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首页> 外文期刊>DNA Sequence: The Journal of DNA Sequencing and Mapping >Heterotopic expression of B-class floral homeotic genes PISTILLATA/GLOBOSA supports a modified model for crocus (Crocus sativus L.) flower formation
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Heterotopic expression of B-class floral homeotic genes PISTILLATA/GLOBOSA supports a modified model for crocus (Crocus sativus L.) flower formation

机译:B级花卉同源基因PISTILLATA / GLOBOSA的异位表达支持番红花(Crocus sativus L.)花形成的改良模型

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For uncovering and understanding the molecular mechanisms controlling flower development in cultivated Crocus sativus and particularly the transformation of sepals in outer whorl ( whorl 1) tepals, we have cloned and characterized the expression of a family of five PISTILLATA/GLOBOSA-like ( PI/GLO-like) MADS-box genes expressed in the C. sativus flower. The deduced amino acid sequences of the coded proteins indicated high homology with members of the MADS- box family of transcription factors, and particularly with other members of the PI/GLO family of MADS- box proteins that control floral organ identity. PI/GLO expression studies in cultivated C. sativus uncover the presence of PI/GLO transcripts not only in the second and third whorls of flower organs as expected, but also in the outer whorl tepals that are the sepals in most typical flowers. This heterotopic expression of both B-class genes: PI/GLO and AP3/DEF, known to form heterodimers for stamens and petals ( petaloid inner whor 1-whorl 2-tepals in C. sativus), explains the homeotic transformation of sepals into outer whorl tepals in this species. Analysis of PI/GLO sequences from C. sativus for putative targets to known micro-RNAs ( miRNAs) showed that the target site for ath-miRNA167 found in Arabidopsis thaliana PI is not present in C. sativus, however, the PI/GLO sequences may be regulated by an ath-miRNA163.
机译:为了揭示和了解栽培栽培番红花中花发育的分子机制,尤其是外轮(轮生1)花萼中萼片的转化,我们克隆并表征了五个类似PISTILLATA / GLOBOSA的家族的表达(PI / GLO样)MADS-box基因表达在番茄中。推导的编码蛋白质的氨基酸序列表明与MADS-box转录因子家族成员,特别是与PI / GLO MADS-box蛋白控制花器官身份的其他成员具有高度同源性。在栽培的梭状芽胞杆菌中进行的PI / GLO表达研究不仅发现PI / GLO转录本不仅存在于预期的花器官的第二轮和第三轮中,而且还存在于最典型花朵的萼片外轮花被中。这两个B类基因的异位表达:PI / GLO和AP3 / DEF,已知会形成雄蕊和花瓣的异二聚体(在C. sativus中为花瓣状的内who 1到2圆锥形),解释了萼片向外向内的同种异体转化该物种中的轮生花被。分析来自番茄的PI / GLO序列作为已知微RNA(miRNA)的推定靶标,表明拟南芥PI中发现的ath-miRNA167的靶位点在番茄中不存在,但是,PI / GLO序列可能受ath-miRNA163调控。

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