动力蛋白-2和动力蛋白-9在马氏雄配子体纤毛发生过程中具有不典型的功能。

Q1 Biochemistry, Genetics and Molecular Biology BMC Cell Biology Pub Date : 2016-07-16 DOI:10.1186/s12860-016-0107-7
Erika J Tomei, Stephen M Wolniak
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引用次数: 13

摘要

背景:半水生蕨类植物Marsilea vestita的精子发生是一个快速、同步的过程,当干燥的小孢子被放置在水中时就开始了。发育是转录后驱动的,可以分为两个阶段。第一阶段包括9个有丝分裂周期,产生7个不育细胞和32个精子。在第二阶段,每个精细胞分化成具有约140根纤毛的螺旋状运动精子。结果:对马菊雄性配子体的转录组分析发现,在精子分化和纤毛发生过程中存在1个激酶2 (mv激酶2)和2个激酶9 s (mv激酶9a和mv激酶9b)。RNAi敲低表明MvKinesin-2是精原细胞有丝分裂和细胞分裂所必需的。没有MvKinesin-2,大多数精子含有两个或更多的卷状微管带和附着的纤毛和非常大的细胞体。MvKinesin-9A是沿细胞器线圈正确放置基体所必需的。MvKinesin-9A基因敲低具有不规则定位的基底体和纤毛。在MvKinesin-2和-9A基因敲低的情况下,精子游动行为会因轴突位置或纤毛发育缺陷而改变。与对照组相比,MvKinesin-2基因的敲除只会颤抖,而MvKinesin-9A基因的敲除则会不规律地游动。相比之下,mvkineins - 9b沉默后产生的精子表现出正常的形态和游泳行为,尽管这些配子的发育速度比正常的慢。结论:MvKinesin-2和MvKinesin-9A是马氏菊雄性配子体纤毛发生和运动的必需基因;然而,这些运动蛋白在这些过程中表现出非典型的作用。MvKinesin-2是细胞分裂所必需的,这是一个通常与该蛋白无关的作用,以及在快速发育期间的纤毛发生,MvKinesin-9A是基础体正确定向所需要的。我们的研究结果首次研究了调节陆地植物纤毛发生的驱动蛋白相关机制。
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Kinesin-2 and kinesin-9 have atypical functions during ciliogenesis in the male gametophyte of Marsilea vestita.

Background: Spermatogenesis in the semi-aquatic fern, Marsilea vestita, is a rapid, synchronous process that is initiated when dry microspores are placed in water. Development is post-transcriptionally driven and can be divided into two phases. The first phase consists of nine mitotic division cycles that produce 7 sterile cells and 32 spermatids. During the second phase, each spermatid differentiates into a corkscrew-shaped motile spermatozoid with ~140 cilia.

Results: Analysis of the transcriptome from the male gametophyte of Marsilea revealed that one kinesin-2 (MvKinesin-2) and two kinesin-9 s (MvKinesin-9A and MvKinesin-9B) are present during spermatid differentiation and ciliogenesis. RNAi knockdowns show that MvKinesin-2 is required for mitosis and cytokinesis in spermatogenous cells. Without MvKinesin-2, most spermatozoids contain two or more coiled microtubule ribbons with attached cilia and very large cell bodies. MvKinesin-9A is required for the correct placement of basal bodies along the organelle coil. Knockdowns of MvKinesin-9A have basal bodies and cilia that are irregularly positioned. Spermatozoid swimming behavior in MvKinesin-2 and -9A knockdowns is altered because of defects in axonemal placement or ciliogenesis. MvKinesin-2 knockdowns only quiver in place while MvKinesin-9A knockdowns swim erratically compared to controls. In contrast, spermatozoids produced after the silencing of MvKinesin-9B exhibit normal morphology and swimming behavior, though development is slower than normal for these gametes.

Conclusions: Our results show that MvKinesin-2 and MvKinesin-9A are required for ciliogenesis and motility in the Marsilea male gametophyte; however, these kinesins display atypical roles during these processes. MvKinesin-2 is required for cytokinesis, a role not typically associated with this protein, as well as for ciliogenesis during rapid development and MvKinesin-9A is needed for the correct orientation of basal bodies. Our results are the first to investigate the kinesin-linked mechanisms that regulate ciliogenesis in a land plant.

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来源期刊
BMC Cell Biology
BMC Cell Biology 生物-细胞生物学
CiteScore
7.30
自引率
0.00%
发文量
0
审稿时长
12 months
期刊介绍: BMC Molecular and Cell Biology, formerly known as BMC Cell Biology, is an open access journal that considers articles on all aspects of both eukaryotic and prokaryotic cell and molecular biology, including structural and functional cell biology, DNA and RNA in a cellular context and biochemistry, as well as research using both the experimental and theoretical aspects of physics to study biological processes and investigations into the structure of biological macromolecules.
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