长期原位组织冷却不会减少瑞士树线的木质化,但会增加“蓝色”霜冻环的风险

IF 2.6 3区 生物学 Q2 PLANT SCIENCES
Christian Körner, Armando Lenz, Günter Hoch
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引用次数: 5

摘要

Lenz等人在2013年的论文中,通过使用跟踪环境温度的Peltier恒温树枝项圈,说明了在低温极限下生长的树木如何应对3 K的慢性原位变暖或降温。基于显微取芯的季节性树木年轮形成分析包括用于木质化的双染色切片机横截面,但这些数据未包含在出版物中。在这篇简短的通讯中,我们补充了2009年在瑞士树线收集的这些数据,我们表明,对应于海拔500-600米的3K冷却对木质化没有影响。然而,当霜冻事件发生在环形成的早期时,3K的冷却产生了一层蓝色(非木质化)的细胞,随后是正常木质化的细胞,持续整个季节。因此,该事件没有影响形成层,但中断了处于关键发育阶段的细胞的细胞壁成熟。我们得出的结论是,长期冷却不会影响树线的木质化,但会增加过早木质部组织霜冻损伤的风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Chronic in situ tissue cooling does not reduce lignification at the Swiss treeline but enhances the risk of ‘blue’ frost rings

Chronic in situ tissue cooling does not reduce lignification at the Swiss treeline but enhances the risk of ‘blue’ frost rings

In their 2013 paper, Lenz et al. illustrated how trees growing at the low-temperature limit respond to a chronic in situ warming or cooling by 3 K, by employing Peltier-thermostated branch collars that tracked ambient temperatures. The micro-coring-based analysis of seasonal tree ring formation included double-staining microtome cross sections for lignification, but these data had not been included in the publication. In this short communication, we complement these data, collected in 2009 at the Swiss treeline, and we show that a 3 K cooling that corresponds to a 500–600 m higher elevation, had no influence on lignification. However, when a frost event occurred during the early part of ring formation, the 3 K cooling produced a blue (non-lignified) layer of cells, followed by normally lignified cells for the rest of the season. Hence, the event did not affect the cambium, but interrupted cell wall maturation in cells that were in a critical developmental stage. We conclude, that chronic cooling does not affect lignification at treeline, but it increases the risk of frost damage in premature xylem tissue.

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来源期刊
Alpine Botany
Alpine Botany PLANT SCIENCES-
CiteScore
5.10
自引率
18.50%
发文量
15
审稿时长
>12 weeks
期刊介绍: Alpine Botany is an international journal providing a forum for plant science studies at high elevation with links to fungal and microbial ecology, including vegetation and flora of mountain regions worldwide.
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