首页> 外文期刊>American Journal of Botany >Role of 2,4-dichlorophenoxyacetic acid (2,4-D) in somatic embryogenesis on cultured zygotic embryos of Arabidopsis: cell expansion, cell cycling, and morphogenesis during continuous exposure of embryos to 2,4-D
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Role of 2,4-dichlorophenoxyacetic acid (2,4-D) in somatic embryogenesis on cultured zygotic embryos of Arabidopsis: cell expansion, cell cycling, and morphogenesis during continuous exposure of embryos to 2,4-D

机译:2,4-二氯苯氧基乙酸(2,4-D)在拟南芥培养的合子胚上体细胞胚发生中的作用:胚胎持续暴露于2,4-D期间的细胞扩增,细胞周期和形态发生

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摘要

The relationship between cell expansion and cell cycling during somatic embryogenesis was studied in cultured bent-cotyledon-stage zygotic embryos of a transgenic stock of Arabidopsis thaliana harboring a cyclin 1 At:ß-glucuronidase (GUS) reporter gene construct. In embryos cultured in a medium containing 2,4-dichlorophenoxyacetic acid (2,4-D), following a brief period of growth by cell expansion, divisions were initiated in the procambial cells facing the adaxial side at the base of the cotyledons. Cell division activity later spread to almost the entire length of the cotyledons to form a callus on which globular and heart-shaped embryos appeared in about 10 d after culture. Anatomical and morphogenetic changes observed in cultured embryos were correlated with patterns of cell cycling by histochemical detection of GUS-expressing cells. Although early-stage somatic embryos did not develop further during their continued growth in the auxin-containing medium, maturation of embryos ensued upon their transfer to an auxin-free medium. In a small number of cultured zygotic embryos the shoot apical meristem was found to differentiate a leaf, a green tubular structure, or a somatic embryo. Contrary to the results from previous investigations, which have assigned a major role for the shoot apical meristem and cells in the axils of cotyledons in the development of somatic embryos on cultured zygotic embryos of A. thaliana, the present work shows that somatic embryos originate almost exclusively on the callus formed on the cotyledons. Other observations such as the induction of somatic embryos on cultured cotyledons and the inability of the embryo axis (consisting of the root, hypocotyl, and shoot apical meristem without the cotyledons) to form somatic embryos, reaffirm the important role of the cotyledons in somatic embryogenesis in this plant.
机译:在拟南芥转基因种群的转弯子叶期 合子胚中研究了 体细胞胚发生过程中细胞扩增与细胞周期之间的关系。带有cyclin 1 At:ß-葡糖醛酸糖苷酶(GUS)报告基因 基因构建体。在包含2,4-二氯苯氧基乙酸 酸(2,4-D)的培养基中培养的胚胎中,通过细胞扩增短暂生长后, 分裂开始在子叶基部面向 正轴侧的原核细胞。细胞分裂活性 后来扩展到子叶的几乎整个长度上,形成 愈伤组织,在其上约有10个球状和心形胚出现在 上d培养后。通过对表达GUS的细胞进行组织化学检测,在培养的胚胎中观察到的解剖学和形态发生变化与 细胞循环的模式相关。 尽管是早期体细胞胚胎在含生长素的培养基中持续生长期间没有进一步发育, 在将胚胎转移至无生长素的 培养基中后,胚胎成熟。在少量培养的合子胚中,发现茎 顶端分生组织可以区分叶片,绿色管状 结构或体细胞胚。与 先前研究的结果相反,后者在发育过程中为 子叶 的腋梢分生组织和细胞赋予了重要作用拟南芥培养的合子胚 上的体细胞胚胎,目前的研究表明,体细胞胚 几乎起源于子叶上形成的愈伤组织。 >其他观察结果,例如在培养的子叶上诱导体细胞胚 和胚轴失效 (由根,下胚轴和茎尖分生组织组成, < / sup>没有子叶)形成体细胞胚,重申 此植物中子叶在体细胞胚发生中的重要作用。

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