globalchange  > 全球变化的国际研究计划
DOI: 10.1111/ppl.12873
WOS记录号: WOS:000478917400009
论文题名:
Cold deacclimation mechanisms and reacclimation potential in flower buds of blackcurrant (Ribes nigrum)
作者: Kjaer, Katrine H.1,3; Winde, Jacob1; Petersen, Karen K.1; Yde, Christian C.1,4; Pagter, Majken2
通讯作者: Pagter, Majken
刊名: PHYSIOLOGIA PLANTARUM
ISSN: 0031-9317
EISSN: 1399-3054
出版年: 2019
卷: 167, 期:1, 页码:111-126
语种: 英语
WOS关键词: FATTY-ACID-COMPOSITION ; FREEZING TOLERANCE ; PLASMA-MEMBRANE ; TEMPERATURE ; WINTER ; ACCLIMATION ; PLANTS ; BIOSYNTHESIS ; METABOLOME ; PHENOLOGY
WOS学科分类: Plant Sciences
WOS研究方向: Plant Sciences
英文摘要:

As a consequence of global climate change, cold acclimation and deacclimation cycles are becoming increasingly frequent during winter in temperate regions. However, little is known about plant deacclimation and in particular reacclimation mechanisms, although deacclimation resistance and the ability to reacclimate may have wide-ranging consequences regarding plant productivity in a changing climate. Here, we report time-dependent responses of freezing tolerance, respiration rates, metabolite contents (high-resolution magic angle spinning NMR) and fatty acid levels (gas chromatography) in flower buds of two ecodormant Ribes nigrum cultivars exposed to three different deacclimation temperatures followed by a reacclimation treatment at 4 degrees C. The data reveal that despite differences in the progression of deacclimation, the capacity of blackcurrant flower buds to reharden in late winter is virtually non-existing, implying that increasingly irregular temperature patterns is critical for blackcurrant fruit yield. The early phase of deacclimation is associated with a transient increase in respiration and decreasing contents of amino acids, tricarboxylic acid (TCA) cycle intermediates and sugars, indicating an increased need for carbon sources and respiratory energy production for the activation of growth. Decreasing sugar levels may additionally cause loss of freezing tolerance. Deacclimation also involves desaturation of membrane lipids, which likely also contributes to decreased freezing tolerance but may also reflect biosynthesis of signaling molecules stimulating growth and floral organ differentiation. These data provide new insights into the under-researched deacclimation mechanisms and the ability of blackcurrant to reacclimate following different advancements of deacclimation and contribute to our understanding of plant responses to increasingly irregular temperature patterns.


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被引频次[WOS]:8   [查看WOS记录]     [查看WOS中相关记录]
资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/145966
Appears in Collections:全球变化的国际研究计划

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作者单位: 1.Aarhus Univ, Dept Food Sci, DK-5792 Aarslev, Denmark
2.Aalborg Univ, Dept Chem & Biosci, DK-9220 Aalborg, Denmark
3.Danish Technol Inst, Gregersensvej 1, DK-2630 Taastrup, Denmark
4.DuPont Nutr Biosci ApS, Edwin Rahrs Vej 38, DK-8220 Brabrand, Denmark

Recommended Citation:
Kjaer, Katrine H.,Winde, Jacob,Petersen, Karen K.,et al. Cold deacclimation mechanisms and reacclimation potential in flower buds of blackcurrant (Ribes nigrum)[J]. PHYSIOLOGIA PLANTARUM,2019-01-01,167(1):111-126
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