首页> 外文期刊>Russian Journal of Developmental Biology >Phenomenon of 'Siamese embryos' in cereals in vivo and in vitro: Cleavage polyembryony and fasciations
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Phenomenon of 'Siamese embryos' in cereals in vivo and in vitro: Cleavage polyembryony and fasciations

机译:体内和体外谷物中的“暹罗胚”现象:卵裂多胚和成瘾

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摘要

The genesis of wheat microsporial polyembryoids in vitro was analyzed in detail. The nature of different phenotypes of cereal polymeric embryos was identified. They represent the class "multiple shoot meristems," which results from a cleavage polyembryony and is accompanied by organ fasciations of all known types (radial, flat, or ring). The morphological nature of cereal embryonic organs has been clarified: shoot meristem-axial organ; scutellum-lateral outgrowth of this axis; coleoptile-derivative of shoot meristem but fused with scutellum; terminality of scutellum-the result of linear fasciation that occurred historically. An explanation is given on how the structural model of an auxin polar transport works during the establishment of bilateral symmetry in a cereal embryo that is associated with the inverted polarization of the carrier protein PIN1 on cell membranes and, correspondingly, with the inverted auxin transport performed by this carrier (Fischer-Iglesias et al., 2001; Forestan et al., 2010).
机译:详细分析了小麦微孢子多胚体的起源。确定了谷物聚合物胚不同表型的性质。它们代表“多重芽分生组织”类,其源于卵裂多胚,并伴有所有已知类型(放射状,扁平状或环状)的器官束缚。谷物胚胎器官的形态特征已经阐明:芽分生组织-轴器官;轴的盾片侧生;分生组织的胚芽鞘衍生物,但与盾片融合;盾片的终端性-历史上发生的线性迷恋的结果。解释了在谷物胚胎中建立双边对称性时生长素极性转运的结构模型是如何工作的,这与载体蛋白PIN1在细胞膜上的反向极化有关,并相应地与进行的生长素反向转运有关通过这种载体(Fischer-Iglesias等,2001; Forestan等,2010)。

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