Suppr超能文献

节节麦(Aegilops tauschii Coss.)和圆柱山羊草(Ae. cylindrica Host)的完整叶绿体基因组揭示了质体基因组D的进化。

Complete chloroplast genomes of Aegilops tauschii Coss. and Ae. cylindrica Host sheds light on plasmon D evolution.

作者信息

Gogniashvili Mari, Jinjikhadze Tamar, Maisaia Inesa, Akhalkatsi Maia, Kotorashvili Adam, Kotaria Nato, Beridze Tengiz, Dudnikov Alexander Ju

机构信息

Institute of Molecular Genetics, Agricultural University of Georgia, #240 D. Agmashenebeli Alley, 0159, Tbilisi, Georgia.

Institute of Botany, Ilia State University, Tbilisi, Georgia.

出版信息

Curr Genet. 2016 Nov;62(4):791-798. doi: 10.1007/s00294-016-0583-5. Epub 2016 Feb 29.

Abstract

Hexaploid wheat (Triticum aestivum L., genomes AABBDD) originated in South Caucasus by allopolyploidization of the cultivated Emmer wheat T. dicoccum (genomes AABB) with the Caucasian Ae. tauschii ssp strangulata (genomes DD). Genetic variation of Ae. tauschii is an important natural resource, that is why it is of particular importance to investigate how this variation was formed during Ae. tauschii evolutionary history and how it is presented through the species area. The D genome is also found in tetraploid Ae. cylindrica Host (2n = 28, CCDD). The plasmon diversity that exists in Triticum and Aegilops species is of great significance for understanding the evolution of these genera. In the present investigation the complete nucleotide sequence of plasmon D (chloroplast DNA) of nine accessions of Ae. tauschii and two accessions of Ae. cylindrica are presented. Twenty-eight SNPs are characteristic for both TauL1 and TauL2 accessions of Ae. tauschii using TauL3 as a reference. Four SNPs are additionally observed for TauL2 lineage. The longest (27 bp) indel is located in the intergenic spacer Rps15-ndhF of SSC. This indel can be used for simple determination of TauL3 lineage among Ae. tauschii accessions. In the case of Ae. cylindrica additionally 7 SNPs were observed. The phylogeny tree shows that chloroplast DNA of TauL1 and TauL2 diverged from the TauL3 lineage. TauL1 lineage is relatively older then TauL2. The position of Ae. cylindrica accessions on Ae. tauschii phylogeny tree constructed on chloroplast DNA variation data is intermediate between TauL1 and TauL2. The complete nucleotide sequence of chloroplast DNA of Ae. tauschii and Ae. cylindrica allows to refine the origin and evolution of D plasmon of genus Aegilops.

摘要

六倍体小麦(普通小麦Triticum aestivum L.,基因组为AABBDD)起源于南高加索地区,由栽培二粒小麦T. dicoccum(基因组为AABB)与高加索节节麦Ae. tauschii ssp strangulata(基因组为DD)通过异源多倍体化形成。节节麦的遗传变异是一种重要的自然资源,因此研究这种变异在节节麦进化历史中是如何形成的以及如何通过物种分布区域表现出来尤为重要。四倍体圆柱山羊草Ae. cylindrica Host(2n = 28,CCDD)中也发现了D基因组。小麦属和山羊草属物种中存在的质体多样性对于理解这些属的进化具有重要意义。在本研究中,展示了9份节节麦和2份圆柱山羊草的质体D(叶绿体DNA)的完整核苷酸序列。以TauL3为参照,28个单核苷酸多态性(SNP)是节节麦TauL1和TauL2两个种质的特征性位点。在TauL2谱系中还额外观察到4个SNP。最长的(27 bp)插入缺失位于小单拷贝区(SSC)的Rps15 - ndhF基因间隔区。该插入缺失可用于在节节麦种质中简单鉴定TauL3谱系。对于圆柱山羊草,还额外观察到7个SNP。系统发育树显示,TauL1和TauL2的叶绿体DNA与TauL3谱系发生了分化。TauL1谱系比TauL2相对更古老。基于叶绿体DNA变异数据构建的节节麦系统发育树上,圆柱山羊草种质的位置介于TauL1和TauL2之间。节节麦和圆柱山羊草叶绿体DNA的完整核苷酸序列有助于完善山羊草属D质体的起源和进化。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验