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McGISH identification and phenotypic description of leaf rust and yellow rust resistant partial amphiploids originating from a wheat × Thinopyrum synthetic hybrid cross

机译:小麦×化脓性合成杂种杂交后叶锈病和抗黄锈性部分二倍体的McGISH鉴定和表型描述

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摘要

A Thinopyrum intermedium × Thinopyrum ponticum synthetic hybrid wheatgrass is an excellent source of leaf and stem rust resistance produced by N.V.Tsitsin. Wheat line Mv9kr1 was crossed with this hybrid (Agropyron glael) in Hungary in order to transfer its advantageous agronomic traits into wheat. As the wheat parent was susceptible to leaf rust, the transfer of resistance was easily recognizable in the progenies. Three different partial amphiploid lines with leaf rust resistance were selected from the wheat/Thinopyrum hybrid derivatives by multicolour genomic in situ hybridization. Chromosome counting on the partial amphiploids revealed 58 chromosomes (18 wheatgrass) in line 194, 56 (14 wheatgrass) in line 195 and 54 (12 wheatgrass) in line 196. The wheat chromosomes present in these lines were identified and the wheatgrass chromosomes were characterized by fluorescence in situ hybridization using the repetitive DNA probes Afa-family, pSc119.2 and pTa71. The 3D wheat chromosome was missing from the lines. Molecular marker analysis showed the presence of the Lr24 leaf rust resistance gene in lines 195 and 196. The morphological traits were evaluated in the field during two consecutive seasons in two different locations.
机译:中间Thin草(Thinopyrum intermedium)×ino藜(Thinopyrum ponticum)合成杂草是N.V. Tsitsin产生的优异的抗叶和茎锈病的来源。小麦品系Mv9kr1在匈牙利与该杂交种(Agropyron glael)杂交,以便将其有利的农艺性状转化为小麦。由于小麦亲本易受叶锈病的影响,后代中的抗性转移很容易识别。通过多色基因组原位杂交从小麦/噻菌种杂种衍生物中选择了三种不同的具有抗叶锈性的部分二倍体系。通过对部分二倍体的染色体计数,可以发现194行的58条染色体(18条小麦草),195行的56条(14条小麦草)和196行的54条(12小麦草)。鉴定了这些行中存在的小麦染色体,并对小麦草染色体进行了鉴定通过使用重复DNA探针Afa-family,pSc119.2和pTa71进行荧光原位杂交。系中缺少3D小麦染色体。分子标记分析表明,在195和196品系中存在Lr24抗叶锈基因。在两个不同位置连续两个季节在田间对形态特征进行了评估。

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