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Changes in homologous recombination frequency in Arabidopsis thaliana plants exposed to stress depend on time of exposure during development and on duration of stress exposure

机译:拟南芥暴露于胁迫下的同源重组频率的变化取决于发育过程中的暴露时间和胁迫暴露的持续时间

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In the past, we showed that exposure to abiotic and biotic stresses changes the homologous recombination frequency (HRF) in somatic tissue and in the progeny. In current work we planned to answer the following question: do stress intensity/duration and time during exposure influence changes in somatic HRF and transgenerational changes in HRF? Here, we tested the effects of exposure to UV-C, cold and heat on HRF at 7,14,21 and 28 days post germination (dpg). We found that exposure at 14 and 21 dpg resulted in a higher increase in HRF as compared to exposure at 7 dpg; longer exposure to UV-C resulted in a higher frequency of HR, whereas prolonged exposure to cold or heat, especially at later developmental stages, had almost no effect on somatic HRF. Exposure at 7 dpg had a positive effect on somatic growth of plants; plants exposed to stress at this age had larger leaves. The analysis of HRF in the progeny showed that the progeny of plants exposed to stress at 7 dpg had an increase in somatic HRF andshowed larger sizes of recombination spots on leaves. The progeny of plants exposed to UV-C at 7 dpg and the progeny of plants exposed to cold or heat at 28 dpg had larger leaves as compared to control plants. To summarize, our experiments showed that changes in somatic and transgenerational HRF depend on the type of stress plants are exposed to, time of exposure during development and the duration of exposure.
机译:在过去,我们表明暴露于非生物和生物胁迫会改变体细胞组织和子代中的同源重组频率(HRF)。在当前的工作中,我们计划回答以下问题:应激强度/持续时间和暴露期间的时间是否会影响体细胞HRF的变化和HRF的跨代变化?在这里,我们测试了发芽后7,14,21和28天暴露于UV-C,冷热对HRF的影响(dpg)。我们发现,与在7 dpg的暴露相比,在14和21 dpg的暴露导致HRF的增加更高;长时间暴露于UV-C会导致较高的HR频率,而长时间暴露于冷或热下,尤其是在发育后期,几乎不会对体细胞HRF产生影响。 7 dpg的暴露量对植物的体细胞生长有积极影响;在这个年龄受到压力的植物叶片较大。对子代中HRF的分析表明,在7 dpg暴露于胁迫的植物的子代中体细胞HRF增加,并且在叶片上显示出更大的重组斑点。与对照植物相比,在7 dpg下暴露于UV-C的植物的子代和在28 dpg下暴露于冷或热的植物的子代具有较大的叶片。总而言之,我们的实验表明,体细胞和跨世代HRF的变化取决于植物承受的胁迫类型,发育过程中的暴露时间和暴露持续时间。

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