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绒毡层AHL家族蛋白TEK决定花粉壁中内层的形成。

The tapetal AHL family protein TEK determines nexine formation in the pollen wall.

作者信息

Lou Yue, Xu Xiao-Feng, Zhu Jun, Gu Jing-Nan, Blackmore Stephen, Yang Zhong-Nan

机构信息

1] College of Life and Environment Sciences, Development Center of Plant Germplasm Resources, Shanghai Normal University, Shanghai 200234, China [2].

College of Life and Environment Sciences, Development Center of Plant Germplasm Resources, Shanghai Normal University, Shanghai 200234, China.

出版信息

Nat Commun. 2014 May 8;5:3855. doi: 10.1038/ncomms4855.

Abstract

The pollen wall, an essential structure for pollen function, consists of two layers, an inner intine and an outer exine. The latter is further divided into sexine and nexine. Many genes involved in sexine development have been reported, in which the MYB transcription factor Male Sterile 188 (MS188) specifies sexine in Arabidopsis. However, nexine formation remains poorly understood. Here we report the knockout of TRANSPOSABLE ELEMENT SILENCING VIA AT-HOOK (TEK) leads to nexine absence in Arabidopsis. TEK encodes an AT-hook nuclear localized family protein highly expressed in tapetum during the tetrad stage. Absence of nexine in tek disrupts the deposition of intine without affecting sexine formation. We find that ABORTED MICROSPORES directly regulates the expression of TEK and MS188 in tapetum for the nexine and sexine formation, respectively. Our data show that a transcriptional cascade in the tapetum specifies the development of pollen wall.

摘要

花粉壁是花粉发挥功能所必需的结构,由两层组成,内层为内壁,外层为外壁。外壁进一步分为覆盖层和基粒棒层。已经报道了许多参与覆盖层发育的基因,其中MYB转录因子雄性不育188(MS188)在拟南芥中决定覆盖层的形成。然而,基粒棒层的形成仍知之甚少。在这里,我们报道通过AT钩转座元件沉默(TEK)基因敲除导致拟南芥中基粒棒层缺失。TEK编码一种在四分体阶段在绒毡层中高度表达的具有AT钩结构的核定位家族蛋白。tek突变体中基粒棒层的缺失会破坏内壁的沉积,但不影响覆盖层的形成。我们发现败育小孢子分别直接调控绒毡层中TEK和MS188的表达,以形成基粒棒层和覆盖层。我们的数据表明,绒毡层中的转录级联决定了花粉壁的发育。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b36/4024750/b1865e4d9fcd/ncomms4855-f1.jpg

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