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Auxin Polar Transport Is Essential for the Establishment of Bilateral Symmetry during Early Plant Embryogenesis.

机译:生长素极性运输对于植物早期胚胎发生过程中建立双边对称性至关重要。

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摘要

We used an in vitro culture system to investigate the effects of three auxin polar transport inhibitors (9-hydroxyfluorene-9-carboxylic acid, trans-cinnamic acid, and 2,3,5-triiodobenzoic acid) on the development of early globular to heart-shaped stage embryos of Indian mustard (Brassica juncea) plants. Although the effective concentrations vary with the different inhibitors, all of them induced the formation of fused cotyledons in globular ([less than or equal to]60 [mu]m) but not heart-shaped embryos. Inhibitor-treated Brassica embryos phenocopy embryos of the Arabidopsis pin-formed mutant pin1-1, which has reduced auxin polar transport activity in inflorescence axes, as well as embryos of the Arabidopsis emb30 (gnom) mutant. These results indicate that the polar transport of auxin in early globular embryos is essential for the establishment of bilateral symmetry during plant embryogenesis. Based on these observations, we propose two possible models for the action of auxin during cotyledon formation.
机译:我们使用体外培养系统来研究三种生长素极性转运抑制剂(9-羟基芴-9-羧酸,反式肉桂酸和2,3,5-三碘苯甲酸)对早期球状至心脏发育的影响芥菜(Brassica juncea)植物的异形阶段胚。尽管有效浓度随抑制剂的不同而不同,但它们均诱导球形(小于或等于60μm)融合子叶的形成,但不诱导心形胚胎的融合。拟南芥pin形成的突变体pin1-1的抑制剂处理的芸苔属胚表型胚,在花序轴上具有降低的生长素极性转运活性,以及​​拟南芥emb30(gnom)突变体的胚。这些结果表明生长素在早期球状胚中的极性转运对于植物胚胎发生过程中建立双侧对称性至关重要。基于这些观察,我们提出了两种可能的生长素在子叶形成过程中的作用模型。

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