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Identification of pre-fertilization reproductive barriers and the underlying cytological mechanism in crosses among three petal-types of Jasminum sambac and their relevance to phylogenetic relationships

机译:三种茉莉花瓣类型的杂交中杂交前杂交生殖障碍的识别及其潜在的细胞学机制及其与亲缘关系的研究

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摘要

Crosses among single-, double- and multi-petal jasmine cultivars (Jasminum sambac Aiton) are unable to easily generate hybrids. To identify the reproductive barriers restricting hybrid set, dynamic changes in jasmine pollen viability and pistil receptivity were compared at different flowering stages. Pollen-pistil interactions in six reciprocal crosses were also investigated to characterize pollen-stigma compatibility. Additionally, paraffin sections of pollinated embryo sacs were prepared for subsequent analyses of developmental status. Furthermore, pistil cell ultrastructural characteristics were observed to reveal cytological mechanism regulating pistil receptivity and the pollen-pistil interactions. We observed that pollen viability and stigma receptivity varied depending on petal phenotype and flowering stage and were easily lost during flowering. Different reciprocal crosses exhibited varied pollen-stigma compatibilities according to the pollen germination rates. Although some pollen grains germinated normally on maternal stigmas, the pollen tubes were arrested in the pistils and were unable to reach the ovaries. Additionally, the embryo sacs remained unfertilized until degenerating. Therefore, jasmine crosses are affected by pre-fertilization reproductive barriers. Low pollen fertility and poor stigma receptivity are detrimental to pollen germination and pollen-pistil compatibility, indicating they are two factors affecting hybrid set. Ultrastructural observation of the pistil cells revealed that cell death occurred during flowering. Thus, the early and rapid senescence of pistils is likely responsible for the decreased pistil receptivity and inhibited pollen tube growth. These findings may be relevant for future jasmine hybridizations. They provide new insights for the development of methods to overcome reproductive barriers and may also be useful for clarifying the phylogenetic relationships among jasmine cultivars with differing petal phenotypes.
机译:单瓣,双瓣和多瓣茉莉品种(Jasminum sambac Aiton)之间的杂交无法轻易产生杂种。为了确定限制杂种的生殖障碍,比较了茉莉花粉活力和雌蕊在不同开花阶段的动态变化。还研究了六个相互杂交中的花粉-雌蕊相互作用,以表征花粉-柱头相容性。此外,准备了授粉胚囊的石蜡切片,用于随后的发育状况分析。此外,观察到雌蕊细胞的超微结构特征揭示了调节雌蕊接受性和花粉-雌蕊相互作用的细胞学机制。我们观察到,花粉的活力和柱头的接受能力根据花瓣的表型和开花期而变化,并且在开花过程中容易丢失。根据花粉的发芽率,不同的互作表现出不同的花粉-柱头相容性。尽管一些花粉粒在母体柱头上正常发芽,但花粉管被滞留在雌蕊中,无法到达卵巢。另外,胚囊一直未受精直至退化。因此,茉莉花杂交受施肥前生殖屏障的影响。花粉育性低和柱头接受性差,不利于花粉萌发和花粉雌蕊亲和性,表明它们是影响杂交组的两个因素。雌蕊细胞的超微结构观察表明,开花过程中发生了细胞死亡。因此,雌蕊的早期和快速衰老可能是雌蕊接受性降低和花粉管生长受抑制的原因。这些发现可能与未来的茉莉花杂交有关。它们为克服生殖障碍的方法的发展提供了新的见识,也可能有助于阐明具有不同花瓣表型的茉莉花品种之间的系统发育关系。

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