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首页> 外文期刊>The Journal of Heredity >Synthesis and characterization of advanced durum wheat hybrids and addition lines with Thinopyrum chromosomes
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Synthesis and characterization of advanced durum wheat hybrids and addition lines with Thinopyrum chromosomes

机译:硬麦草染色体的硬质小麦先进杂种的合成与鉴定。

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Durum wheat (Triticum turgidum L., 2n = 4x = 28; AABB genomes) is a natural hybrid - an allotetraploid between 2 wild species, Triticum urartu Tumanian (AA genome) and Aegilops speltoides Tausch (BB genome). Even at the allotetraploid level, durum wheat can tolerate chromosomal imbalance, for example, addition of alien chromosome 1E of diploid wheatgrass, Lophopyrum elongatum. Therefore, one way to broaden its genetic base is to add a desirable chromosome(s) from diploid wild relatives. We attempted chromosomal engineering with chromosomes of a diploid wheatgrass, Thinopyrum bessarabicum - a source of resistance to some diseases including Fusarium head blight. Several advanced hybrids and alien addition lines were studied using traditional cytology, multicolor fluorescent genomic in situ hybridization, and molecular markers. Hybrid derivatives varied in chromosome number from F1 to F8 generations and in backcross generations. In advanced generations, we exercised selection against 28-chromosome plants and in favor of 30-chromosome plants that helped recover 14 addition lines in the F8 generation, as indicated by the absence of segregation for 29-chromosome plants. Disomic additions showed regular meiosis with 15 bivalents, 14 of durum wheat, and 1 of Th. bessarabicum. The addition lines will facilitate further chromosome engineering work on durum wheat for broadening its genetic base.
机译:硬粒小麦(Triticum turgidum L.,2n = 4x = 28; AABB基因组)是一种天然杂种-一种介于2种野生物种Triticum urartu Tumanian(AA基因组)和Aegilops speltoides Tausch(BB基因组)之间的异源四倍体。即使在异源二倍体水平上,硬质小麦也可以忍受染色体失衡,例如,添加二倍体小麦草的外来染色体1E,即长杆Lophopyrum elongatum。因此,拓宽其遗传基础的一种方法是从二倍体野生近缘种中添加所需的染色体。我们尝试了使用二倍体小麦草-薄壁细线虫(Thinopyrum bessarabicum)的染色体进行染色体工程改造,这种染色体是对某些疾病的抵抗力来源,包括枯萎病。使用传统细胞学,多色荧光基因组原位杂交和分子标记研究了几种先进的杂种和外来附加系。杂种衍生物的染色体数目从F1到F8世代和回交世代不等。在先进的世代中,我们针对28染色体的植物进行了选择,并支持30染色体的植物,这有助于恢复F8代中的14个附加品系,这表明29染色体植物没有分离现象。二体组添加显示有规律的减数分裂,具有15个二价体,14个硬质小麦和1个Th。 s这些附加品系将有助于在硬质小麦上进行进一步的染色体工程,以扩大其遗传基础。

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