首页> 外文期刊>In Vitro Cellular and Development Biology. Plant: Journal of the Tissue Culture Association >Adventitious shoot formation in decapitated dicotyledonous seedlings starts with regeneration of abnormal leaves from cells not located in a shoot apical meristem
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Adventitious shoot formation in decapitated dicotyledonous seedlings starts with regeneration of abnormal leaves from cells not located in a shoot apical meristem

机译:断头的双子叶植物幼苗中不定芽的形成始于不位于芽顶分生组织中的细胞的异常叶片再生

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Regeneration of new shoots in plant tissue culture is often associated with appearance of abnormally shaped leaves. We used the adventitious shoot regeneration response induced by decapitation (removal of all preformed shoot apical meristems, leaving a single cotyledon) of greenhouse-grown cotyledon-stage seedlings to test the hypothesis that such abnormal leaf formation is a normal regeneration progression following wounding and is not conditioned by tissue culture. To understand why shoot regeneration starts with defective organogenesis, the regeneration response was characterized by morphology and scanning electron and light microscopy in decapitated cotyledon-stage Cucurbita pepo seedlings. Several leaf primordia were observed to regenerate prior to differentiation of a de novo shoot apical meristem from dividing cells on the wound surface. Early regenerating primordia have a greatly distorted structure with dramatically altered dorsoventrality. Aberrant leaf morphogenesis in C. pepo gradually disappears as leaves eventually originate from a de novo adventitious shoot apical meristem, recovering normal phyllotaxis. Similarly, following comparable decapitation of seedlings from a number of families (Chenopodiaceae, Compositae, Convolvulaceae, Cucurbitaceae, Cruciferae, Fabaceae, Malvaceae, Papaveraceae, and Solanaceae) of several dicotyledonous clades (Ranunculales, Caryophyllales, Asterids, and Rosids), stems are regenerated bearing abnormal leaves; the normal leaf shape is gradually recovered. Some of the transient leaf developmental defects observed are similar to responses to mutations in leaf shape or shoot apical meristem function. Many species temporarily express this leaf development pathway, which is manifest in exceptional circumstances such as during recovery from excision of all preformed shoot meristems of a seedling.
机译:植物组织培养中新芽的再生通常与叶片形状异常有关。我们使用温室生长的子叶阶段幼苗的断头(去除所有预先形成的芽顶分生组织,留下单个子叶)诱导的不定芽再生响应,以检验这样的假说,即这种异常的叶片形成是受伤后正常的再生进程,并且是不受组织培养的限制。为了了解为什么芽再生以器官发生缺陷为起点,在断头的子叶期南瓜属幼苗中,通过形态学,扫描电子显微镜和光学显微镜对再生响应进行了表征。观察到数个叶原基在从表面上的分裂细胞分化出新梢顶分生组织之前再生。早期再生的原基具有严重扭曲的结构,背腹面发生了巨大变化。 C. pepo的异常叶片形态发生逐渐消失,因为叶片最终起源于不定梢的新芽顶端分生组织,恢复了正常的叶序。同样,在从多个科(藜科,菊科,旋花科,葫芦科,十字花科,豆科,锦葵科,罂粟科和茄科)的幼苗中进行了类似的断头处理后,发现了多个双子叶进化枝(毛unc科,石竹科,无核类和叶片异常正常的叶片形状逐渐恢复。观察到的一些短暂的叶片发育缺陷类似于对叶片形状突变或茎尖分生组织功能的反应。许多物种会暂时表达这种叶片发育途径,这在特殊情况下(例如,从幼苗的所有预先形成的分生组织的切除中恢复的过程中)很明显。

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