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拟南芥花粉内部存在一组新的油质蛋白。

A novel group of oleosins is present inside the pollen of Arabidopsis.

作者信息

Kim Hyun Uk, Hsieh Kai, Ratnayake Chandra, Huang Anthony H C

机构信息

Center for Plant Cell Biology, Department of Botany and Plant Sciences, University of California, Riverside, California 92521, USA.

出版信息

J Biol Chem. 2002 Jun 21;277(25):22677-84. doi: 10.1074/jbc.M109298200. Epub 2002 Apr 19.

Abstract

In plants, subcellular triacylglycerol granules in seeds (oil bodies) and floral tapetum (tapetosomes) are stabilized by amphipathic structural protein called oleosin. We hereby report a novel group of oleosins that is present inside the pollen of Arabidopsis thaliana. We have used the conserved sequence of oleosins to locate, via the DNA database, all 16 oleosin genes in the Arabidopsis genome. The oleosin genes can be divided into three groups according to their sequences and tissue-specific expressions, as probed by RNA blot hybridization and reverse transcriptase-PCR. The first group includes eight genes specifically expressed in the floret tapetum. The second group includes five genes specifically expressed in maturing seeds. The third, novel group includes three genes expressed in both maturing seeds and floral microspores, which will become pollen. Transgenic study using the promoter of one of these genes attached to a reporter gene has provided corroborative evidence for the specific expression of the gene in the microspores in the florets. One of the pollen oleosins can be identified by microsequencing and specific immunoblotting. Pollen oleosins synthesized by recombinant bacteria can collaborate with phospholipids in stabilizing reconstituted oil bodies. Thus, pollen has oleosins to stabilize the abundant subcellular oil bodies. Seed oil bodies and floret tapetosomes have been isolated from the miniature Arabidopsis plants, and the success indicates that the organelles can be subjected to future biochemical and genetic studies.

摘要

在植物中,种子中的亚细胞三酰甘油颗粒(油体)和花绒毡层(绒毡体)由一种名为油质蛋白的两亲性结构蛋白稳定。我们在此报告拟南芥花粉中存在的一组新的油质蛋白。我们利用油质蛋白的保守序列,通过DNA数据库在拟南芥基因组中定位了所有16个油质蛋白基因。通过RNA印迹杂交和逆转录-聚合酶链反应检测,油质蛋白基因可根据其序列和组织特异性表达分为三组。第一组包括8个在小花绒毡层中特异性表达的基因。第二组包括5个在成熟种子中特异性表达的基因。第三组,即新的一组,包括3个在成熟种子和花小孢子(将发育成花粉)中都表达的基因。使用其中一个基因的启动子连接报告基因的转基因研究为该基因在小花小孢子中的特异性表达提供了确凿证据。其中一种花粉油质蛋白可通过微量测序和特异性免疫印迹鉴定。重组细菌合成的花粉油质蛋白可与磷脂协同稳定重组油体。因此,花粉中有油质蛋白来稳定丰富的亚细胞油体。已从微型拟南芥植株中分离出种子油体和小花绒毡体,这一成功表明这些细胞器可用于未来的生化和遗传学研究。

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