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烟草薄细胞层外植体(TCLs)中根、营养枝和花形态发生的控制

The control of root, vegetative shoot and flower morphogenesis in tobacco thin cell-layer explants (TCLs).

作者信息

Mohnen D, Eberhard S, Marfà V, Doubrava N, Toubart P, Gollin D J, Gruber T A, Nuri W, Albersheim P, Darvill A

机构信息

Complex Carbohydrate Research Center, University of Georgia, Athens 30602.

出版信息

Development. 1990 Jan;108(1):191-201. doi: 10.1242/dev.108.1.191.

Abstract

Thin cell-layer explants (TCLs) have been proposed as favorable tissues for the study of root, vegetative shoot and flower formation. We tested the effects of pH, light quality, light quantity, and IBA and kinetin concentrations on the morphogenesis of TCLs cultured individually on a liquid medium. Alterations of the amounts of exogenously supplied IBA and kinetin were sufficient to induce the formation of roots, vegetative shoots and flowers on TCLs cultured on otherwise identical media. The type and number of organs formed were sensitive to the intensity of light (55, 75, 100 and 120 muEinsteins m-2 sec-1) under which TCLs were grown. Evidence was obtained that the effects of light on TCL morphogenesis were associated with photochemical degradation of IBA in the medium. Evaluation of the organogenesis that occurred in TCLs cultured on a medium containing a range of IBA and kinetin concentrations showed that the number and type of organs formed, and overall growth, were dependent upon the initial concentrations of auxin and cytokinin. We have developed the TCL culture system into a sensitive and reproducible bioassay for the study of morphogenesis. The advantages of using the TCL morphogenesis bioassay for the identification and study of molecules (e.g. cell wall oligosaccharides) that may regulate morphogenesis are discussed.

摘要

薄细胞层外植体(TCLs)已被提议作为研究根、营养枝和花形成的理想组织。我们测试了pH值、光质、光量以及吲哚丁酸(IBA)和激动素浓度对在液体培养基中单独培养的TCLs形态发生的影响。改变外源供应的IBA和激动素的量足以诱导在其他条件相同的培养基上培养的TCLs形成根、营养枝和花。所形成器官的类型和数量对TCLs生长时的光照强度(55、75、100和120微爱因斯坦·米-2·秒-1)敏感。有证据表明,光对TCLs形态发生的影响与培养基中IBA的光化学降解有关。对在含有一系列IBA和激动素浓度的培养基上培养的TCLs中发生的器官发生进行评估表明,所形成器官的数量和类型以及整体生长取决于生长素和细胞分裂素的初始浓度。我们已将TCL培养系统发展成为一种用于形态发生研究的灵敏且可重复的生物测定法。讨论了使用TCL形态发生生物测定法来鉴定和研究可能调节形态发生的分子(如细胞壁寡糖)的优势。

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