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臂形草有性生殖和无融合生殖植株卵巢中差异表达cDNA序列的鉴定

Identification of differentially expressed cDNA sequences in ovaries of sexual and apomictic plants of Brachiaria brizantha.

作者信息

Rodrigues Júlio C M, Cabral Gláucia B, Dusi Diva M A, de Mello Luciane V, Rigden Daniel J, Carneiro Vera T C

机构信息

Embrapa Genetic Resources and Biotechnology, CP: 02372, CEP: 70770-900 Brasilia-DF, Brazil.

出版信息

Plant Mol Biol. 2003 Dec;53(6):745-57. doi: 10.1023/B:PLAN.0000023664.21910.bd.

Abstract

The isolation of genes associated with apomixis would improve understanding of the molecular mechanism of this mode of reproduction in plants as well as open the possibility of transfer of apomixis to sexual plants, enabling cloning of crops through seeds. Brachiaria brizantha is a highly apomictic grass species with 274 tetraploid apomicts accessions and only one diploid sexual. In this study we have compared gene expression in ovaries at megasporogenesis and megagametogenesis of sexual and apomictic accessions of B. brizantha by differential display (DD-PCR), with 60 primer combinations. Specificity of 65 cloned fragments, checked by reverse northern blot analysis, showed that 11 clones were differentially expressed, 6 in apomictic ovaries, 2 in sexual and 3 in apomictic and sexual, but at different stages. Of the 6 sequences isolated that were preferentially expressed in the apomictic accession: one sequence was from ovaries at megasporogenesis stage; three were from megagametogenesis stage; two were from both stages. Of the two sequences isolated from the sexual accessions, one showed expression in ovaries at megagametogenesis, while the other sequence was shown to be specific to both stages. Three sequences were from megasporogenesis stage in apomicts but were also detected at megagametogenesis in sexual plants. Sequence analysis showed that 5 of the 11 clones had no apparent homologues in the protein database. Some of the clones identified as apomictic-specific shared homology with known genes enabling their functional annotation. The relationships of these functions to the generation of the apomictic trait are discussed.

摘要

与无融合生殖相关基因的分离,将有助于增进对植物这种繁殖方式分子机制的理解,同时也为将无融合生殖转移到有性生殖植物上创造了可能性,从而实现通过种子克隆作物。臂形草是一种高度无融合生殖的禾本科物种,有274份四倍体无融合生殖材料,仅有一份二倍体有性生殖材料。在本研究中,我们通过差异显示(DD-PCR),利用60种引物组合,比较了臂形草有性生殖和无融合生殖材料在大孢子发生和雌配子体发生阶段卵巢中的基因表达。通过反向Northern印迹分析对65个克隆片段的特异性进行检测,结果表明有11个克隆存在差异表达,其中6个在无融合生殖卵巢中表达,2个在有性生殖卵巢中表达,3个在无融合生殖和有性生殖卵巢中均有表达,但处于不同阶段。在分离出的6个在无融合生殖材料中优先表达的序列中:1个序列来自大孢子发生阶段的卵巢;3个来自雌配子体发生阶段;2个在两个阶段均有表达。在从有性生殖材料中分离出的2个序列中,1个在雌配子体发生阶段的卵巢中有表达,另1个序列在两个阶段均有特异性表达。3个序列来自无融合生殖材料的大孢子发生阶段,但在有性生殖植物的雌配子体发生阶段也能检测到。序列分析表明,11个克隆中的5个在蛋白质数据库中没有明显的同源物。一些被鉴定为无融合生殖特异性的克隆与已知基因具有同源性,从而能够对其进行功能注释。本文还讨论了这些功能与无融合生殖性状产生之间的关系。

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