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首页> 外文期刊>Frontiers in Plant Science >Sequencing the Plastid Genome of Giant Ragweed ( Ambrosia trifida, Asteraceae) From a Herbarium Specimen
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Sequencing the Plastid Genome of Giant Ragweed ( Ambrosia trifida, Asteraceae) From a Herbarium Specimen

机译:从标本室标本测序巨豚草(<斜体> Trifida ,菊科)的质体基因组。

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We report the first plastome sequence of giant ragweed ( Ambrosia trifida ); with this new genome information, we assessed the phylogeny of Asteraceae and the transcriptional profiling against glyphosate resistance in giant ragweed. Assembly and genic features show a normal angiosperm quadripartite plastome structure with no signatures of deviation in gene directionality. Comparative analysis revealed large inversions across the plastome of giant ragweed and the previously sequenced members of the plant family. Asteraceae plastid genomes contain two inversions of 22.8 and 3.3 kb; the former is located between trn S-GCU and trn G-UCC genes, and the latter between trn E-UUC and trn T-GGU genes. The plastid genome sequences of A. trifida and the related species, Ambrosia artemisiifolia , are identical in gene content and arrangement, but they differ in length. The phylogeny is well-resolved and congruent with previous hypotheses about the phylogenetic relationship of Asteraceae. Transcriptomic analysis revealed divergence in the relative expressions at the exonic and intronic levels, providing hints toward the ecological adaptation of the genus. Giant ragweed shows various levels of glyphosate resistance, with introns displaying higher expression patterns at resistant time points after the assumed herbicide treatment.
机译:我们报告了巨豚草(Ambrosia trifida)的第一个质体序列。利用这一新的基因组信息,我们评估了菊科植物的系统发育和针对豚草抗性的转录谱。装配和基因特征显示正常的被子植物四部分质体结构,没有基因方向性偏差的迹象。对比分析显示,豚草的质体组和该植物家族先前已测序的成员发生了较大的倒置。菊科质体基因组包含两个分别为22.8和3.3 kb的倒位;前者位于trn S-GCU和trn G-UCC基因之间,后者位于trn E-UUC和trn T-GGU基因之间。 Trifida A.及其相关物种Ambrosia artemisiifolia的质体基因组序列在基因含量和排列上均相同,但长度不同。系统发育被很好地解析并且与关于菊科的系统发生关系的先前假设一致。转录组学分析揭示了外显子和内含子水平上相对表达的差异,为该属的生态适应提供了提示。豚草显示出不同水平的草甘膦抗性,内含子在假定的除草剂处理后的抗性时间点显示出较高的表达模式。

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