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基于测序的基因分型揭示了与面包小麦多种胁迫耐受性相关的偃麦草4StS·1JS罗伯逊易位。

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

作者信息

Kruppa Klaudia, Türkösi Edina, Holušová Kateřina, Kalapos Balázs, Szakács Éva, Cséplő Mónika, Farkas András, Ivanizs László, Szőke-Pázsi Kitti, Mikó Péter, Kovács Péter, Gulyás Andrea, Hidvégi Norbert, Molnár-Láng Márta, Darkó Éva, Bartoš Jan, Gaál Eszter, Molnár István

机构信息

Hungarian Research Network (HUN-REN), Centre for Agricultural Research, Agricultural Institute, Martonvásár, 2462, Hungary.

Institute for Experimental Botany, Centre of Plant Structural and Functional Genomics, Olomouc, Czech Republic, 779 00.

出版信息

Theor Appl Genet. 2024 Dec 26;138(1):13. doi: 10.1007/s00122-024-04791-x.

Abstract

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·1JS. 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.

摘要

GBS测序覆盖度分析在小麦中鉴定出一条来自两个偃麦草亚基因组的罗伯逊易位染色体,该染色体赋予小麦叶锈病和条锈病抗性、耐旱性并维持产量稳定性。中间偃麦草×长穗偃麦草的杂种Agropyron glael(GLAEL)是小麦改良的宝贵遗传资源。尽管它具有潜力,但对其染色体结构以及与六倍体小麦(普通小麦)的同源关系了解有限,限制了在育种计划中对GLAEL遗传多样性的充分利用。在此,我们展示了一种44条染色体的小麦/GLAEL附加系(GLA7)的培育。多色基因组原位杂交鉴定出一条来自中间偃麦草St亚基因组的染色体臂,而另一条臂仍未分类。简化基因组测序(GBS)测序覆盖度分析揭示了两个不同偃麦草亚基因组之间独特的罗伯逊易位,鉴定为4StS·1JS。GLA7系在自然和人工感染条件下对叶锈病和条锈病均表现出较强的成株抗性。对地上部形态参数以及叶片相对含水量和产量构成因素进行自动表型分析表明,与亲本小麦基因型相比,GLA7系表现出更高的耐旱性。三年的田间试验表明,GLA7的农艺性状表现和产量构成因素与小麦亲本相似。这条独特的附加系有望通过引入新的抗性基因提高小麦对多种胁迫的耐受性,以及减轻开花期临时水分限制的影响,同时对小麦的表现没有负面影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2d3/11671438/20d34855290e/122_2024_4791_Fig1_HTML.jpg

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