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首页> 外文期刊>Proteomics >Proteomic analyses of Oryza sativa mature pollen reveal novel proteins associated with pollen germination and tube growth
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Proteomic analyses of Oryza sativa mature pollen reveal novel proteins associated with pollen germination and tube growth

机译:水稻成熟花粉的蛋白质组学分析揭示了与花粉萌发和管生长相关的新型蛋白质

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As a highly reduced organism, pollen performs specialized functions to generate and carry sperm into the ovule by its polarily growing pollen tube. Yet the molecular genetic basis of these functions is poorly understood. Here, we identified 322 unique proteins, most of which were not reported previously to be in pollen, from mature pollen of Oryza sativa L. ssp japonica using a proteomic approach, 23% of them having more than one isoform. Functional classification reveals that an over representation of the proteins was related to signal transduction (10%), wall remodeling and metabolism (11%), and protein synthesis, assembly and degradation (14%), as well as carbohydrate and energy metabolism (25%). Further, 11% of the identified proteins are functionally unknown and do not contain any conserved domain associated with known activities. These analyses also identified 5 novel proteins by de novo sequencing and revealed several important proteins, mainly involved in signal transduction (such as protein kinases, receptor kinase-interacting proteins, guanosine 5'-diphosphate dissociation inhibitors, C2 domain-containing proteins, cydophilins), protein synthesis, assembly and degradation (such as prohibitin, mitochondrial processing peptidase, putative UFD1, AAA(+) ATPase), and wall remodeling and metabolism (such as reversibly glycosylated polypeptides, cellulose synthase-like OsCsLF7). The study is the first dose investigation, to our knowledge, of protein complement in mature pollen, and presents useful molecular information at the protein level to further understand the mechanisms underlying pollen germination and tube growth.
机译:作为高度还原的有机体,花粉通过其逐渐生长的花粉管执行专门的功能,以将精子生成并携带到胚珠中。然而,对这些功能的分子遗传基础知之甚少。在这里,我们使用蛋白质组学方法从稻的成熟花粉中鉴定出322种独特的蛋白,其中大多数以前未报道过花粉,其中23%具有一种以上的同种型。功能分类表明,蛋白质的过量表达与信号转导(10%),壁重塑和代谢(11%),蛋白质合成,组装和降解(14%)以及碳水化合物和能量代谢有关(25)。 %)。此外,11%的鉴定蛋白在功能上是未知的,并且不包含与已知活性相关的任何保守结构域。这些分析还通过从头测序鉴定了5种新蛋白,并揭示了几种重要的蛋白,主要参与信号转导(例如蛋白激酶,与受体激酶相互作用的蛋白,鸟苷5'-二磷酸解离抑制剂,含C2结构域的蛋白,cydophilins)。 ,蛋白质的合成,组装和降解(例如禁止素,线粒体加工肽酶,推定的UFD1,AAA(+)ATPase)以及壁重塑和代谢(例如可逆糖基化多肽,类似纤维素合酶的OsCsLF7)。就我们所知,该研究是对成熟花粉中蛋白质补体的首次剂量研究,并在蛋白质水平上提供了有用的分子信息,以进一步了解花粉萌发和试管生长的机制。

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