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首页> 外文期刊>Journal of Experimental Botany >A multifaceted study of stigma/style cysteine-rich adhesin (SCA)-like Arabidopsis lipid transfer proteins (LTPs) suggests diversified roles for these LTPs in plant growth and reproduction
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A multifaceted study of stigma/style cysteine-rich adhesin (SCA)-like Arabidopsis lipid transfer proteins (LTPs) suggests diversified roles for these LTPs in plant growth and reproduction

机译:对柱头/样式富含半胱氨酸的粘附素(SCA)拟南芥脂质转移蛋白(LTP)的多方面研究表明,这些LTP在植物生长和繁殖中具有多种作用

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摘要

Lily stigma/style cysteine-rich adhesin (SCA), a plant lipid transfer protein (LTP) which is secreted into the extracellular matrix, functions in pollen tube guidance in fertilization. A gain-of-function mutant (ltp5-1) for Arabidopsis LTP5, an SCA-like molecule, was recently shown to display defects in sexual reproduction. In the current study, it is reported that ltp5-1 plants have dwarfed primary shoots, delayed hypocotyl elongation, various abnormal tissue fusions, and display multibranching. These mutant phenotypes in vegetative growth are recessive. No abnormality was found in ltp5-1/+ plants. In a phylogenetic analysis of plant LTPs, SCA-like Arabidopsis LTPs were classified with conventional plant LTPs. Homology modelling-based electrostatic similarity index (ESI) clustering was used to show diversity in spatial distributions of electrostatic potentials of SCA-like LTPs, suggestive of their various roles in interaction in the extracellular matrix space. beta-Glucuronidase (GUS) analysis showed that SCA-like Arabidopsis LTP genes are diversely present in various tissues. LTP4 was found specifically in the guard cells and LTP6 in trichomes as well as in other tissues. LTP1 levels were specifically abundant in the stigma, and both LTP3 and LTP6 in the ovules. LTP2 and LTP4 gene levels were up-regulated in whole seedlings with 20% polyethylene glycol (PEG) and 300 mM NaCl treatments, respectively. LTP5 was up-regulated in the hypocotyl with 3 d dark growth conditions. LTP6 was specifically expressed in the tip of the cotyledon under drought stress conditions. The results suggest that SCA-like Arabidopsis LTPs are multifunctional, with diversified roles in plant growth and reproduction.
机译:百合柱头/样式丰富的半胱氨酸粘附素(SCA)是一种分泌到细胞外基质中的植物脂质转移蛋白(LTP),在受精的花粉管引导中起作用。最近显示,拟南芥LTP5(一种SCA样分子)的功能获得突变体(ltp5-1)在性繁殖中显示出缺陷。在当前的研究中,据报道ltp5-1植物的初级芽较矮小,下胚轴伸长延迟,各种异常的组织融合,并显示出多分支。营养生长中的这些突变表型是隐性的。在ltp5-1 / +植物中未发现异常。在植物LTP的系统发育分析中,将SCA样拟南芥LTP与常规植物LTP分类。基于同源性建模的静电相似性指数(ESI)聚类用于显示SCA类LTP静电势的空间分布多样性,表明它们在细胞外基质空间相互作用中的各种作用。 β-葡萄糖醛酸苷酶(GUS)分析表明,SCA拟南芥LTP基因在各种组织中存在差异。 LTP4特别存在于毛状体以及其他组织的保卫细胞和LTP6中。 LTP1水平在柱头中特别丰富,在胚珠中既有LTP3也有LTP6。在20%聚乙二醇(PEG)和300 mM NaCl处理的整个幼苗中,LTP2和LTP4基因水平分别被上调。在3 d黑暗生长条件下,LTP5在下胚轴上调。 LTP6在干旱胁迫条件下在子叶尖端特异性表达。结果表明,SCA样拟南芥LTP具有多功能性,在植物生长和繁殖中具有多种作用。

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