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Developmental Genetics of the Perianthless Flowers and Bracts of a Paleoherb Species, Saururus chinensis

机译:古龙草的无性花和B的发育遗传学

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摘要

Saururus chinensis is a core member of Saururaceae, a perianthless (lacking petals or sepals) family. Due to its basal phylogenetic position and unusual floral composition, study of this plant family is important for understanding the origin and evolution of perianthless flowers and petaloid bracts among angiosperm species. To isolate genes involved in S. chinensis flower development, subtracted floral cDNA libraries were constructed by using suppression subtractive hybridization (SSH) on transcripts isolated from developing inflorescences and seedling leaves. The subtracted cDNA libraries contained a total of 1,141 ESTs and were used to create cDNA microarrays to analyze transcript profiles of developing inflorescence tissues. Subsequently, qRT-PCR analyses of eight MADS-box transcription factors and in situ hybridizations of two B-class MADS-box transcription factors were performed to verify and extend the cDNA microarray results. Finally, putative phylogenetic relationships within the B-class MADS-box gene family were determined using the discovered S. chinensis B-class genes to compare K-domain sequences with B genes from other basal angiosperms. Two hundred seventy-seven of the 1,141 genes were found to be expressed differentially between S. chinensis inflorescence tissues and seedling leaves, 176 of which were grouped into at least one functional category, including transcription (14.75%), energy (12.59%), metabolism (9.12%), protein-related function (8.99%), and cellular transport (5.76%). qRT-PCR and in situ hybridization of selected MADS-box genes supported our microarray data. Phylogenetic analysis indicated that a total of six B-class MADS-box genes were isolated from S. chinensis. The differential regulation of S. chinensis B-class MADS-box transcription factors likely plays a role during the development of subtending bracts and perianthless flowers. This study contributes to our understanding of inflorescence development in Saururus, and represents an initial step toward understanding the formation of petaloid bracts in this species.
机译:中国金龙属是金合欢科的核心成员,金合欢属无花(无花瓣或萼片)。由于其基础的系统发育位置和异常的花组成,对该植物科的研究对于了解被子植物中无花和花瓣状片的起源和进化非常重要。为了分离与中国沙棘花发育有关的基因,通过对从发育中的花序和幼苗叶片中分离的转录本进行抑制消减杂交(SSH),构建了减去的花卉cDNA文库。减去的cDNA文库总共包含1141个EST,并用于创建cDNA微阵列以分析发育中的花序组织的转录本概况。随后,进行了八个MADS-box转录因子的qRT-PCR分析和两个B类MADS-box转录因子的原位杂交,以验证和扩展cDNA微阵列结果。最后,使用发现的中华链球菌B类基因来确定B类MADS-box基因家族内的假定系统发育关系,以将K结构域序列与来自其他基础被子植物的B基因进行比较。在1,141个基因中,有277个在中华沙棘花序组织和幼苗叶片之间差异表达,其中176个被分为至少一个功能类别,包括转录(14.75%),能量(12.59%),代谢(9.12%),蛋白质相关功能(8.99%)和细胞转运(5.76%)。 qRT-PCR和所选MADS-box基因的原位杂交支持我们的微阵列数据。系统发育分析表明,共分离出6个B-类MADS-box基因。中华SB-类MADS-box转录因子的差异调控可能在and片和无花的发育过程中发挥作用。这项研究有助于我们了解蜥蜴的花序发育,并且代表了了解该物种花瓣状br片形成的第一步。

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