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质体定位的 pfkB 型碳水化合物激酶 FRUCTOKINASE-LIKE1 和 2 对于拟南芥的生长和发育是必需的。

The plastid-localized pfkB-type carbohydrate kinases FRUCTOKINASE-LIKE 1 and 2 are essential for growth and development of Arabidopsis thaliana.

机构信息

Department of Molecular and Cellular Biology, University of California, Davis, CA 95616, USA.

出版信息

BMC Plant Biol. 2012 Jul 8;12:102. doi: 10.1186/1471-2229-12-102.

Abstract

BACKGROUND

Transcription of plastid-encoded genes requires two different DNA-dependent RNA polymerases, a nuclear-encoded polymerase (NEP) and plastid-encoded polymerase (PEP). Recent studies identified two related pfkB-type carbohydrate kinases, named FRUCTOKINASE-LIKE PROTEIN (FLN1 and FLN2), as components of the thylakoid bound PEP complex in both Arabidopsis thaliana and Sinapis alba (mustard). Additional work demonstrated that RNAi-mediated reduction in FLN expression specifically diminished transcription of PEP-dependent genes.

RESULTS

Here, we report the characterization of Arabidopsis FLN knockout alleles to examine the contribution of each gene in plant growth, chloroplast development, and in mediating PEP-dependent transcription. We show that fln plants have severe phenotypes with fln1 resulting in an albino phenotype that is seedling lethal without a source of exogenous carbon. In contrast, fln2 plants display chlorosis prior to leaf expansion, but exhibit slow greening, remain autotrophic, can grow to maturity, and set viable seed. fln1 fln2 double mutant analysis reveals haplo-insufficiency, and fln1 fln2 plants have a similar, but more severe phenotype than either single mutant. Normal plastid development in both light and dark requires the FLNs, but surprisingly skotomorphogenesis is unaffected in fln seedlings. Seedlings genetically fln1-1 with dexamethasone-inducible FLN1-HA expression at germination are phenotypically indistinguishable from wild-type. Induction of FLN-HA after 24 hours of germination cannot rescue the mutant phenotype, indicating that the effects of loss of FLN are not always reversible. Examination of chloroplast gene expression in fln1-1 and fln2-1 by qRT-PCR reveals that transcripts of PEP-dependent genes were specifically reduced compared to NEP-dependent genes in both single mutants.

CONCLUSIONS

Our results demonstrate that each FLN protein contributes to wild type growth, and acting additively are absolutely essential for plant growth and development.

摘要

背景

质体编码基因的转录需要两种不同的 DNA 依赖性 RNA 聚合酶,一种是核编码聚合酶(NEP),另一种是质体编码聚合酶(PEP)。最近的研究表明,两个相关的 pfkB 型碳水化合物激酶,命名为 FRUCTOKINASE-LIKE PROTEIN(FLN1 和 FLN2),是拟南芥和芥菜(芥菜)中类囊体结合的 PEP 复合物的组成部分。进一步的研究表明,RNAi 介导的 FLN 表达减少特异性地降低了 PEP 依赖性基因的转录。

结果

在这里,我们报告了拟南芥 FLN 缺失突变体的特征,以研究每个基因在植物生长、叶绿体发育和介导 PEP 依赖性转录中的作用。我们发现,fln 植物表现出严重的表型,fln1 导致白化表型,在没有外源碳源的情况下幼苗致死。相比之下,fln2 植物在叶片扩展前表现出黄化,但表现出缓慢的绿化,保持自养,能够生长成熟并产生可育种子。fln1 fln2 双突变体分析显示杂合不足,fln1 fln2 植物的表型比单个突变体更严重。正常的质体发育在光照和黑暗条件下都需要 FLNs,但令人惊讶的是,skotomorphogenesis 在 fln 幼苗中不受影响。在发芽时用地塞米松诱导表达 FLN1-HA 的遗传 fln1-1 幼苗与野生型表型无法区分。在发芽后 24 小时诱导 FLN-HA 不能挽救突变体表型,表明 FLN 缺失的影响并非总是可逆的。用 qRT-PCR 检查 fln1-1 和 fln2-1 中的叶绿体基因表达发现,与 NEP 依赖性基因相比,两种单突变体中 PEP 依赖性基因的转录均特异性降低。

结论

我们的结果表明,每个 FLN 蛋白都有助于野生型生长,并且它们的作用是累加的,对于植物的生长和发育是绝对必要的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d22/3409070/03521ef63463/1471-2229-12-102-1.jpg

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