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温度对越橘(Vaccinium myrtillus L.)果实的表皮蜡质成分有重大影响。

Temperature has a major effect on the cuticular wax composition of bilberry ( L.) fruit.

作者信息

Trivedi Priyanka, Klavins Linards, Hykkerud Anne Linn, Kviesis Jorens, Elferts Didzis, Martinussen Inger, Klavins Maris, Karppinen Katja, Häggman Hely, Jaakola Laura

机构信息

Department of Ecology and Genetics, University of Oulu, Oulu, Finland.

Department of Environmental Science, University of Latvia, Riga, Latvia.

出版信息

Front Plant Sci. 2022 Sep 20;13:980427. doi: 10.3389/fpls.2022.980427. eCollection 2022.

Abstract

Cuticle is the first layer protecting plants against external biotic and abiotic factors and is responsive to climatic factors as well as determined by genetic adaptations. In this study, the chemical composition of bilberry fruit cuticular wax was investigated through a latitudinal gradient from Latvia (56°N 24°E) through Finland (65°N 25°E) to northern Norway (69°N 18°E) in two seasons 2018 and 2019. Changes in the major cuticular wax compounds, including triterpenoids, fatty acids, alkanes, aldehydes, ketones, and primary alcohols, were detected by GC-MS analysis. Generally, a decreasing trend in the proportion of triterpenoids from southern to northern latitudes, accompanied with an increase in proportion of fatty acids, aldehydes, and alkanes, in bilberry fruit cuticular wax was observed. A correlation analysis between climatic factors with proportion of wax compounds indicated that temperature was the main factor affecting the cuticular wax composition in bilberries. A controlled phytotron experiment with southern and northern bilberry ecotypes confirmed the major effect of temperature on bilberry fruit cuticular wax load and composition. Elevated temperature increased wax load most in berries of northern ecotypes. The level of triterpenoids was higher, while levels of fatty acids and alkanes were lower, in wax of bilberry fruits ripened at 18°C compared to 12°C in both northern and southern ecotypes. Based on our results, it can be postulated that the predicted increase in temperature due to climate change leads to alterations in fruit cuticular wax load and composition. In northern ecotypes, the alterations were especially evident.

摘要

角质层是保护植物免受外部生物和非生物因素影响的第一层,它对气候因素有响应,同时也由遗传适应性决定。在本研究中,于2018年和2019年的两个季节,通过从拉脱维亚(北纬56°东经24°)经芬兰(北纬65°东经25°)到挪威北部(北纬69°东经18°)的纬度梯度,对越橘果实角质层蜡质的化学成分进行了研究。通过气相色谱 - 质谱分析检测了主要角质层蜡质化合物的变化,包括三萜类化合物、脂肪酸、烷烃、醛、酮和伯醇。一般来说,观察到越橘果实角质层蜡质中三萜类化合物的比例从南向北呈下降趋势,同时脂肪酸、醛和烷烃的比例增加。气候因素与蜡质化合物比例之间的相关性分析表明,温度是影响越橘角质层蜡质组成的主要因素。对南方和北方越橘生态型进行的可控人工气候箱实验证实了温度对越橘果实角质层蜡质负载和组成的主要影响。温度升高对北方生态型浆果的蜡质负载增加最为明显。在18°C下成熟的越橘果实蜡质中,三萜类化合物的含量较高,而脂肪酸和烷烃的含量较低,无论是北方还是南方生态型,与12°C相比均如此。根据我们的结果,可以推测气候变化导致的预计温度升高会导致果实角质层蜡质负载和组成的改变。在北方生态型中,这种改变尤为明显。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/56f0/9530925/83c70f2b112b/fpls-13-980427-g001.jpg

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