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首页> 外文期刊>Plant Biotechnology Journal >Transcriptome?¢????wide analysis of the MADS?¢????box gene family in the orchid Erycina pusilla
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Transcriptome?¢????wide analysis of the MADS?¢????box gene family in the orchid Erycina pusilla

机译:转录组:兰花Erycina pusilla MADS盒基因家族的广泛分析

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摘要

Orchids exhibit a range of unique flower shapes and are a valuable ornamental crop. MADS?¢????box transcription factors are key regulatory components in flower initiation and development. Changing the flower shape and flowering time can increase the value of the orchid in the ornamental horticulture industry. In this study, 28 MADS?¢????box genes were identified from the transcriptome database of the model orchid Erycina pusilla . The full?¢????length genomic sequences of these MADS?¢????box genes were obtained from BAC clones. Of these, 27 were MIKC?¢????type EpMADS (two truncated forms) and one was a type I EpMADS. Eleven EpMADS genes contained introns longer than 10????kb. Phylogenetic analysis classified the 24 MIKC c genes into nine subfamilies. Three specific protein motifs, AG, FUL and SVP, were identified and used to classify three subfamilies. The expression profile of each EpMADS gene correlated with its putative function. The phylogenetic analysis was highly correlated with the protein domain identification and gene expression results. Spatial expression of EpMADS6 , EpMADS12 and EpMADS15 was strongly detected in the inflorescence meristem, floral bud and seed via in????situ hybridization. The subcellular localization of the 28 EpMADS proteins was also investigated. Although EpMADS27 lacks a complete MADS?¢????box domain, EpMADS27?¢????YFP was localized in the nucleus. This characterization of the orchid MADS?¢????box family genes provides useful information for both orchid breeding and studies of flowering and evolution.
机译:兰花展现出各种独特的花朵形状,是一种有价值的观赏作物。 MADS盒转录因子是花的起始和发育的关键调控成分。改变花的形状和开花时间可以增加兰花在观赏园艺行业中的价值。在这项研究中,从模型兰花Erycina pusilla的转录组数据库中鉴定出28个MADSΔβ盒基因。这些MADSαβ盒基因的全长基因组序列是从BAC克隆获得的。在这些中,有27种是MIKCⅡ型EpMADS(两种截短形式),一种是I型EpMADS。 11个EpMADS基因的内含子长于10 kb。系统发育分析将24个MIKC c基因分为9个亚家族。确定了三个特定的蛋白质基序AG,FUL和SVP,并将其用于对三个亚家族进行分类。每个EpMADS基因的表达谱与其推定功能相关。系统发育分析与蛋白质结构域鉴定和基因表达结果高度相关。通过原位杂交在花序分生组织,花芽和种子中强烈检测到EpMADS6,EpMADS12和EpMADS15的空间表达。还研究了28种EpMADS蛋白的亚细胞定位。尽管EpMADS27缺少完整的MADS?box框域,但EpMADS27?YFP定位在细胞核中。兰花MADS?box盒家族基因的这种特征为兰花育种以及开花和进化的研究提供了有用的信息。

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