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Isolation and characterization of floral transcripts from mangosteen (Garcinia mangostana L.)

机译:山竹(Garcinia mangostana L.)的花本的分离和鉴定

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摘要

The understanding of flower initiation, development, and maturation in mangosteen is of paramount importance to shorten its long juvenile phase and to synchronize its flowering or fruiting time. In this study, we have identified 97 tentative unique genes with higher expression levels in young flower buds compared to young shoots by using suppressive subtraction hybridization and reverse northern analysis. Sequence analysis showed that 63.9% of these transcripts had non-significant matches to sequences in the non-redundant protein database in GenBank, 19.6% had significant matches to unknown proteins while the remaining 16.5% had putative functions in transcription, stress, signal transduction, cell wall biogenesis, photosynthesis and miscellaneous. The full-length cDNA of GmAGMBP encoding AG-motif binding protein (a zinc finger transcriptional factor), and 3' termini cDNA sequences of GmHSA32 and GmBZIP, encoding heat-stress-associated 32 (HSA32) and bZIP transcription factor, respectively; were cloned and further analysed. Real-time PCR analysis revealed that these three genes have different transcript profiles in flowers of different developmental stages and young shoots. The highest abundance of transcripts was achieved in flowers with diameters ranging from 0.5 to 0.9 cm for GmAGMBP and GmBZIP and in flowers with diameters less than 0.5 cm for GmHSA32. Southern analysis suggested that GmAGMBP might be single copy gene while GmHSA3A could possibly belong to a small gene family in the mangosteen genome.
机译:对于缩短山竹的幼年期并使其开花或结实时间保持同步,对山竹中的花萌生,发育和成熟的理解至关重要。在这项研究中,我们通过使用抑制性减法杂交和反向Northern分析,鉴定了97个在幼花芽中表达水平高于幼芽的暂定独特基因。序列分析显示,这些转录本中有63.9%与GenBank中非冗余蛋白质数据库中的序列无显着匹配,有19.6%与未知蛋白质有显着匹配,而其余16.5%在转录,应激,信号转导,细胞壁的生物发生,光合作用和其他。编码AG-基序结合蛋白(锌指转录因子)的GmAGMBP的全长cDNA,以及分别编码热应激相关32(HSA32)和bZIP转录因子的GmHSA32和GmBZIP的3'末端cDNA序列;克隆并进一步分析。实时PCR分析显示,这三个基因在不同发育阶段和幼芽的花朵中具有不同的转录谱。对于GmAGMBP和GmBZIP,在直径范围从0.5到0.9厘米的花朵中,对于GmHSA32,在直径小于0.5厘米的花朵中实现了最高的转录本丰度。 Southern分析表明,GmAGMBP可能是单拷贝基因,而GmHSA3A可能属于山竹果树基因组中的一个小基因家族。

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