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SPIRAL1基因家族在拟南芥各向异性生长中的作用。

Role of the SPIRAL1 gene family in anisotropic growth of Arabidopsis thaliana.

作者信息

Nakajima Keiji, Kawamura Tomomi, Hashimoto Takashi

机构信息

Graduate School of Biological Sciences, Nara Institute of Science and Technology, 8916-5 Takayama, Ikoma, Nara, 630-0192 Japan.

出版信息

Plant Cell Physiol. 2006 Apr;47(4):513-22. doi: 10.1093/pcp/pcj020. Epub 2006 Feb 14.

DOI:10.1093/pcp/pcj020
PMID:16478750
Abstract

Arabidopsis spiral1 (spr1) mutants show a right-handed helical growth phenotype in roots and etiolated hypocotyls due to impaired directional growth of rapidly expanding cells. SPR1 encodes a small protein with as yet unknown biochemical functions, though its localization to cortical microtubules (MTs) suggests that SPR1 maintains directional cell expansion by regulating cortical MT functions. The Arabidopsis genome contains five SPR1-LIKE (SP1L) genes that share high sequence identity in N- and C-terminal regions. Overexpression of SP1Ls rescued the helical growth phenotype of spr1, indicating that SPR1 and SP1L proteins share the same biochemical functions. Expression analyses revealed that SPR1 and SP1L genes are transcribed in partially overlapping tissues. A combination of spr1 and sp1l mutations resulted in randomly oriented cortical MT arrays and isotropic expansion of epidermal cells. These observations suggest that SPR1 and SP1Ls act redundantly in maintaining the cortical MT organization essential for anisotropic cell growth, and that the helical growth phenotype of spr1 results from a partially compromised state of cortical MTs. Additionally, inflorescence stems of spr1 sp1l multiple mutants showed a right-handed tendril-like twining growth, indicating that a directional winding response may be conferred to the non-directional nutational movement by modulating the expression of SPR1 homologs.

摘要

拟南芥螺旋1(spr1)突变体在根和黄化下胚轴中表现出右手螺旋生长表型,这是由于快速扩展细胞的定向生长受损所致。SPR1编码一种生化功能尚不清楚的小蛋白,尽管其定位于皮层微管(MTs)表明SPR1通过调节皮层微管功能来维持细胞的定向扩展。拟南芥基因组包含五个类SPR1(SP1L)基因,它们在N端和C端区域具有高度的序列同一性。SP1L的过表达挽救了spr1的螺旋生长表型,表明SPR1和SP1L蛋白具有相同的生化功能。表达分析表明,SPR1和SP1L基因在部分重叠的组织中转录。spr1和sp1l突变的组合导致皮层微管阵列随机定向和表皮细胞各向同性扩展。这些观察结果表明,SPR1和SP1L在维持各向异性细胞生长所必需的皮层微管组织方面发挥冗余作用,并且spr1的螺旋生长表型是由皮层微管的部分受损状态导致的。此外,spr1 sp1l多重突变体的花序茎表现出右手卷须状缠绕生长,表明通过调节SPR1同源物的表达,可能赋予非定向点头运动一种定向缠绕反应。

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Role of the SPIRAL1 gene family in anisotropic growth of Arabidopsis thaliana.SPIRAL1基因家族在拟南芥各向异性生长中的作用。
Plant Cell Physiol. 2006 Apr;47(4):513-22. doi: 10.1093/pcp/pcj020. Epub 2006 Feb 14.
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SPIRAL1 encodes a plant-specific microtubule-localized protein required for directional control of rapidly expanding Arabidopsis cells.SPIRAL1编码一种植物特有的微管定位蛋白,该蛋白是拟南芥快速扩展细胞定向控制所必需的。
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Salt stress affects cortical microtubule organization and helical growth in Arabidopsis.盐胁迫影响拟南芥的皮层微管组织和螺旋生长。
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The Arabidopsis sku6/spiral1 gene encodes a plus end-localized microtubule-interacting protein involved in directional cell expansion.拟南芥sku6/spiral1基因编码一种定位于微管正端、参与细胞定向扩张的微管相互作用蛋白。
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Altered microtubule dynamics by expression of modified alpha-tubulin protein causes right-handed helical growth in transgenic Arabidopsis plants.通过表达修饰的α-微管蛋白改变微管动力学,导致转基因拟南芥植物出现右手螺旋生长。
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The microtubule plus-end tracking proteins SPR1 and EB1b interact to maintain polar cell elongation and directional organ growth in Arabidopsis.微管正端追踪蛋白SPR1和EB1b相互作用,以维持拟南芥中极性细胞伸长和器官的定向生长。
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Arabidopsis SPIRAL2 promotes uninterrupted microtubule growth by suppressing the pause state of microtubule dynamics.拟南芥SPIRAL2通过抑制微管动力学的暂停状态促进微管的不间断生长。
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Plant-specific microtubule-associated protein SPIRAL2 is required for anisotropic growth in Arabidopsis.植物特有的微管相关蛋白SPIRAL2是拟南芥各向异性生长所必需的。
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Microtubule basis for left-handed helical growth in Arabidopsis.拟南芥左手螺旋生长的微管基础
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MOR1 is essential for organizing cortical microtubules in plants.MOR1对于植物中皮层微管的组织至关重要。
Nature. 2001 May 31;411(6837):610-3. doi: 10.1038/35079128.

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