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染色体倒位的适应值与气候变化——对巴尔干地区自然种群的研究

The Adaptive Value of Chromosomal Inversions and Climatic Change-Studies on the Natural Populations of from the Balkans.

作者信息

Zivanovic Goran, Arenas Concepció, Mestres Francesc

机构信息

Department of Genetics, Institute for Biological Research "Sinisa Stankovic"-National Institute of Republic of Serbia, University of Belgrade, Bulevar Despota Stefana 142, 11000 Belgrade, Serbia.

Departament de Genètica, Microbiologia i Estadística, Secció d'Estadística, Universitat de Barcelona, Av. Diagonal 643, 08028 Barcelona, Spain.

出版信息

Insects. 2023 Jul 1;14(7):596. doi: 10.3390/insects14070596.

Abstract

The adaptive value of the chromosomal inversion polymorphism with regard to environmental effects is well-known. However, the specific details of the inversion adaptations to the global warming scenario deserve to be analyzed. Toward this aim, polymorphism and karyotypes were studied in 574 individuals from Petnica (Serbia) in annual samples taken in June for the period 2019-2022. Comparing the results of Petnica (Cfa: humid subtropical climate) with those from Avala (Serbia: Cfb, temperate oceanic climate) and Font Groga (Barcelona, Spain; Csa: hot-summer Mediterranean climate), significant differences were observed for their chromosomal polymorphism. In Petnica, inversions from U and E chromosomes mainly reacted significantly with regard to temperature, humidity, and rainfall. Moreover, the inversion polymorphism from Petnica (2019-2022) was compared with that from 1995. In this period, a significant increase in mean and maximum temperature was observed. However, to properly explain the observed variations of inversions over time, it was necessary to carefully analyze annual seasonal changes and particular heat wave episodes. Interestingly, yearly fluctuations of U chromosome 'warm'-adapted inversions corresponded with opposite changes in 'non-thermal' inversions. Perhaps these types of inversions were not correctly defined with regard to thermal adaptation, or these fluctuations were also due to adaptations to other physical and/or biological variables. Finally, a joint study of chromosomal inversion polymorphism from many Balkan populations of indicated that different climatic regions presented distinct composition, including thermal-adapted inversions.

摘要

染色体倒位多态性在环境影响方面的适应价值是众所周知的。然而,倒位对全球变暖情景的具体适应细节值得分析。为此,在2019 - 2022年6月采集的年度样本中,对来自塞尔维亚佩特尼察的574名个体的多态性和核型进行了研究。将佩特尼察(Cfa:湿润亚热带气候)的结果与阿瓦拉(塞尔维亚:Cfb,温带海洋性气候)和丰特格罗加(西班牙巴塞罗那;Csa:炎热夏季地中海气候)的结果进行比较,观察到它们的染色体多态性存在显著差异。在佩特尼察,U和E染色体的倒位主要在温度、湿度和降雨量方面有显著反应。此外,将佩特尼察(2019 - 2022年)的倒位多态性与1995年的进行了比较。在此期间,观察到平均温度和最高温度显著升高。然而,为了正确解释观察到的倒位随时间的变化,有必要仔细分析年度季节性变化和特定的热浪事件。有趣的是,U染色体“热适应”倒位的年度波动与“非热”倒位的相反变化相对应。也许这些类型的倒位在热适应方面没有得到正确定义,或者这些波动也是由于对其他物理和/或生物变量的适应。最后,对许多巴尔干半岛种群的染色体倒位多态性进行的联合研究表明,不同的气候区域呈现出不同的组成,包括热适应倒位。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42c0/10380441/a1c401558795/insects-14-00596-g001.jpg

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