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一个携带替代野生二粒小麦4A染色体的面包小麦品系导致4B染色体片段缺失和植株弱小。

A Bread Wheat Line with the Substituted Wild Emmer Chromosome 4A Results in Fragment Deletions of Chromosome 4B and Weak Plants.

作者信息

Qiu Yu, Lu Fei, Yang Bohao, Hu Xin, Zhao Yanhao, Ding Mingquan, Yang Lei, Rong Junkang

机构信息

College of Advanced Agricultural Sciences, Zhejiang A&F University, Hangzhou 311300, China.

Institute of Future Agriculture, Northwest A&F University, Yangling 712100, China.

出版信息

Plants (Basel). 2025 Apr 5;14(7):1134. doi: 10.3390/plants14071134.

Abstract

In response to the growing genetic uniformity within wheat populations, developing efficient wheat-alien translocation strategies has become critically important. We observed that several offspring of the common wheat ( L.)-wild emmer ( L. var. ) chromosome arm substitution line (CASL4AL) exhibited stunted growth, including significantly reduced plant height, spike length, spikelet number, and stem width compared to normal plants. Integrative transcriptomic analyses (RNA-Seq and BSR-Seq) revealed a statistically significant depletion ( < 0.01) of single nucleotide polymorphisms (SNPs) on chromosome 4B in compromised plants. Chromosome association analysis of differentially expressed genes (DEGs, up- or downregulated) revealed that downregulated genes were predominantly located on chromosome 4B. The 1244 downregulated DEGs on Chr4B were employed for Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) analyses, and RNA metabolic processes, DNA repair, and transport systems were significantly enriched by GO analysis; however, only the mRNA surveillance pathway was enriched by KEGG enrichment. Molecular marker profiling showed a complete absence of target amplification in the critical 0-155 Mb region of chromosome 4B in all weak plants. Pearson's correlation coefficients confirmed significant associations ( < 0.01) between 4B-specific amplification and weak phenotypes. These results demonstrate that 4B segmental deletions drive weak phenotypes in CASL4AL progeny, and provide experimental evidence for chromosome deletions induced in wild emmer chromosome substitution lines. This study highlights the potential of wild emmer as a valuable tool for generating chromosomal variations in wheat breeding programs.

摘要

为应对小麦群体内遗传一致性不断增加的情况,开发高效的小麦-外源染色体易位策略变得至关重要。我们观察到,普通小麦(L.)-野生二粒小麦(L. var.)染色体臂置换系(CASL4AL)的几个后代表现出生长发育迟缓,与正常植株相比,株高、穗长、小穗数和茎粗均显著降低。综合转录组分析(RNA-Seq和BSR-Seq)显示,在生长受影响的植株中,4B染色体上的单核苷酸多态性(SNP)在统计学上显著减少(<0.01)。对差异表达基因(上调或下调)进行染色体关联分析发现,下调基因主要位于4B染色体上。利用Chr4B上的1244个下调差异表达基因进行基因本体论(GO)和京都基因与基因组百科全书(KEGG)分析,GO分析显示RNA代谢过程、DNA修复和转运系统显著富集;然而,KEGG富集仅富集了mRNA监测途径。分子标记分析表明,所有弱株在4B染色体关键的0-155 Mb区域均完全没有目标扩增。皮尔逊相关系数证实了4B特异性扩增与弱表型之间存在显著关联(<0.01)。这些结果表明,4B染色体片段缺失导致了CASL4AL后代的弱表型,并为野生二粒小麦染色体置换系中诱导的染色体缺失提供了实验证据。本研究突出了野生二粒小麦作为小麦育种计划中产生染色体变异的宝贵工具的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54b8/11991261/8d7c7f4cca91/plants-14-01134-g001.jpg

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