首页> 外文期刊>Journal of the American Society for Horticultural Science >Temporal and Spatial Pattern of Indole-3-acetic Acid Occurrence during Walnut Pistillate Flower Bud Differentiation as Revealed by Immunohistochemistry
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Temporal and Spatial Pattern of Indole-3-acetic Acid Occurrence during Walnut Pistillate Flower Bud Differentiation as Revealed by Immunohistochemistry

机译:免疫组化显示核桃油葵花芽分化过程中吲哚-3-乙酸的时空分布

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摘要

We used anti-indole-3-acetic acid (IAA) monoclonal antibodies to monitor the temporal and spatial pattern of IAA during pistillate flower bud differentiation in the walnut (Juglans regia) cultivar Liaoning 1. Based on morphological changes, the process of pistillate flower bud differentiation was divided into five stages. The flower induction stage, which includes the early phase, midphase, and late phase, persisted from 25 Apr. to the end of May. The pedicel differentiation stage began on 5 June. The bract primordium stage began on 25 June and persisted through mid-March of the next year. Both the perianth and pistil differentiation stages persisted for nearly 2 weeks. During the floral induction period, little IAA was present in the shoot apical meristem (SAM); hence, the SAM may not always be a site of IAA production. IAA was obviously concentrated in cells of the first several layers of the SAM during pedicel primordium formation. High levels of IAA were also noted in the phyllome, young leaf tips, and vascular bundle of leaves and gemmae. This direct evidence indicates that no close relationship exists between IAA and physiological differentiation; instead, IAA may strongly affect morphogenesis. These findings comprise a first step toward elucidating the walnut flowering mechanism.
机译:我们使用抗吲哚-3-乙酸(IAA)单克隆抗体来监测辽宁核桃(Juglans regia)品种在雌蕊花蕾分化过程中IAA的时间和空间格局。基于形态变化,雌蕊花的过程芽分化分为五个阶段。从4月25日至5月底持续进行花的诱导阶段,包括早期,中期和后期。花梗分化阶段于6月5日开始。片原基期始于6月25日,一直持续到明年3月中旬。花被和雌蕊分化阶段都持续了将近2周。在花芽诱导期,茎尖分生组织(SAM)中几乎没有IAA参与;因此,SAM可能并不总是IAA生产的场所。在花梗原基形成过程中,IAA明显集中在SAM的前几层细胞中。在叶序,幼叶尖端以及叶片和胚芽的维管束中也发现了高水平的IAA。这种直接的证据表明,IAA与生理分化之间不存在紧密的关系。相反,IAA可能会强烈影响形态发生。这些发现是阐明核桃开花机理的第一步。

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