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Flower-specific KNOX phenotype in the orchid Dactylorhiza fuchsii

机译:兰花Dactylorhiza fuchsii中的花特异性KNOX表型

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摘要

The KNOTTED1-like homeobox (KNOX) genes are best known for maintaining a pluripotent stem-cell population in the shoot apical meristem that underlies indeterminate vegetative growth, allowing plants to adapt their development to suit the prevailing environmental conditions. More recently, the function of the KNOX gene family has been expanded to include additional roles in lateral organ development such as complex leaf morphogenesis, which has come to dominate the KNOX literature. Despite several reports implicating KNOX genes in the development of carpels and floral elaborations such as petal spurs, few authors have investigated the role of KNOX genes in flower development. Evidence is presented here of a flower-specific KNOX function in the development of the elaborate flowers of the orchid Dactylorhiza fuchsii, which have a three-lobed labellum petal with a prominent spur. Using degenerate PCR, four Class I KNOX genes (DfKN1–4) have been isolated, one from each of the four major Class I KNOX subclades and by reverse transcription PCR (RT-PCR), it is demonstrated that DfKNOX transcripts are detectable in developing floral organs such as the spur-bearing labellum and inferior ovary. Although constitutive expression of the DfKN2 transcript in tobacco produces a wide range of floral abnormalities, including serrated petal margins, extra petal tissue, and fused organs, none of the vegetative phenotypes typical of constitutive KNOX expression were produced. These data are highly suggestive of a role for KNOX expression in floral development that may be especially important in taxa with elaborate flowers.
机译:KNOTTED1样同源盒(KNOX)基因最著名的原因是在根尖分生组织中维持了多能干细胞种群,而后者是不确定的营养生长的基础,使植物能够适应其生长适应当前的环境条件。最近,KNOX基因家族的功能已得到扩展,以包括在侧器官发育中的其他作用,例如复杂的叶形态发生,这已成为KNOX文献的主要内容。尽管有几篇报道将KNOX基因牵涉到心皮的发育和诸如花瓣刺等花饰,但很少有人研究过KNOX基因在花发育中的作用。此处显示的证据是,在兰花Dactylorhiza fuchsii的精美花的发育过程中,花具有特定的KNOX功能,该花具有三瓣的淡斑花瓣,且具突出的花刺。使用简并PCR,已分离出四个I类KNOX基因(DfKN1-4),从四个主要I类KNOX子片段中每个分离出一个,并通过逆转录PCR(RT-PCR)证明了在发育中可检测到DfKNOX转录本花器官,如带刺的唇lum和下卵巢。尽管DfKN2转录本在烟草中的组成型表达会产生广泛的花卉异常,包括锯齿状的花瓣边缘,多余的花瓣组织和融合的器官,但均未产生典型的组成型KNOX表达的营养表型。这些数据高度暗示了KNOX表达在花卉发育中的作用,这在具有精美花朵的类群中可能尤其重要。

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