首页> 外文期刊>Journal of Experimental Botany >Characterization and expression profiling of cucumber kinesin genes during early fruit development: revealing the roles of kinesins in exponential cell production and enlargement in cucumber fruit.
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Characterization and expression profiling of cucumber kinesin genes during early fruit development: revealing the roles of kinesins in exponential cell production and enlargement in cucumber fruit.

机译:黄瓜果实早期发育过程中黄瓜驱动蛋白基因的特征和表达谱:揭示黄瓜果实中驱动蛋白在指数细胞产生和扩增中的作用。

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摘要

Rapid cell division and expansion in early fruit development are important phases for cucumber fruit yield and quality. Kinesin proteins are microtubule-based motors responsible for modulating cell division and enlargement. In this work, the candidate kinesin genes involved in rapid cell division and expansion during cucumber fruit development were investigated. The morphological and cellular changes during early fruit development were compared in four cucumber genotypes with varied fruit size. The correlation between the expression profiles of cucumber kinesin genes and cellular changes in fruit was investigated. Finally, the biochemical characteristics and subcellular localizations of three candidate kinesins were studied. The results clarified the morphological and cellular changes during early cucumber fruit development. This study found that CsKF2-CsKF6 were positively correlated with rapid cell production; CsKF1 and CsKF7 showed a strongly positive correlation with rapid cell expansion. The results also indicated that CsKF1 localized to the plasma membrane of fast-expanding fruit cells, that CsKF2 might play a role in fruit chloroplast division, and that CsKF3 is involved in the function or formation of phragmoplasts in fruit telophase cells. The results strongly suggest that specific fruit-enriched kinesins are specialized in their functions in rapid cell division and expansion during cucumber fruit development.Digital Object Identifier http://dx.doi.org/10.1093/jxb/ert269
机译:早期果实发育中的快速细胞分裂和扩增是黄瓜果实产量和品质的重要阶段。驱动蛋白是基于微管的马达,负责调节细胞分裂和扩增。在这项工作中,调查了参与黄瓜果实发育过程中快速细胞分裂和扩增的候选驱动蛋白基因。比较了果实大小不同的四种黄瓜基因型在果实早期发育过程中的形态和细胞变化。研究了黄瓜驱动蛋白基因表达谱与果实细胞变化之间的相关性。最后,研究了三种候选驱动蛋白的生化特性和亚细胞定位。结果阐明了黄瓜果实早期发育过程中的形态和细胞变化。这项研究发现,CsKF2-CsKF6与细胞快速产生呈正相关。 CsKF1和CsKF7与细胞快速扩增显示出强烈的正相关性。结果还表明,CsKF1定位于快速膨胀的水果细胞的质膜,CsKF2可能在水果叶绿体分裂中起作用,并且CsKF3参与了水果末期细胞中的原生质体的功能或形成。结果强烈表明特定的富含水果的驱动蛋白在黄瓜果实发育过程中专门用于快速细胞分裂和扩增.Digital Object Identifier http://dx.doi.org/10.1093/jxb/ert269

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