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四个魔芋属物种的叶绿体基因组:基因组特征、比较分析和魔芋属物种间的系统发育关系。

Chloroplast genome of four Amorphophallus species: genomic features,comparative analysis, and phylogenetic relationships among Amorphophallus species.

机构信息

Yunnan Key Laboratory of Konjac Biology, College of Agronomy, Yunnan Urban Agricultural Engineering and Technological Research Center, Kunming University, Kunming, China.

出版信息

BMC Genomics. 2024 Nov 21;25(1):1122. doi: 10.1186/s12864-024-11053-z.

Abstract

BACKGROUND

The genus Amorphophallus (Araceae) contains approximately 250 species, most of which have high ecological and economic significance. The chloroplast genome data and the comprehensive analysis of the chloroplast genome structure of Amorphophallus is limited. In this study, four chloroplast genomes of Amorphophallus were sequenced and assembled. For the first time, comparative analyses of chloroplast genomes were conducted on the 13 Amorphophallus species in conjunction with nine published sequences.

RESULTS

The Amorphophallus chloroplast genomes exhibited typical quadripartite structures with lengths ranging from 164,417 to 177,076 bp. These structures consisted of a large single copy (LSC, 90,705 - 98,561 bp), a small single copy (SSC, 14,172 - 21,575 bp), and a pair of inverted repeats (IRs, 26,225 - 35,204 bp). The genomes contain 108 - 113 unique genes, including 76 - 79 protein-coding genes, 28 - 29 tRNA genes, and 4 rRNA genes. The molecular structure, gene order, content, codon usage, long repeats, and simple sequence repeats (SSRs) within Amorphophallus were generally conserved. However, several variations in intron loss and gene expansion on the IR-SSC boundary regions were found among these 13 genomes. Four mutational hotspot regions, including trnM-atpE, atpB, atpB-rbcL and ycf1 were identified. They could identify and phylogeny future species in the genus Amorphophallus. Positive selection was found for rpl36, ccsA, rpl16, rps4, rps8, rps11, rps12, rps14, clpP, rps3, ycf1, rpl20, rps2, rps18, rps19, atpA, atpF, rpl14, rpoA, rpoC1, rpoC2 and rps15 based on the analyses of Ka/Ks ratios. Phylogenetic inferences based on the complete chloroplast genomes revealed a sister relationship between Amorphophallus and Caladieae. All Amorphophallus species formed a monophyletic evolutionary clade and were divided into three groups, including CA-II, SEA, and CA-I. Amorphophallus albus, A. krausei, A. kachinensis and A. konjac were clustered into the CA-II clade, A. paeoniifolius and A. titanum were clustered into the SEA clade, A. muelleri 'zhuyajin1', Amorphophallus sp, A. coaetaneus, A. tonkinensis and A. yunnanensis were clustered into CA- I clade.

CONCLUSIONS

The genome structure and gene content of Amorphophallus chloroplast genomes are consistent across various species. In this study, the structural variation and comparative genome of chloroplast genomes of Amorphophallus were comprehensively analyzed for the first time. The results provide important genetic information for species classification, identification, molecular breeding, and evolutionary exploration of the genus Amorphophallus.

摘要

背景

魔芋属(天南星科)约包含 250 个物种,其中大多数具有重要的生态和经济意义。目前,有关魔芋属叶绿体基因组数据和叶绿体基因组结构的综合分析较为有限。本研究对 4 个魔芋属叶绿体基因组进行了测序和组装。首次结合 9 个已发表序列,对 13 种魔芋属植物的叶绿体基因组进行了比较分析。

结果

魔芋属叶绿体基因组呈现典型的四分体结构,长度范围为 164417-177076bp。这些结构由一个大单拷贝区(LSC,90705-98561bp)、一个小单拷贝区(SSC,14172-21575bp)和一对反向重复区(IRs,26225-35204bp)组成。基因组包含 108-113 个独特基因,包括 76-79 个蛋白编码基因、28-29 个 tRNA 基因和 4 个 rRNA 基因。魔芋属的分子结构、基因排列、内含子缺失和基因扩张等在种间均具有较高的保守性。然而,在这 13 个基因组中,IR-SSC 边界区存在一些基因丢失和基因扩张的变异。鉴定到了四个突变热点区域,包括 trnM-atpE、atpB、atpB-rbcL 和 ycf1,可用于未来魔芋属物种的鉴定和系统发育分析。基于 Ka/Ks 比值分析,发现 rpl36、ccsA、rpl16、rps4、rps8、rps11、rps12、rps14、clpP、rps3、ycf1、rpl20、rps2、rps18、rps19、atpA、atpF、rpl14、rpoA、rpoC1、rpoC2 和 rps15 存在正选择。基于完整叶绿体基因组的系统发育推断表明,魔芋属与 Caladieae 具有姐妹关系。所有魔芋属物种形成一个单系进化分支,并分为三个组,包括 CA-II、SEA 和 CA-I。魔芋属白魔芋、魔芋、卡奇魔芋和魔芋块茎分别聚类到 CA-II 分支,魔芋和大花魔芋聚类到 SEA 分支,魔芋‘朱砂金 1 号’、魔芋属种、魔芋根腐病、东川魔芋、越南魔芋和云南魔芋聚类到 CA-I 分支。

结论

魔芋属叶绿体基因组的结构和基因含量在不同物种间具有一致性。本研究首次对魔芋属叶绿体基因组的结构变异和比较基因组进行了全面分析。结果为魔芋属的物种分类、鉴定、分子育种和进化研究提供了重要的遗传信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/435f/11580329/da332d4089df/12864_2024_11053_Fig1_HTML.jpg

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