首页> 外文期刊>BMC Plant Biology >Genome-wide identification and classification of MIKC-type MADS-box genes in Streptophyte lineages and expression analyses to reveal their role in seed germination of orchid
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Genome-wide identification and classification of MIKC-type MADS-box genes in Streptophyte lineages and expression analyses to reveal their role in seed germination of orchid

机译:全基因组识别和分类中的MIKC型MADS-box基因在链霉菌谱系中的表达分析以揭示其在兰花种子萌发中的作用

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MADS-box genes play crucial roles in plant floral organ formation and plant reproductive development. However, there is still no information on genome-wide identification and classification of MADS-box genes in some representative plant species. A comprehensive investigation of MIKC-type genes in the orchid Dendrobium officinale is still lacking. Here we conducted a genome-wide analysis of MADS-box proteins from 29 species. In total, 1689 MADS-box proteins were identified. Two types of MADS-box genes, termed type I and II, were found in land plants, but not in liverwort. The SQUA, DEF/GLO, AG and SEP subfamilies existed in all the tested flowering plants, while SQUA was absent in the gymnosperm Ginkgo biloba, and no genes of the four subfamilies were found in a charophyte, liverwort, mosses, or lycophyte. This strongly corroborates the notion that clades of floral organ identity genes led to the evolution of flower development in flowering plants. Nine subfamilies of MIKCC genes were present in two orchids, D. officinale and Phalaenopsis equestris, while the TM8, FLC, AGL15 and AGL12 subfamilies may be lost. In addition, the four clades of floral organ identity genes in both orchids displayed a conservative and divergent expression pattern. Only three MIKC-type genes were induced by cold stress in D. officinale while 15 MIKC-type genes showed different levels of expression during seed germination. MIKC-type genes were identified from streptophyte lineages, revealing new insights into their evolution and development relationships. Our results show a novel role of MIKC-type genes in seed germination and provide a useful clue for future research on seed germination in orchids.
机译:MADS-box基因在植物花器官形成和植物生殖发育中起关键作用。但是,在某些代表性植物物种中,尚无关于MADS-box基因全基因组鉴定和分类的信息。兰花石end兰中的MIKC型基因仍然缺乏全面的研究。在这里,我们对29个物种的MADS-box蛋白进行了全基因组分析。总共鉴定出1689个MADS-box蛋白。在陆地植物中发现了两种类型的MADS-box基因,分别称为I型和II型,但在地草中却没有。在所有测试的开花植物中均存在SQUA,DEF / GLO,AG和SEP亚科,而裸子植物Ginkgo biloba中不存在SQUA,并且在风生植物,地艾,苔藓或苔藓植物中未发现这四个亚科的基因。这强烈证实了这样的观点,即花器官同一性基因进化枝导致开花植物中花朵发育的进化。在两个兰花(D. officinale和蝴蝶兰)中存在MIKCC基因的9个亚家族,而TM8,FLC,AGL15和AGL12亚家族可能会丢失。另外,两个兰花中的四个花器官同一性基因进化枝显示出保守和发散的表达模式。 D. officinale的冷胁迫仅诱导了三个MIKC型基因,而15个MIKC型基因在种子发芽过程中表现出不同的表达水平。从链霉菌谱系中鉴定出MIKC型基因,揭示了其进化与发育关系的新见解。我们的研究结果表明MIKC型基因在种子发芽中的新作用,并为兰花的种子发芽的未来研究提供了有用的线索。

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