加速面包小麦(Triticum aestivum L.)生化标记辅助回交育种和制图群体发展的育种战略

IF 1.6 3区 农林科学 Q2 AGRONOMY Euphytica Pub Date : 2024-06-25 DOI:10.1007/s10681-024-03370-x
Nevzat Aydin, Bedrettin Demir, Halil Akdag, Sabri Gokmen, Abdulvahit Sayaslan, Ceren Bayraç, Mesut Ersin Sönmez, Aras Türkoğlu
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摘要

为了迅速适应不断变化的气候,并可持续地养活不断增长的全球人口,植物育种家们正在积极研究提高作物产量的更有效策略。在本研究中,我们介绍了面包小麦测绘群体和回交育种计划的发展情况,这是测绘不同等位基因对性状表现影响的宝贵遗传资源。我们采用创新方法将性状快速导入面包小麦栽培品种。具体来说,我们在近交系重组群体中利用了两个亲本,包括 Tosunbey x Tahirova2000,此外,我们还采用了回交策略,以 148 系(通过杂交具有高面筋品质的 Tosunbey x Tahirova2000 获得)作为 Nevzatbey cv.的受体亲本,Nevzatbey cv.以其无芒特征而著称。快速育种方法最重要的两个应用是延长光照时间和打破早期收获种子的休眠。这两项应用在我们的研究中都得到了成功实施。我们的植被期约为 50-60 天。此外,我们培育的群体中的一个早期基因型在 40 天内就收获了种子。考虑到该基因型经历了 15 天的春化期,包括春化、干燥和冷藏在内的整个生成周期共用了 64 天。值得注意的是,我们不仅使用了生化标记进行选择,还采用了被称为 "快速育种 "的快速世代进步技术,从而在两年内培育出了 BC5F1。我们认为,这种方法有助于将多个目标性状的基因迅速转移到适应性强的小麦栽培品种中,或在精英育种材料中将理想性状金字塔化。
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Accelerated breeding strategies for biochemical marker-assisted backcross breeding and mapping population development in bread wheat (Triticum aestivum L.)

In order to rapidly adapt to the evolving climate and sustainably nourish the growing global population, plant breeders are actively investigating more efficient strategies to enhance crop yields. In this study, we present the development of a bread wheat mapping population and backcross breeding program, serving as a valuable genetic resource for mapping the effects of different alleles on trait performance. We employed innovative methodologies to rapidly introgress traits into the bread wheat cultivar. Specifically, we utilized two parents, including Tosunbey x Tahirova2000, in a recombinant inbred line population, in addition, a backcross strategy was applied with line 148 (obtained by crossing Tosunbey x Tahirova2000 with high gluten quality) as the recipient parent of the Nevzatbey cv., known for its awnless feature. The two most important applications of the rapid breeding method are extending the light period and breaking dormancy in early harvested seeds. Both applications were successfully implemented in our study. Our vegetation periods ranging from approximately 50–60 days. Additionally, an early genotype in our developed population was harvested in 40 days. Considering that the genotype underwent a 15-day vernalization period, the generation cycle, including vernalization, drying, and refrigeration, was completed in a total of 64 days. Notably, we employed not only biochemical markers for selection but also incorporated the rapid generation advance technology known as ‘speed breeding’, allowing us to develop BC5F1 within a span of two years. We posit that this approach proves instrumental in swiftly transferring genes for multiple target traits into adapted wheat cultivars or in pyramiding desirable traits within elite breeding material.

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来源期刊
Euphytica
Euphytica 农林科学-农艺学
CiteScore
3.80
自引率
5.30%
发文量
157
审稿时长
4.5 months
期刊介绍: Euphytica is an international journal on theoretical and applied aspects of plant breeding. It publishes critical reviews and papers on the results of original research related to plant breeding. The integration of modern and traditional plant breeding is a growing field of research using transgenic crop plants and/or marker assisted breeding in combination with traditional breeding tools. The content should cover the interests of researchers directly or indirectly involved in plant breeding, at universities, breeding institutes, seed industries, plant biotech companies and industries using plant raw materials, and promote stability, adaptability and sustainability in agriculture and agro-industries.
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