The effect of T. aestivum chromosomes 1A and 1D on fertility of alloplasmic recombinant (H. vulgare)-T. aestivum lines depending on cytonuclear compatibility.

IF 0.9 Q3 AGRICULTURE, MULTIDISCIPLINARY
Л А Першина, Н В Трубачеева, В К Шумный
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引用次数: 0

Abstract

The effect of T. aestivum L. chromosomes 1A and 1D on fertility of recombinant bread wheat allolines of the same origin carrying the cytoplasm of barley H. vulgare L. and different levels of cytonuclear compatibility was studied. Alloline L-56 included mainly fully sterile (FS) and partially sterile (PS) plants, alloline L-57 included partially fertile (PF) plants and line L-58 included fertile (F) ones. Analysis of morphobiological traits and pollen painting indicated complete or partial male sterility in plants of allolines L-56 and L-57. To differentiate genotypes with cytonuclear coadaptation and genotypes with cytonuclear incompatibility, PCR analysis of the 18S/5S mitochondrial (mt) repeat was performed. Heteroplasmy (simultaneous presence of barley and wheat mtDNA copies) was found in FS, PS, PF and some F plants, which was associated with a violation of cytonuclear compatibility. Wheat-type homoplasmy (hm) was detected in the majority of the fertile plants, which was associated with cytonuclear coadaptation. The allolines used as maternal genotypes were crossed with wheat-rye substitution lines 1R(1A) and 1R(1D). In F1, all plants of PF×1R(1A) and PF×1R(1D) combinations were fertile, and in F2, a segregation close to 3 (fertile) : 1 (sterile) was observed. These results showed for the first time that chromosomes 1A and 1D carry one dominant Rf gene, which controls the restoration of male fertility of bread wheat carrying the cytoplasm of H. vulgare. All plants of F1 combinations FS×1R(1A), FS×1R(1D), PS×1R(1A), PS×1R(1D) were sterile, which indicates that a single dose of genes localized on wheat chromosomes 1A or 1D is not enough to restore male fertility in FS and PS plants. All plants of hybrid combinations F(hm)×1R(1A) and F(hm)×1R(1D) in both F1 and F2 were fertile, that is, fertility of allolines with cytonuclear coadaptation does not depend on wheat chromosomes 1A and 1D.

T.aestivum染色体1A和1D对异质重组(H. vulgare)-T.aestivum品系生育力的影响取决于细胞核相容性。
研究了 T. aestivum L. 染色体 1A 和 1D 对携带大麦 H. vulgare L. 细胞质和不同细胞核相容性水平的同源重组面包小麦异源系育性的影响。异株系 L-56 主要包括完全不育(FS)和部分不育(PS)植株,异株系 L-57 包括部分可育(PF)植株,品系 L-58 包括可育(F)植株。形态生物学特征和花粉涂色分析表明,异株系 L-56 和 L-57 的植株完全或部分雄性不育。为了区分细胞核共适应基因型和细胞核不相容基因型,对 18S/5S 线粒体(mt)重复进行了 PCR 分析。在 FS、PS、PF 和一些 F 植株中发现了异型(同时存在大麦和小麦 mtDNA 拷贝),这与违反细胞核兼容性有关。在大多数可育植株中发现了小麦型同源基因(hm),这与细胞核共适应有关。将作为母本基因型的全缘系与小麦-红豆替代系 1R(1A) 和 1R(1D) 杂交。在 F1 中,PF×1R(1A) 和 PF×1R(1D) 组合的所有植株都是可育的,在 F2 中,观察到接近 3(可育) :1(不育)。这些结果首次表明,1A 和 1D 染色体携带一个显性 Rf 基因,该基因控制着携带 H. vulgare 细胞质的面包小麦雄性繁殖力的恢复。F1组合FS×1R(1A)、FS×1R(1D)、PS×1R(1A)、PS×1R(1D)的所有植株均不育,这表明单剂量的小麦染色体1A或1D上的基因不足以恢复FS和PS植株的雄性繁殖力。杂交组合F(hm)×1R(1A)和F(hm)×1R(1D)在F1和F2中的所有植株都是可育的,即具有细胞核共适应性的全缘植物的育性不依赖于小麦染色体1A和1D。
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来源期刊
Vavilovskii Zhurnal Genetiki i Selektsii
Vavilovskii Zhurnal Genetiki i Selektsii AGRICULTURE, MULTIDISCIPLINARY-
CiteScore
1.90
自引率
0.00%
发文量
119
审稿时长
8 weeks
期刊介绍: The "Vavilov Journal of genetics and breeding" publishes original research and review articles in all key areas of modern plant, animal and human genetics, genomics, bioinformatics and biotechnology. One of the main objectives of the journal is integration of theoretical and applied research in the field of genetics. Special attention is paid to the most topical areas in modern genetics dealing with global concerns such as food security and human health.
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