Institute of Natural Science, Yeungnam University, Gyeongsan, Gyeongbuk, 38541, South Korea.
Department of Life Sciences, Yeungnam University, Gyeongsan, Gyeongbuk, 38541, South Korea.
Sci Rep. 2018 Sep 11;8(1):13568. doi: 10.1038/s41598-018-31938-w.
We generated a complete plastid genome (plastome) sequence for Lamprocapnos spectabilis, providing the first complete plastome from the subfamily Fumarioideae (Papaveraceae). The Lamprocapnos plastome shows large differences in size, structure, gene content, and substitution rates compared with two sequenced Papaveraceae plastomes. We propose a model that explains the major rearrangements observed, involving at least six inverted repeat (IR) boundary shifts and five inversions, generating a number of gene duplications and relocations, as well as a two-fold expansion of the IR and miniaturized small single-copy region. A reduction in the substitution rates for genes transferred from the single-copy regions to the IR was observed. Accelerated substitution rates of plastid accD and clpP were detected in the Lamprocapnos plastome. The accelerated substitution rate for the accD gene was correlated with a large insertion of amino acid repeat (AAR) motifs in the middle region, but the forces driving the higher substitution rate of the clpP gene are unclear. We found a variable number of AARs in Lamprocapnos accD and ycf1 genes within individuals, and the repeats were associated with coiled-coil regions. In addition, comparative analysis of three Papaveraceae plastomes revealed loss of rps15 in Papaver, and functional replacement to the nucleus was identified.
我们为 Lamprocapnos spectabilis 生成了完整的质体基因组(质体基因组)序列,这是首次从罂粟科 Fumarioideae 亚科获得完整的质体基因组。与已测序的两个罂粟科质体基因组相比,Lamprocapnos 的质体基因组在大小、结构、基因组成和替代率方面存在较大差异。我们提出了一个模型,解释了观察到的主要重排,涉及至少六个反向重复(IR)边界移位和五个反转,产生了许多基因重复和重新定位,以及 IR 的两倍扩张和小型单拷贝区域的小型化。从单拷贝区域转移到 IR 的基因的替代率降低。在 Lamprocapnos 质体基因组中检测到 accD 和 clpP 基因的替代率加速。accD 基因的加速替代率与中部 AAR 基序的大片段插入有关,但 clpP 基因的高替代率的驱动力尚不清楚。我们在个体内发现 Lamprocapnos accD 和 ycf1 基因中的 AAR 数量可变,并且这些重复与卷曲螺旋区域相关。此外,对三个罂粟科质体基因组的比较分析表明,Papaver 中的 rps15 丢失,并鉴定到核功能替代。