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B类花同源异型基因PISTILLATA/GLOBOSA的异位表达支持了番红花(Crocus sativus L.)花形成的改良模型。

Heterotopic expression of B-class floral homeotic genes PISTILLATA/GLOBOSA supports a modified model for crocus (Crocus sativus L.) flower formation.

作者信息

Kalivas Apostolos, Pasentsis Konstantinos, Polidoros Alexios N, Tsaftaris Athanasios S

机构信息

Department of Genetics and Plant Breeding, AUTh, Thessaloniki, GR-540 06, Greece.

出版信息

DNA Seq. 2007 Apr;18(2):120-30. doi: 10.1080/10425170601060582.

DOI:10.1080/10425170601060582
PMID:17364823
Abstract

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 l-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.

摘要

为了揭示和理解控制栽培藏红花花发育的分子机制,特别是外轮(第1轮)花被片萼片的转变,我们克隆并表征了在藏红花花中表达的一个由五个PISTILLATA/GLOBOSA样(PI/GLO样)MADS盒基因组成的家族的表达情况。编码蛋白的推导氨基酸序列显示与转录因子MADS盒家族成员高度同源,特别是与控制花器官特征的MADS盒蛋白PI/GLO家族的其他成员高度同源。在栽培藏红花中进行的PI/GLO表达研究发现,PI/GLO转录本不仅如预期那样存在于花器官的第二轮和第三轮中,而且还存在于大多数典型花中作为萼片的外轮花被片中。已知形成雄蕊和花瓣异源二聚体(藏红花中花瓣状内轮——第2轮——花被片)的B类基因PI/GLO和AP3/DEF的这种异位表达,解释了该物种中萼片向外轮花被片的同源异型转变。对藏红花PI/GLO序列中已知微小RNA(miRNA)的假定靶标的分析表明,在拟南芥PI中发现的ath-miRNA167的靶位点在藏红花中不存在,然而,PI/GLO序列可能受ath-miRNA163调控。

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