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小麦功能基因评估:宁夏自治区的育种意义。

Functional gene assessment of bread wheat: breeding implications in Ningxia Province.

机构信息

Crop Research Institute, Ningxia Academy of Agriculture and Forestry Sciences, Yinchuan, 750002, Ningxia, China.

State Key Laboratory of Cotton Biology, Institute of Cotton Research, Chinese Academy of Agricultural Sciences, Anyang, 455000, Henan, China.

出版信息

BMC Plant Biol. 2021 Feb 18;21(1):103. doi: 10.1186/s12870-021-02870-5.

Abstract

BACKGROUND

The overall genetic distribution and divergence of cloned genes among bread wheat varieties that have occurred during the breeding process over the past few decades in Ningxia Province, China, are poorly understood. Here, we report the genetic diversities of 44 important genes related to grain yield, quality, adaptation and resistance in 121 Ningxia and 86 introduced wheat cultivars and advanced lines.

RESULTS

The population structure indicated characteristics of genetic components of Ningxia wheat, including landraces of particular genetic resources, introduced varieties with rich genetic diversities and modern cultivars in different periods. Analysis of allele frequencies showed that the dwarfing alleles Rht-B1b at Rht-B1 and Rht-D1b at Rht-D1, 1BL/1RS translocation, Hap-1 at GW2-6B and Hap-H at Sus2-2B are very frequently present in modern Ningxia cultivars and in introduced varieties from other regions but absent in landraces. This indicates that the introduced wheat germplasm with numerous beneficial genes is vital for broadening the genetic diversity of Ningxia wheat varieties. Large population differentiation between modern cultivars and landraces has occurred in adaptation genes. Founder parents carry excellent allele combinations of important genes, with a higher number of favorable alleles than modern cultivars. Gene flow analysis showed that six founder parents have greatly contributed to breeding improvement in Ningxia Province, particularly Zhou 8425B, for yield-related genes.

CONCLUSIONS

Varieties introduced from other regions with rich genetic diversity and landraces with well-adapted genetic resources have been applied to improve modern cultivars. Founder parents, particularly Zhou 8425B, for yield-related genes have contributed greatly to wheat breeding improvement in Ningxia Province. These findings will greatly benefit bread wheat breeding in Ningxia Province as well as other areas with similar ecological environments.

摘要

背景

在中国宁夏,过去几十年的小麦育种过程中,面包小麦品种的克隆基因整体遗传分布和分化情况了解甚少。本研究报告了 121 份宁夏小麦品种和 86 份引进小麦品种及品系中与产量、品质、适应性和抗性相关的 44 个重要基因的遗传多样性。

结果

群体结构表明宁夏小麦具有遗传成分特征,包括特定遗传资源的地方品种、遗传多样性丰富的引进品种和不同时期的现代品种。等位基因频率分析表明,Rht-B1 上的矮化基因 Rht-B1b 和 Rht-D1 上的 Rht-D1b、1BL/1RS 易位、GW2-6B 上的 Hap-1 和 Sus2-2B 上的 Hap-H 等矮化基因在现代宁夏品种和其他地区引进品种中非常常见,但在地方品种中不存在。这表明,引进的小麦种质资源具有许多有益基因,对于拓宽宁夏小麦品种的遗传多样性至关重要。现代品种和地方品种在适应性基因方面发生了较大的群体分化。育成品种的骨干亲本携带重要基因的优良等位基因组合,有利等位基因数高于现代品种。基因流分析表明,六个骨干亲本对宁夏小麦品种的改良做出了巨大贡献,特别是周 8425B 对产量相关基因的改良。

结论

从其他地区引进的遗传多样性丰富的品种和适应能力强的地方品种被用于改良现代品种。育成品种的骨干亲本,特别是周 8425B 对产量相关基因的改良,对宁夏小麦的改良做出了巨大贡献。这些发现将极大地促进宁夏及其他类似生态环境地区的小麦育种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/57ff/7893757/b5d2bfd7c69d/12870_2021_2870_Fig1_HTML.jpg

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