School of Life Sciences, Sichuan Agricultural University, Yaan, Sichuan, 625014, China.
Biotechnology Research Institute, Chinese Academy of Agricultural Sciences, Beijing, 100081, China.
Sci Rep. 2017 Jul 26;7(1):6514. doi: 10.1038/s41598-017-06638-6.
Buckwheat is a nutritional and economically crop belonging to Polygonaceae, Fagopyrum. To better understand the mutation patterns and evolution trend in the chloroplast (cp) genome of buckwheat, and found sufficient number of variable regions to explore the phylogenetic relationships of this genus, two complete cp genomes of buckwheat including Fagopyrum dibotrys (F. dibotrys) and Fagopyrum luojishanense (F. luojishanense) were sequenced, and other two Fagopyrum cp genomes were used for comparative analysis. After morphological analysis, the main difference among these buckwheat were height, leaf shape, seeds and flower type. F. luojishanense was distinguishable from the cultivated species easily. Although the F. dibotrys and two cultivated species has some similarity, they different in habit and component contents. The cp genome of F. dibotrys was 159,320 bp while the F. luojishanense was 159,265 bp. 48 and 61 SSRs were found in F. dibotrys and F. luojishanense respectively. Meanwhile, 10 highly variable regions among these buckwheat species were located precisely. The phylogenetic relationships among four Fagopyrum species based on complete cp genomes was showed. The results suggested that F. dibotrys is more closely related to Fagopyrum tataricum. These data provided valuable genetic information for Fagopyrum species identification, taxonomy, phylogenetic study and molecular breeding.
荞麦是蓼科荞麦属的一种营养和经济作物。为了更好地了解荞麦叶绿体(cp)基因组的突变模式和进化趋势,并找到足够数量的可变区域来探索该属的系统发育关系,本研究对两种荞麦(甜荞 Fagopyrum dibotrys 和苦荞 Fagopyrum luojishanense)的完整 cp 基因组进行了测序,并对其他两种荞麦 cp 基因组进行了比较分析。经过形态学分析,这些荞麦的主要区别在于株高、叶形、种子和花型。与栽培种相比,F. luojishanense 很容易区分。虽然 F. dibotrys 和两个栽培种有一些相似之处,但它们在习性和成分含量上有所不同。F. dibotrys 的 cp 基因组为 159320bp,而 F. luojishanense 的 cp 基因组为 159265bp。在 F. dibotrys 和 F. luojishanense 中分别发现了 48 和 61 个 SSRs。同时,还精确定位了这四个荞麦物种之间的 10 个高度可变区。基于完整 cp 基因组的四种荞麦的系统发育关系表明,F. dibotrys 与 Fagopyrum tataricum 关系更为密切。这些数据为荞麦种间鉴定、分类学、系统发育研究和分子育种提供了有价值的遗传信息。