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评估和拓宽老芒麦种质的遗传多样性以改良种子落粒性

Assessing and Broadening Genetic Diversity of Elymus sibiricus Germplasm for the Improvement of Seed Shattering.

作者信息

Zhang Zongyu, Zhang Junchao, Zhao Xuhong, Xie Wengang, Wang Yanrong

机构信息

The State Key Laboratory of Grassland Agro-ecosystems, College of Pastoral Agriculture Science and Technology, Lanzhou University, Lanzhou 730020, China.

出版信息

Molecules. 2016 Jul 1;21(7):869. doi: 10.3390/molecules21070869.

Abstract

Siberian wild rye (Elymus sibiricus L.) is an important native grass in the Qinghai-Tibet Plateau of China. It is difficult to grow for commercial seed production, since seed shattering causes yield losses during harvest. Assessing the genetic diversity and relationships among germplasm from its primary distribution area contributes to evaluating the potential for its utilization as a gene pool to improve the desired agronomic traits. In the study, 40 EST-SSR primers were used to assess the genetic diversity and population structure of 36 E. sibiricus accessions with variation of seed shattering. A total of 380 bands were generated, with an average of 9.5 bands per primer. The polymorphic information content (PIC) ranged from 0.23 to 0.50. The percentage of polymorphic bands (P) for the species was 87.11%, suggesting a high degree of genetic diversity. Based on population structure analysis, four groups were formed, similar to results of principal coordinate analysis (PCoA). The molecular variance analysis (AMOVA) revealed the majority of genetic variation occurred within geographical regions (83.40%). Two genotypes from Y1005 and ZhN06 were used to generate seven F₁ hybrids. The molecular and morphological diversity analysis of F₁ population revealed rich genetic variation and high level of seed shattering variation in F₁ population, resulting in significant improvement of the genetic base and desired agronomic traits.

摘要

老芒麦(Elymus sibiricus L.)是中国青藏高原一种重要的本土禾本科植物。由于种子易脱落会导致收获时产量损失,因此难以进行商业化种子生产。评估其主要分布区种质资源的遗传多样性和相互关系,有助于评估将其作为基因库来改良所需农艺性状的潜力。在本研究中,使用40对EST-SSR引物评估了36份具有种子脱落变异的老芒麦材料的遗传多样性和群体结构。共产生了380条带,平均每个引物9.5条带。多态性信息含量(PIC)范围为0.23至0.50。该物种的多态性条带百分比(P)为87.11%,表明遗传多样性程度较高。基于群体结构分析,形成了四个组,这与主坐标分析(PCoA)的结果相似。分子方差分析(AMOVA)表明,大部分遗传变异发生在地理区域内(83.40%)。利用来自Y1005和ZhN06的两个基因型产生了7个F₁杂种。F₁群体的分子和形态多样性分析表明,F₁群体具有丰富的遗传变异和高水平的种子脱落变异,从而显著改善了遗传基础和所需农艺性状。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9251/6273296/1495a3a58cdd/molecules-21-00869-g001.jpg

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