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Rab geranylgeranyl transferase beta 亚基对于 的胚胎和种子发育是必需的。

The Rab Geranylgeranyl Transferase Beta Subunit Is Essential for Embryo and Seed Development in .

机构信息

Faculty of Biology, University of Gdańsk, 80-308 Gdańsk, Poland.

Waite Research Institute, School of Agriculture, Food and Wine, The University of Adelaide, Urrbrae, SA 5064, Australia.

出版信息

Int J Mol Sci. 2021 Jul 24;22(15):7907. doi: 10.3390/ijms22157907.

Abstract

Auxin is a key regulator of plant development affecting the formation and maturation of reproductive structures. The apoplastic route of auxin transport engages influx and efflux facilitators from the PIN, AUX and ABCB families. The polar localization of these proteins and constant recycling from the plasma membrane to endosomes is dependent on Rab-mediated vesicular traffic. Rab proteins are anchored to membranes via posttranslational addition of two geranylgeranyl moieties by the Rab Geranylgeranyl Transferase enzyme (RGT), which consists of RGTA, RGTB and REP subunits. Here, we present data showing that seed development in the mutant, with decreased vesicular transport capacity, is disturbed. Both pre- and post-fertilization events are affected, leading to a decrease in seed yield. Pollen tube recognition at the stigma and its guidance to the micropyle is compromised and the seed coat forms incorrectly. Excess auxin in the sporophytic tissues of the ovule in the plants leads to an increased tendency of autonomous endosperm formation in unfertilized ovules and influences embryo development in a maternal sporophytic manner. The results show the importance of vesicular traffic for sexual reproduction in flowering plants, and highlight RGTB1 as a key component of sporophytic-filial signaling.

摘要

生长素是一种关键的植物发育调节剂,影响生殖结构的形成和成熟。生长素的质外体运输途径涉及从 PIN、AUX 和 ABCB 家族中流入和流出的促进剂。这些蛋白质的极性定位和从质膜到内体的不断循环,依赖于 Rab 介导的囊泡运输。Rab 蛋白通过 Rab 香叶基香叶基转移酶 (RGT) 对其进行翻译后添加两个香叶基二萜部分而锚定在膜上,该酶由 RGTA、RGTB 和 REP 亚基组成。在这里,我们提供的数据表明,突变体中的种子发育受到干扰,其囊泡运输能力降低。受精前和受精后的事件都受到影响,导致种子产量下降。柱头花粉管的识别及其向珠孔的引导受到损害,种皮形成不正确。突变体胚珠中营养组织中生长素的过量会导致未受精胚珠中自主胚乳形成的趋势增加,并以母体营养组织的方式影响胚胎发育。结果表明,囊泡运输对开花植物有性繁殖的重要性,并突出了 RGTB1 作为营养组织-后代信号的关键组成部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7603/8347404/5d47d24817f7/ijms-22-07907-g001.jpg

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