Mascagni Flavia, Vangelisti Alberto, Usai Gabriele, Giordani Tommaso, Cavallini Andrea, Natali Lucia
Department of Agriculture, Food and Environment, University of Pisa, Via del Borghetto 80, 56124, Pisa, Italy.
Genetica. 2020 Feb;148(1):13-23. doi: 10.1007/s10709-020-00085-4. Epub 2020 Jan 20.
Long terminal repeats (LTR) retrotransposons have a major role in determining genome size, structure and function, thanks to their ability to transpose. We performed a meta-analysis of LTR-retrotransposon expression in roots of sunflower plantlets treated with different plant hormones, chemicals and NaCl. By using Illumina cDNA libraries, available from public repositories, we measured the number of reads matching the retrotranscriptase domains isolated from a whole genome library of retrotransposons. LTR-retrotransposons resulted in general barely expressed, except for 4 elements, all belonging to the AleII lineage, which showed high transcription levels in roots of both control and treated plants. The expression of retrotransposons in treated plants was slightly higher than in the control. Transcribed elements belonged to specific chromosomal loci and were not abundant in the genome. A few elements resulted differentially expressed depending on the treatment. Results suggest that, although most retrotransposons are not expressed, the transcription of such elements is related to their abundance, to their position in the chromosome and to their lineage.
长末端重复序列(LTR)逆转录转座子因其转座能力,在决定基因组大小、结构和功能方面发挥着重要作用。我们对用不同植物激素、化学物质和氯化钠处理的向日葵幼苗根中LTR逆转录转座子的表达进行了荟萃分析。通过使用可从公共数据库获得的Illumina cDNA文库,我们测量了与从逆转录转座子全基因组文库中分离出的逆转录酶结构域匹配的读数数量。LTR逆转录转座子总体上几乎不表达,除了4个元件,它们都属于AleII谱系,在对照植物和处理植物的根中均显示出高转录水平。处理植物中逆转录转座子的表达略高于对照。转录元件属于特定的染色体位点,在基因组中并不丰富。一些元件根据处理方式表现出差异表达。结果表明,尽管大多数逆转录转座子不表达,但这些元件的转录与它们的丰度、在染色体上的位置以及它们的谱系有关。