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Germination and Early Seedling Development in Quercus ilex Recalcitrant and Non-dormant Seeds: Targeted Transcriptional Hormonal and Sugar Analysis

机译:拟南芥顽calc和非休眠种子的萌发和早期幼苗发育:靶向转录激素和糖分析

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摘要

Seed germination and early seedling development have been studied in the recalcitrant species Quercus ilex using targeted transcriptional, hormonal, and sugar analysis. Embryos and seedlings were collected at eight morphologically defined developmental stages, S0–S7. A typical triphasic water uptake curve was observed throughout development, accompanied by a decrease in sucrose and an increase in glucose and fructose. Low levels of abscisic acid (ABA) and high levels of gibberellins (GAs) were observed in mature seeds. Post-germination, indole-3-acetic acid (IAA), increased, whereas GA remained high, a pattern commonly observed during growth and development. The abundance of transcripts from ABA-related genes was positively correlated with the changes in the content of the phytohormone. Transcripts of the drought-related genes Dhn3 and GolS were more abundant at S0, then decreased in parallel with increasing water content. Transcripts for Gapdh, and Nadh6 were abundant at S0, supporting the occurrence of an active metabolism in recalcitrant seeds at the time of shedding. The importance of ROS during germination is manifest in the high transcript levels for Sod and Gst, found in mature seeds. The results presented herein help distinguish recalcitrant (e.g., Q. ilex) seeds from their orthodox counterparts. Our results indicate that recalcitrance is established during seed development but not manifest until germination (S1–S3). Post-germination the patterns are quite similar for both orthodox and recalcitrant seeds.
机译:使用靶向转录,激素和糖分析,在顽in物种栎栎中研究了种子发芽和幼苗早期发育。胚胎和幼苗是在八个形态定义的发育阶段S0–S7收集的。在整个发育过程中观察到典型的三水摄取曲线,同时蔗糖减少,葡萄糖和果糖增加。在成熟种子中观察到低水平的脱落酸(ABA)和高水平的赤霉素(GAs)。发芽后,吲哚-3-乙酸(IAA)增加,而GA保持较高,这是在生长和发育过程中常见的模式。来自ABA相关基因的转录产物的丰度与植物激素含量的变化呈正相关。干旱相关基因Dhn3和GolS的转录本在S0处更为丰富,然后随着水分含量的增加而下降。 Gapdh和Nadh6的转录本在S0处很丰富,这支持了脱落时顽calc型种子发生活性代谢。 ROS在发芽过程中的重要性体现在成熟种子中Sod和Gst的高转录水平上。本文提供的结果有助于区分顽固性(例如Q. ilex)种子与正统种子。我们的结果表明,顽固性在种子发育过程中建立,但直到发芽(S1-S3)才表现出来。发芽后,正统种子和顽re型种子的模式都非常相似。

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