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首页> 外文期刊>Acta Horticulturae >Screening of viviparous plantlet formation-related genes in Kalanchoe daigremontiana by SSH analysis.
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Screening of viviparous plantlet formation-related genes in Kalanchoe daigremontiana by SSH analysis.

机译:通过SSH分析筛选大叶锦葵(Kalanchoe daigremontiana)胎生小植株形成相关基因。

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摘要

Vivipary, referred here as the formation of novel complete plantlets on mature organs, has been reported in many families as an asexual propagation strategy. In K. daigremontiana (Crassulaceae), viviparous plantlets are formed on leaf margin notches in response to a long day photoperiod and their appearance follows a basipetal fashion. To identify genes involved in this process, suppression subtractive hybridization libraries (SSH) were prepared. For this purpose, RNA was extracted from tissue forming buds and from tissue not forming buds. cDNAs were synthesized and selectively amplified to enrich differentially expressed sequences. The cDNAs of forward-subtracted library, created using tissue forming buds as tester were directly inserted in a plasmid vector and the ligation products were transformed into E. coli. The clones were screened for differential expression by hybridization using either forward or reverse libraries as probes. Up-regulated and down-regulated cDNA clones were identified and sequenced. On the basis of TBLASTX algorithm analysis and after correcting for redundancy, 135 cDNA clones with a putative differential expression pattern between the two kinds of tissues were classified and grouped into fourteen functional categories according to the Goldberg database (http://estdb.biology.ucla.edu/PcEST/) and functional classes that could be involved in the vivipary process were identified..
机译:子房,在这里被称为在成熟器官上形成新的完整小苗,在许多家庭中已被报道为无性繁殖策略。在K. daigremontiana(景天科)中,响应长时间的光周期,在叶缘凹口上形成了胎生小苗,它们的外观遵循基底状。为了鉴定参与该过程的基因,制备了抑制消减杂交文库(SSH)。为此,从形成组织的芽和未形成芽的组织中提取RNA。合成cDNA并选择性扩增以富集差异表达的序列。将以组织形成芽作为测试者创建的前减文库的cDNA直接插入质粒载体中,并将​​连接产物转化到大肠杆菌中。使用正向或反向文库作为探针,通过杂交筛选克隆的差异表达。鉴定上调和下调的cDNA克隆并测序。在TBLASTX算法分析的基础上,并在纠正冗余后,根据Goldberg数据库(http://estdb.biology),将这两种组织之间具有假定差异表达模式的135个cDNA克隆分类并划分为14个功能类别。确定了ucla.edu/PcEST/)和可能涉及到生命过程的功能类别。

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