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Polar auxin transport controls suspensor fate

机译:极地植物生长素运输控制悬浮物的命运

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摘要

Polar auxin transport is critical for normal embryo development in angiosperms. It has been proposed that auxin accumulates dynamically at specific positions, which in early Arabidopsis embryos correlates with developmental decisions such as specification of the apical cell lineage, specification of the hypophysis, and differentiation of the two cotyledons. In conifers, pattern formation during embryo development is different, and includes a free nuclear stage, nondividing suspensor cells, presence of tube cells, lack of hypophysis and formation of a crown of cotyledons surrounding the shoot apical meristem. We have recently shown that polar auxin transport is important for normal embryo development also in conifers. Here we suggest a model where auxin is transported from the suspensor cells to the embryonal mass during early embryogeny in conifers. This transport is essential for the developmental decisions of the tube cells and the suspensor, and affects both the amount of programmed cell death and the embryo patterning.
机译:生长素的极性转运对于被子植物的正常胚胎发育至关重要。已经提出,生长素在特定位置动态积累,这在拟南芥早期胚胎中与发育决定有关,例如根尖细胞谱系的规格,垂体的规格以及两个子叶的分化。在针叶树中,胚胎发育过程中的花样形成是不同的,包括自由核阶段,未分裂的悬细胞,管细胞的存在,垂体的缺乏以及围绕芽顶分生组织的子叶冠的形成。我们最近表明,极性生长素运输对于针叶树中的正常胚胎发育也很重要。在这里,我们提出了一个模型,其中在针叶树的早期胚发生过程中,生长素从悬液细胞转运到胚团。这种转运对于管细胞和悬液细胞的发育决定是必不可少的,并且影响程序性细胞死亡的数量和胚胎模式。

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