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通过体细胞杂交将面包小麦染色质渗入高冰草中。

Introgression of bread wheat chromatin into tall wheatgrass via somatic hybridization.

作者信息

Cui Haifeng, Yu Zhiyong, Deng Jingyao, Gao Xin, Sun Yang, Xia Guangmin

机构信息

School of Life Sciences, Shandong University, 27 Shandanan Road, 250100, Jinan, People's Republic of China.

出版信息

Planta. 2009 Jan;229(2):323-30. doi: 10.1007/s00425-008-0832-z. Epub 2008 Nov 5.

Abstract

Regenerates were obtained following somatic hybridization between tall wheatgrass (Agropyron elongatum) and bread wheat (Triticum aestivum cv. Jinan177) protoplasts. Two lines (CU and XI) were self-fertile in the first (R0) and subsequent (R1 and R2) generations. The phenotype of each R1 population was uniform. All CU progeny were phenotypically similar to the tall wheatgrass parent, while XI progeny had thinner, smoother and softer leaves. Cytological analysis showed that more wheat chromatin was present in the hybrid callus than in the R1 and R2 plants, and that some intercalary translocations of wheat chromosome segments were retained in the R2 generation. AFLP profiling confirmed the presence of wheat DNA in the introgression lines. Analysis of the high molecular weight glutenin subunit content of derived seed identified three novel subunits, not present in either the wheat or the tall wheatgrass parent. Microsatellite-based profiling of the chloroplast genome of the introgression lines suggested that only chloroplast sequences from the tall wheatgrass parent were present. The specifically inherited phenomena and possible application of these hybrids are discussed.

摘要

通过高冰草(Agropyron elongatum)与普通小麦(Triticum aestivum cv. Jinan177)原生质体的体细胞杂交获得了再生植株。两个株系(CU和XI)在第一代(R0)及后续(R1和R2)代均能自交结实。每个R1群体的表型一致。所有CU后代在表型上与高冰草亲本相似,而XI后代的叶片更薄、更光滑且更柔软。细胞学分析表明,杂种愈伤组织中存在的小麦染色质比R1和R2植株中的更多,并且一些小麦染色体片段的中间易位在R2代中得以保留。AFLP分析证实了渗入系中存在小麦DNA。对衍生种子的高分子量谷蛋白亚基含量分析鉴定出三个新亚基,在小麦或高冰草亲本中均不存在。基于微卫星的渗入系叶绿体基因组分析表明,仅存在来自高冰草亲本的叶绿体序列。讨论了这些杂种的特定遗传现象及可能的应用。

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