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拟南芥中增强的 NO 传递通道表达导致果实开裂。

Fruit indehiscence caused by enhanced expression of NO TRANSMITTING TRACT in Arabidopsis thaliana.

机构信息

Creative Research Initiatives, Division of Life Sciences, Korea University, Seoul 136-701, Korea.

出版信息

Mol Cells. 2013 Jun;35(6):519-25. doi: 10.1007/s10059-013-0030-0. Epub 2013 Mar 18.

Abstract

In flowering plants, fruit dehiscence enables seed dispersal. Here we report that ntt-3D, an activation tagged allele of NO TRANSMITTING TRACT (NTT), caused a failure of fruit dehiscence in Arabidopsis. We identified ntt-3D, in which the 35S enhancer was inserted adjacent to AT3G-57670, from our activation tagged mutant library. ntt-3D mutants showed serrated leaves, short siliques, and indehiscence phenotypes. NTT-overexpressing plants largely phenocopied the ntt-3D plants. As the proximate cause of the indehiscence, ntt-3D plants exhibited a near absence of valve margin and lignified endocarp b layer in the carpel. In addition, the replum was enlarged in ntt-3D mutants. NTT expression reached a peak in flowers at stage 11 and gradually decreased thereafter and pNTT::GUS expression was mainly observed in the replum, indicating a potential role in fruit patterning. NTT:GFP localized in the nucleus and cytoplasm. FRUITFULL (FUL) expression was downregulated in ntt-3D mutants and ntt-3D suppressed upregulation of FUL in replumless mutants. These results indicate that NTT suppresses FUL, indicating a potential role in patterning of the silique. In seed crops, a reduction in pod dehiscence can increase yield by decreasing seed dispersal; therefore, our results may prove useful as a basis to improve crop yield.

摘要

在开花植物中,果实开裂使种子得以散布。本文报道,NO TRANSMITTING TRACT(NTT)的激活标记等位基因 ntt-3D 导致拟南芥果实开裂失败。我们从激活标记突变体库中鉴定出 ntt-3D,其 35S 增强子插入 AT3G-57670 附近。ntt-3D 突变体表现出锯齿状叶片、短的果荚和不开裂的表型。NTT 过表达植物在很大程度上表现出 ntt-3D 植物的表型。作为不开裂的直接原因,ntt-3D 植物表现出心皮瓣边缘几乎不存在以及木质内果皮 b 层。此外,ntt-3D 突变体中背缝线增大。ntt-3D 植物在花 11 期达到 NTT 表达高峰,随后逐渐降低,pNTT::GUS 表达主要观察到在背缝线中,表明其在果实模式形成中具有潜在作用。NTT:GFP 定位于细胞核和细胞质。ntt-3D 突变体中 FRUITFULL(FUL)表达下调,ntt-3D 抑制了无背缝线突变体中 FUL 的上调。这些结果表明 NTT 抑制 FUL,表明其在果荚模式形成中具有潜在作用。在种子作物中,荚果开裂减少可通过减少种子散布来提高产量;因此,我们的结果可能有助于提高作物产量。

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