Genotyping-by-sequencing uncovers a Thinopyrum 4StS·1JvsS Robertsonian translocation linked to multiple stress tolerances in bread wheat.

IF 4.4 1区 农林科学 Q1 AGRONOMY Theoretical and Applied Genetics Pub Date : 2024-12-26 DOI:10.1007/s00122-024-04791-x
Klaudia Kruppa, Edina Türkösi, Kateřina Holušová, Balázs Kalapos, Éva Szakács, Mónika Cséplő, András Farkas, László Ivanizs, Kitti Szőke-Pázsi, Péter Mikó, Péter Kovács, Andrea Gulyás, Norbert Hidvégi, Márta Molnár-Láng, Éva Darkó, Jan Bartoš, Eszter Gaál, István Molnár
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Abstract

Keymessage: GBS read coverage analysis identified a Robertsonian chromosome from two Thinopyrum subgenomes in wheat, conferring leaf and stripe rust resistance, drought tolerance, and maintaining yield stability. Agropyron glael (GLAEL), a Thinopyrum intermedium × Th. ponticum hybrid, serves as a valuable genetic resource for wheat improvement. Despite its potential, limited knowledge of its chromosome structure and homoeologous relationships with hexaploid wheat (Triticum aestivum) has restricted the full exploitation of GLAEL's genetic diversity in breeding programs. Here, we present the development of a 44-chromosome wheat/GLAEL addition line (GLA7). Multicolor genomic in situ hybridization identified one chromosome arm from the St subgenome of Th. intermedium, while the other arm remained unclassified. Genotyping-by-sequencing (GBS) read coverage analysis revealed a unique Robertsonian translocation between two distinct Thinopyrum subgenomes, identified as 4StS·1JvsS. The GLA7 line demonstrated strong adult plant resistance to both leaf rust and stripe rust under natural and artificial infection conditions. Automated phenotyping of shoot morphological parameters together with leaf relative water content and yield components showed that the GLA7 line exhibited elevated drought tolerance compared to parental wheat genotypes. Three years of field trials showed that GLA7 exhibits similar agronomic performance and yield components to the wheat parents. This unique addition line holds promise for enhancing wheat's tolerance to multiple stresses through the introduction of new resistance genes, as well as its ability to mitigate the effects of temporary water limitation during flowering, all without negatively impacting wheat performance.

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基因分型测序揭示了面包小麦中与多种胁迫耐受性相关的Thinopyrum 4StS·1JvsS Robertsonian易位。
关键信息:GBS读覆盖分析从小麦的两个Thinopyrum亚基因组中鉴定出一条Robertsonian染色体,该染色体具有抗叶锈病和条锈病、耐旱性和保持产量稳定的作用。Agropyron glel (glael)是一种桔梗植物。蓬属杂交种是小麦改良的宝贵遗传资源。尽管其潜力巨大,但对其染色体结构及其与六倍体小麦(Triticum aestivum)的同源关系的了解有限,限制了其遗传多样性在育种计划中的充分利用。在这里,我们开发了一个44染色体的小麦/GLAEL附加系(GLA7)。多色基因组原位杂交从Th的St亚基因组中鉴定出一条染色体臂。中间,而另一只手臂仍未被分类。基因分型测序(GBS)读取覆盖率分析显示,在两个不同的Thinopyrum亚基因组之间存在独特的Robertsonian易位,鉴定为4StS·1JvsS。在自然侵染和人工侵染条件下,GLA7对叶锈病和条锈病均表现出较强的抗性。对茎部形态参数、叶片相对含水量和产量成分的自动表型分析表明,与亲本小麦基因型相比,GLA7系具有更高的耐旱性。3年的田间试验表明,GLA7具有与小麦亲本相似的农艺性能和产量组成。这一独特的附加品系有望通过引入新的抗性基因来增强小麦对多种胁迫的耐受性,以及减轻开花期间临时限水影响的能力,所有这些都不会对小麦的生产产生负面影响。
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来源期刊
CiteScore
9.60
自引率
7.40%
发文量
241
审稿时长
2.3 months
期刊介绍: Theoretical and Applied Genetics publishes original research and review articles in all key areas of modern plant genetics, plant genomics and plant biotechnology. All work needs to have a clear genetic component and significant impact on plant breeding. Theoretical considerations are only accepted in combination with new experimental data and/or if they indicate a relevant application in plant genetics or breeding. Emphasizing the practical, the journal focuses on research into leading crop plants and articles presenting innovative approaches.
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