Suppr超能文献

植物中甾醇甲基转移酶的多样化以及β-谷甾醇在定向细胞板形成和极性生长中的作用。

Diversification of sterol methyltransferase enzymes in plants and a role for β-sitosterol in oriented cell plate formation and polarized growth.

作者信息

Nakamoto Masatoshi, Schmit Anne-Catherine, Heintz Dimitri, Schaller Hubert, Ohta Daisaku

机构信息

Graduate School of Life and Environmental Sciences, Osaka Prefecture University, 599-8531, Sakai, Japan.

Institut de Biologie Moléculaire des Plantes, CNRS, UPR2357, Conventionné Avec l'Université de Strasbourg, 67084, Strasbourg, France.

出版信息

Plant J. 2015 Dec;84(5):860-74. doi: 10.1111/tpj.13043. Epub 2015 Nov 3.

Abstract

Phytosterols are classified into C24-ethylsterols and C24-methylsterols according to the different C24-alkylation levels conferred by two types of sterol methyltransferases (SMTs). The first type of SMT (SMT1) is widely conserved, whereas the second type (SMT2) has diverged in charophytes and land plants. The Arabidopsis smt2 smt3 mutant is defective in the SMT2 step, leading to deficiency in C24-ethylsterols while the C24-methylsterol pathway is unchanged. smt2 smt3 plants exhibit severe dwarfism and abnormal development throughout their life cycle, with irregular cell division followed by collapsed cell files. Preprophase bands are occasionally formed in perpendicular directions in adjacent cells, and abnormal phragmoplasts with mislocalized KNOLLE syntaxin and tubulin are observed. Defects in auxin-dependent processes are exemplified by mislocalizations of the PIN2 auxin efflux carrier due to disrupted cell division and failure to distribute PIN2 asymmetrically after cytokinesis. Although endocytosis of PIN2-GFP from the plasma membrane (PM) is apparently unaffected in smt2 smt3, strong inhibition of the endocytic recycling is associated with a remarkable reduction in the level of PIN2-GFP on the PM. Aberrant localization of the cytoplasmic linker associated protein (CLASP) and microtubules is implicated in the disrupted endocytic recycling in smt2 smt3. Exogenous C24-ethylsterols partially recover lateral root development and auxin distribution in smt2 smt3 roots. These results indicate that C24-ethylsterols play a crucial role in division plane determination, directional auxin transport, and polar growth. It is proposed that the divergence of SMT2 genes together with the ability to produce C24-ethylsterols were critical events to achieve polarized growth in the plant lineage.

摘要

根据两种甾醇甲基转移酶(SMTs)赋予的不同C24烷基化水平,植物甾醇可分为C24 - 乙基甾醇和C24 - 甲基甾醇。第一类SMT(SMT1)广泛保守,而第二类(SMT2)在轮藻和陆地植物中有所分化。拟南芥smt2 smt3突变体在SMT2步骤存在缺陷,导致C24 - 乙基甾醇缺乏,而C24 - 甲基甾醇途径未改变。smt2 smt3植株在整个生命周期中表现出严重矮化和异常发育,细胞分裂不规则,随后细胞列崩溃。在相邻细胞中偶尔会在垂直方向形成前期带,并且观察到带有错误定位的KNOLLE syntaxin和微管蛋白的异常成膜体。生长素依赖过程中的缺陷表现为PIN2生长素外排载体的错误定位,这是由于细胞分裂中断以及胞质分裂后未能不对称分布PIN2所致。尽管在smt2 smt3中PIN2 - GFP从质膜(PM)的内吞作用明显未受影响,但内吞循环的强烈抑制与PM上PIN2 - GFP水平的显著降低相关。细胞质连接相关蛋白(CLASP)和微管的异常定位与smt2 smt3中内吞循环的破坏有关。外源C24 - 乙基甾醇部分恢复了smt2 smt3根中的侧根发育和生长素分布。这些结果表明,C24 - 乙基甾醇在分裂平面确定、生长素定向运输和极性生长中起关键作用。有人提出,SMT2基因的分化以及产生C24 - 乙基甾醇的能力是植物谱系中实现极性生长的关键事件。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验