globalchange  > 全球变化的国际研究计划
DOI: 10.1007/s13595-019-0870-7
WOS记录号: WOS:000482386200002
论文题名:
Stem cycle analyses help decipher the nonlinear response of trees to concurrent warming and drought
作者: Balducci, Lorena1; Deslauriers, Annie1; Rossi, Sergio1; Giovannelli, Alessio2
通讯作者: Balducci, Lorena
刊名: ANNALS OF FOREST SCIENCE
ISSN: 1286-4560
EISSN: 1297-966X
出版年: 2019
卷: 76, 期:3
语种: 英语
英文关键词: Asynchronous warming ; Water deficit ; Point dendrometer ; Water status ; Saplings ; Black spruce
WOS关键词: HIGH-RESOLUTION ANALYSIS ; BLACK SPRUCE ; WOOD FORMATION ; TEMPERATURE RESPONSE ; WATER AVAILABILITY ; CARBON BALANCE ; JACK PINE ; SAP FLOW ; GROWTH ; FORESTS
WOS学科分类: Forestry
WOS研究方向: Forestry
英文摘要:

Key message High-resolution analysis of stem radius variation can quantify the impact of warming and drought on stem water balance and stem growth in black spruce [Picea mariana(Mill.) B.S.P.)]. Drought affected plant water status and stem growth. However, warming affects the components of the circadian stem cycle differently if the impacts occur in the daytime or nighttime. The interactive effect of abiotic stresses had less impact on the circadian stem cycle than when the stresses occurred independently. Context Warming and recent droughts in boreal regions reflect the multiple dimensions of climate change. How these climate-related stresses will affect the stem growth of trees remains to be described. Plant water relations can detect the dynamics of stem depletion and replenishment under conditions of climate-forced stress. Aims This study aimed to verify the impacts of a combination of asynchronous warming (nighttime versus daytime warming) and drought on stem water balance and stem growth in black spruce [Picea mariana (Mill.) B.S.P.)]. Methods We investigated the water status and variations in stem radius of black spruce saplings growing in a controlled environment from May through August. We grew four-year-old saplings in warmer conditions either during the day (DW) or night (NW) at temperatures ca. 6 degrees C warmer than the ambient air temperature (CT). We then simulated a one-month drought in June. Automatic point dendrometers provided a high-resolution analysis of variations in stem radius, and we also monitored leaf water potentials and volumetric soil water content during the entire experimental period. Results We detected significant reductions in stem radius variation under water deficit conditions. In the daytime warming scenario, we observed a significant increase in the duration of contraction and a decrease in expansion of the stems. The amplitude of this contraction and expansion was reduced under the nighttime warming conditions. The main effect of warming was to enhance drought stress by accelerating soil water depletion. Changes in predawn water potential drove the duration of stem circadian cycles under conditions of daytime warming, whereas irreversible growth dynamics drove these cycles under nighttime warming conditions due to the midday water potential. The interaction of night/daytime asynchronous warming and drought reduced the amplitude rather than the duration of stem contraction and expansion. Conclusion Water deficit decreased stem growth during the growing season. Asymmetric warming (as a single independent treatment) affected the timing and magnitude of stem circadian cycles. Under daytime warming scenarios, the duration of contraction and expansion were regulated mainly by predawn water potential, inducing longer (shorter) durations of contraction (expansion). Under nighttime warming, the smaller amplitudes of stem contraction and expansion were associated with midday water potential. Therefore, the interaction of abiotic stresses had less of an impact on the circadian stem cycle components than when these stresses were applied independently.


Citation statistics:
资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/146070
Appears in Collections:全球变化的国际研究计划

Files in This Item:

There are no files associated with this item.


作者单位: 1.Univ Quebec Chicoutimi, Dept Sci Fondamentales, 555 Blvd Univ, Chicoutimi, PQ G7H 2B1, Canada
2.CNR, IRET, Via Madonna del Piano 10, I-50019 Sesto Fiorentino, Italy

Recommended Citation:
Balducci, Lorena,Deslauriers, Annie,Rossi, Sergio,et al. Stem cycle analyses help decipher the nonlinear response of trees to concurrent warming and drought[J]. ANNALS OF FOREST SCIENCE,2019-01-01,76(3)
Service
Recommend this item
Sava as my favorate item
Show this item's statistics
Export Endnote File
Google Scholar
Similar articles in Google Scholar
[Balducci, Lorena]'s Articles
[Deslauriers, Annie]'s Articles
[Rossi, Sergio]'s Articles
百度学术
Similar articles in Baidu Scholar
[Balducci, Lorena]'s Articles
[Deslauriers, Annie]'s Articles
[Rossi, Sergio]'s Articles
CSDL cross search
Similar articles in CSDL Cross Search
[Balducci, Lorena]‘s Articles
[Deslauriers, Annie]‘s Articles
[Rossi, Sergio]‘s Articles
Related Copyright Policies
Null
收藏/分享
所有评论 (0)
暂无评论
 

Items in IR are protected by copyright, with all rights reserved, unless otherwise indicated.