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Allocation of the S-genome chromosomes of Aegilops variabilis Eig. carrying powdery mildew resistance in triticale (× Triticosecale Wittmack)

机译:变异埃及伊蚊的S基因组染色体的分配。在黑小麦中携带抗白粉病(×Triticosecale Wittmack)

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摘要

It has been hypothesized that the powdery mildew adult plant resistance (APR) controlled by the Pm13 gene in Aegilops longissima Schweinf. & Muschl. (SlSl) has been evolutionary transferred to Aegilops variabilis Eig. (UUSS). The molecular marker analysis and the visual evaluation of powdery mildew symptoms in Ae. variabilis and the Ae. variabilis × Secale cereale amphiploid forms (2n = 6x = 42, UUSSRR) showed the presence of product that corresponded to Pm13 marker and the lower infection level compared to susceptible model, respectively. This study also describes the transfer of Ae. variabilis Eig. (2n = 4x = 28, UvUvSvSv) chromosomes, carrying powdery mildew resistance, into triticale (× Triticosecale Wittm., 2n = 6x = 42, AABBRR) using Ae. variabilis × S. cereale amphiploid forms. The individual chromosomes of Ae. variabilis, triticale ‘Lamberto’ and hybrids were characterized by genomic and fluorescence in situ hybridization (GISH/FISH). The chromosome configurations of obtained hybrid forms were studied at first metaphase of meiosis of pollen mother cells (PMCs) using GISH. The statistical analysis showed that the way of S-genome chromosome pairing and transmission to subsequent hybrid generations was diploid-like and had no influence on chromosome pairing of triticale chromosomes. The cytogenetic study of hybrid forms were supported by the marker-assisted selection using Pm13 marker and visual evaluation of natural infection by Blumeria graminis, that allowed to select the addition or substitution lines of hybrids carrying chromosome 3Sv which were tolerant to the powdery mildew infection.
机译:据推测,由长纹伊蚊的Pm13基因控制的白粉病成年植物抗性(APR)。 &Muschl。 (S l S l )已进化转移至变异山羊草Eig。 (UUSS)。 Ae中白粉病症状的分子标记分析和目测评估。 variabilis和Ae。 variabilis×Secale谷物二倍体形式(2n = 6x = 42,UUSSRR)表明存在与Pm13标记相对应的产物,并且与易感模型相比,其感染水平较低。这项研究还描述了Ae的转移。易变的(2n = 4x = 28,U v U v S v S v )染色体,具有抗白粉病,使用Ae转换为小黑麦(×Triticosecale Wittm。,2n = 6x = 42,AABBRR)。变异× S。谷物二倍体形式。 Ae的单个染色体。基因组和荧光原位杂交(GISH / FISH)表征了变异体,小黑麦属的“ Lamberto”和杂种。使用GISH在花粉母细胞(PMC)减数分裂的第一个中期研究了获得的杂交形式的染色体构型。统计分析表明,S基因组染色体配对和向后代杂交的传播方式是二倍体样的,对黑小麦染色体的染色体配对没有影响。通过使用 Pm13 标记进行标记辅助选择和通过 Blumeria graminis 进行自然感染的视觉评估,支持杂交形式的细胞遗传学研究,从而可以选择添加或替换系携带3S v 染色体的杂种对白粉病的耐受性

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