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证实甜樱桃芽休眠期诱导和解除的代谢物。

Metabolites That Confirm Induction and Release of Dormancy Phases in Sweet Cherry Buds.

作者信息

Götz Klaus-P, Chmielewski Frank-M

机构信息

Agricultural Climatology, Faculty of Life Sciences, Humboldt-University of Berlin, Albrecht-Thaer-Weg 5, 14195 Berlin, Germany.

出版信息

Metabolites. 2023 Feb 3;13(2):231. doi: 10.3390/metabo13020231.

Abstract

Here we report on metabolites found in a targeted profiling of 'Summit' flower buds for nine years, which could be indicators for the timing of endodormancy release (t) and beginning of ontogenetic development (t*). Investigated metabolites included chrysin, arabonic acid, pentose acid, sucrose, abscisic acid (ABA), and abscisic acid glucose ester (ABA-GE). Chrysin and water content showed an almost parallel course between leaf fall and t*. After 'swollen bud', water content raised from ~60 to ~80% at open cluster, while chrysin content decreased and lost its function as an acetylcholinesterase inhibitor. Both parameters can be suitable indicators for t*. Arabonic acid showed a clear increase after t*. Pentose acid would be a suitable metabolite to identify t and t*, but would not allow describing the ecodormancy phase, because of its continuously low value during this time. Sucrose reached a maximum during ecodormancy and showed a significant correlation with air temperature, which confirms its cryoprotective role in this phase. The ABA content showed maximum values during endodormancy and decreased during ecodormancy, reaching 50% of its content t at t*. It appears to be the key metabolite to define the ecodormancy phase. The ABA-GE was present at all stages and phases and was much higher than the ABA content and is a readily available storage pool in cherry buds.

摘要

在此,我们报告了对‘Summit’花芽进行为期九年的靶向分析中发现的代谢物,这些代谢物可能是内休眠解除时间(t)和个体发育开始时间(t*)的指标。研究的代谢物包括白杨素、阿拉伯糖酸、戊糖酸、蔗糖、脱落酸(ABA)和脱落酸葡萄糖酯(ABA-GE)。白杨素和含水量在落叶至t之间呈现出几乎平行的变化趋势。在‘膨大芽’之后,开放簇期的含水量从约60%升至约80%,而白杨素含量下降,失去了作为乙酰胆碱酯酶抑制剂的功能。这两个参数都可能是t的合适指标。阿拉伯糖酸在t之后明显增加。戊糖酸将是识别t和t的合适代谢物,但由于其在此期间持续处于低值,无法描述生态休眠阶段。蔗糖在生态休眠期间达到最大值,且与气温显著相关,这证实了其在此阶段的抗冻作用。ABA含量在内休眠期间达到最大值,在生态休眠期间下降,在t*时降至其含量t的50%。它似乎是定义生态休眠阶段的关键代谢物。ABA-GE在所有阶段和时期均存在,且远高于ABA含量,是樱桃芽中一个随时可用的储存库。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f51/9961560/b73440941ee4/metabolites-13-00231-g001a.jpg

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