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Integration of Phenotype and Hormone Data during Adventitious Rooting in Carnation (Dianthus caryophyllus L.) Stem Cuttings

机译:香石竹(Dianthus caryophyllus L.)茎插条不定根生根过程中表型和激素数据的整合

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摘要

The rooting of stem cuttings is a highly efficient procedure for the vegetative propagation of ornamental plants. In cultivated carnations, an increased auxin level in the stem cutting base produced by active auxin transport from the leaves triggers adventitious root (AR) formation from the cambium. To provide additional insight into the physiological and genetic basis of this complex trait, we studied AR formation in a collection of 159 F1 lines derived from a cross between two hybrid cultivars (2003 R 8 and 2101-02 MFR) showing contrasting rooting performances. In three different experiments, time-series for several stem and root architectural traits were quantified in detail in a subset of these double-cross hybrid lines displaying extreme rooting phenotypes and their parental genotypes. Our results indicate that the water content and area of the AR system directly contributed to the shoot water content and shoot growth. Moreover, morphometric data and rooting quality parameters were found to be associated with some stress-related metabolites such as 1-aminocyclopropane-1-carboxylic acid (ACC), the ethylene precursor, and the conjugated auxin indol-3-acetic acid-aspartic acid (IAA-Asp).
机译:插条生根是观赏植物营养繁殖的高效方法。在栽培的康乃馨中,通过主动从叶片中运输植物生长素而在茎切取基部中增加的植物生长素水平触发了形成层不定根(AR)的形成。为了提供对该复杂性状的生理和遗传基础的进一步了解,我们在159个F1系的集合中研究了AR的形成,该系来自两个杂交品种(2003 R 8和2101-02 MFR)之间的杂交,显示出不同的生根性能。在三个不同的实验中,在显示极端生根表型及其亲本基因型的双杂交杂交品系的子集中,详细量化了几种茎和根建筑性状的时间序列。我们的结果表明,AR系统的水含量和面积直接影响枝条含水量和枝条生长。此外,形态数据和生根质量参数被发现与一些与应力相关的代谢产物有关,例如1-氨基环丙烷-1-羧酸(ACC),乙烯前体和共轭生长素吲哚-3-乙酸-天冬氨酸。 (IAA-Asp)。

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