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棉花花粉发育过程中同工酶和蛋白质的研究 被引量:4
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作者 王林嵩 庞广昌 +4 位作者 马全祥 王琳 刘青兰 张黛静 陆文梁 《西北植物学报》 CAS CSCD 1997年第4期458-462,共5页
利用超薄胶电泳技术对陆地棉(GossypiumhirsutumL.)花粉发育各期的酯酶和过氧化物酶的同工酶以及蛋白质的种类及活性变化进行研究。结果发现:在花粉第一次有丝分裂结束之前,存在大量的低分子量酯酶和过氧化物酶,花粉成熟后又新出... 利用超薄胶电泳技术对陆地棉(GossypiumhirsutumL.)花粉发育各期的酯酶和过氧化物酶的同工酶以及蛋白质的种类及活性变化进行研究。结果发现:在花粉第一次有丝分裂结束之前,存在大量的低分子量酯酶和过氧化物酶,花粉成熟后又新出现了一些大分子量酯酶和过氧化物酶,在四分体阶段,出现了一种特异蛋白,推测具有调控作用。在有丝分裂结束后,出现了一些新的蛋白质,这些蛋白质存在的时间很短。之后大量蛋白质开始合成,并在数量和种类上有逐渐增加的趋势。在花粉成熟阶段达到最高峰,表明花粉的发育过程是一个基因差异表达的过程,并受一定的机制控制。 展开更多
关键词 棉花 酯酶同工酶 花粉 发育 蛋白
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Transport Logistics in Pollen Tubes 被引量:3
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作者 Youssef Chebli Jens Kroeger Anja Geitmann 《Molecular Plant》 SCIE CAS CSCD 2013年第4期1037-1052,共16页
Cellular organelles move within the cellular volume and the effect of the resulting drag forces on the liquid causes bulk movement in the cytosol. The movement of both organelles and cytosol leads to an overall motion... Cellular organelles move within the cellular volume and the effect of the resulting drag forces on the liquid causes bulk movement in the cytosol. The movement of both organelles and cytosol leads to an overall motion pattern called cytoplasmic streaming or cyclosis. This streaming enables the active and passive transport of molecules and orga- nelles between cellular compartments. Furthermore, the fusion and budding of vesicles with and from the plasma mem- brane (exo/endocytosis) allow for transport of material between the inside and the outside of the cell. In the pollen tube, cytoplasmic streaming and exo/endocytosis are very active and fulfill several different functions. In this review, we focus on the logistics of intracellular motion and transport processes as well as their biophysical underpinnings. We discuss various modeling attempts that have been performed to understand both long-distance shuttling and short-distance targeting of organelles. We show how the combination of mechanical and mathematical modeling with cell biological approaches has contributed to our understanding of intracellular transport logistics. 展开更多
关键词 transport processes/kinetics cell expansion cytoskeleton dynamics protein traffic and secretion pollendevelopment.
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