龙舌兰MADS基因在分生组织、发育中的球芽和花器官中表现出新的表达模式。

Sexual Plant Reproduction Pub Date : 2012-03-01 Epub Date: 2011-10-20 DOI:10.1007/s00497-011-0176-x
Silvia del Carmen Delgado Sandoval, María Jazmín Abraham Juárez, June Simpson
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引用次数: 25

摘要

龙舌兰龙舌兰是一种多年生单果植物,在5-8年的营养生长后开花,标志着植物生命周期的结束。当受精不成功时,由新形成的分生组织在小苞片附近的花序伞形花序上诱导出营养球茎。虽然对一年生单核植物和多年生植物的花序和花发育的调控已经有了详细的描述,但在分子水平上对多年生单核植物的这些过程知之甚少,对球芽的研究也很少。组织学样品揭示了龙舌兰在营养向花序过渡开始后不久,伞形分生组织的早期诱导。为了确定参与花诱导调控的候选基因,利用龙舌兰转录组数据库搜索MADS-box转录因子ESTs。基于非禾本科单子叶植物中已有的拟南芥(a.thaliana)和sativa (O. sativa) MADS基因和序列,鉴定出7个不同的MIKC MADS基因,可分为6种不同类型。对7个候选MADS基因在植物、花序、球芽和花组织中的实时荧光定量PCR分析发现,与其他物种的同源基因相比,其中一些基因的表达模式新颖。在原位杂交研究中,两种不同的基因在营养分生组织和花蕾的特定组织中表达。龙舌兰不同的MADS基因调控模式可能与该物种采用的特定生殖策略有关。
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Agave tequilana MADS genes show novel expression patterns in meristems, developing bulbils and floral organs.

Agave tequilana is a monocarpic perennial species that flowers after 5-8 years of vegetative growth signaling the end of the plant's life cycle. When fertilization is unsuccessful, vegetative bulbils are induced on the umbels of the inflorescence near the bracteoles from newly formed meristems. Although the regulation of inflorescence and flower development has been described in detail for monocarpic annuals and polycarpic species, little is known at the molecular level for these processes in monocarpic perennials, and few studies have been carried out on bulbils. Histological samples revealed the early induction of umbel meristems soon after the initiation of the vegetative to inflorescence transition in A. tequilana. To identify candidate genes involved in the regulation of floral induction, a search for MADS-box transcription factor ESTs was conducted using an A. tequilana transcriptome database. Seven different MIKC MADS genes classified into 6 different types were identified based on previously characterized A. thaliana and O. sativa MADS genes and sequences from non-grass monocotyledons. Quantitative real-time PCR analysis of the seven candidate MADS genes in vegetative, inflorescence, bulbil and floral tissues uncovered novel patterns of expression for some of the genes in comparison with orthologous genes characterized in other species. In situ hybridization studies using two different genes showed expression in specific tissues of vegetative meristems and floral buds. Distinct MADS gene regulatory patterns in A. tequilana may be related to the specific reproductive strategies employed by this species.

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来源期刊
Sexual Plant Reproduction
Sexual Plant Reproduction 生物-生殖生物学
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