of terminal leader in all open-grown trees survived until the end of the experiment. In addition, the leaf primordia of the terminally lateral buds of terminal leader retained their cell nuclei until the end of the experiment. No histological changes were observed in the cambial cells after shading, but the shade-grown trees had less cambial activity than the open-grown trees through the experiment. Strong shading appeared to inhibit the formation and survival of cells in the terminal bud of terminal leader rather than the terminally lateral buds of terminal leader and the cambium. The suppression of the terminal bud growth and elongation of the surviving lateral buds would result in an umbrella-shaped crown under shade.

摘要

在自然和人工林中,树木在遮荫条件下顶端生长和树干径向生长受到抑制是个体间竞争机制的关键因素。然而,遮荫后顶端和径向生长抑制的时间以及所涉及的生理过程尚未得到精确评估。从8月1日起,对21株5年生的库页冷杉幼苗进行人工遮荫,相对光照强度为5%,持续70天,并定期分析顶梢顶端芽和顶梢侧芽以及树干基部形成层区域的组织学变化。在遮荫生长的树木中,遮荫56天和70天后,在三个样本中的一个样本中观察到顶梢顶端芽中叶原基的细胞死亡,而所有开阔生长树木中顶梢顶端芽的叶原基存活到实验结束。此外,顶梢顶梢侧芽的叶原基直到实验结束都保留着细胞核。遮荫后形成层细胞未观察到组织学变化,但在整个实验过程中,遮荫生长的树木形成层活性低于开阔生长的树木。强烈的遮荫似乎抑制了顶梢顶端芽中细胞的形成和存活,而不是顶梢顶梢侧芽和形成层。顶芽生长的抑制和存活侧芽的伸长将导致遮荫下形成伞形树冠。

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2
Morphological defects in native Japanese fir trees around the Fukushima Daiichi Nuclear Power Plant.福岛第一核电站周边日本冷杉原生树的形态缺陷
Sci Rep. 2015 Aug 28;5:13232. doi: 10.1038/srep13232.
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Partial shading of lateral branches affects growth, and foliage nitrogen- and water-use efficiencies in the conifer Cunninghamia lanceolata growing in a warm monsoon climate.
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Ann Bot. 2011 Sep;108(3):429-38. doi: 10.1093/aob/mcr168. Epub 2011 Aug 3.
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