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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Identification and characterization of fructose 1,6-bisphosphate aldolase genes in Arabidopsis reveal a gene family with diverse responses to abiotic stresses
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Identification and characterization of fructose 1,6-bisphosphate aldolase genes in Arabidopsis reveal a gene family with diverse responses to abiotic stresses

机译:拟南芥果糖1,6-二磷酸醛缩酶基因的鉴定和表征揭示了一个对非生物胁迫具有多种反应的基因家族

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摘要

Fructose 1,6-biphosphate aldolase (FBA) is a key enzyme in plants, which is involved not only in glycolysis and gluconeogenesis in the cytoplasm, but also in the Calvin cycle in plastids. Research on FBAs in various organisms has been reported, but there is none on FBAs in Arabidopsis at the molecular level. In the current study, eight FBA family genes (AtFBA1-8) were identified and analyzed in Arabidopsis thaliana. These genes have a highly conserved aldolase-type TIM barrel domain and a C-terminal peptide, but variable N-terminal peptides. Based on the phylogenetic analysis of FBA protein sequences from Arabidopsis and other plant species, AtFBA family was classified into two subfamilies, including three members (AtFBA1-3) with high similarities to FBAs occurring at plastid, and five (AtFBA4-8) with high similarities to FBAs localized in the cytoplasm. By confocal microscopy analysis with GFP fusion protein, AtFBA3 and AtFBA4 as well as AtFBA6 were observed to be localized in the plastid and cytoplasm, respectively. At least two duplicated gene pairs of AtFBA1 and AtFBA2, as well as AtFBA4 and AtFBA8 were found. Transcript level analysis of AtFBA genes in various tissues revealed the unique and overlapping expression patterns of plastid and cytosol AtFBA genes, suggesting that these genes may function at different stages of plant growth and development. Interestingly, AtFBA1, AtFBA2, AtFBA5 and AtFBA7 showed undetectable expression in roots. The expression patterns of AtFBA genes under different stress conditions suggested that all the members showed different expression patterns in response to stresses, including ABA, NaCl, Cd, abnormal temperature and drought, and, except for AtFBA3, most of the AtFBA genes were significantly responsive to drought stress in roots. Moreover, AtFBA1, AtFBA2, AtFBA5, AtFBA7 and AtFBA8 were induced by at least one of three sugars (sucrose, glucose and fructose) after 24. h of treatment. Further functional analyses indicated important clues of AtFBA2, AtFBA6 and AtFBA8 in plant growth, stress responses and development, respectively. Thus these results provide additional knowledge on AtFBA families and their roles.
机译:1,6-二磷酸果糖醛缩酶(FBA)是植物中的关键酶,不仅参与细胞质中的糖酵解和糖异生,还参与质体中的Calvin循环。关于各种生物中的FBA的研究已有报道,但在拟南芥中从分子水平上没有关于FBA的研究。在当前的研究中,在拟南芥中鉴定并分析了八个FBA家族基因(AtFBA1-8)。这些基因具有高度保守的醛缩酶型TIM桶结构域和C端肽,但可变的N端肽。根据来自拟南芥和其他植物的FBA蛋白序列的系统发育分析,将AtFBA家族分为两个亚科,包括与质体中的FBA高度相似的三个成员(AtFBA1-3),以及五个与高质体FBA相似的成员。与位于细胞质中的FBA相似。通过用GFP融合蛋白的共聚焦显微镜分析,观察到AtFBA3和AtFBA4以及AtFBA6分别位于质体和细胞质中。发现至少两个重复的AtFBA1和AtFBA2基因对以及AtFBA4和AtFBA8。在各种组织中对AtFBA基因的转录水平分析揭示了质体和胞质AtFBA基因的独特和重叠表达模式,表明这些基因可能在植物生长和发育的不同阶段起作用。有趣的是,AtFBA1,AtFBA2,AtFBA5和AtFBA7在根中显示出不可检测的表达。 AtFBA基因在不同胁迫条件下的表达模式表明,所有成员对ABA,NaCl,Cd,异常温度和干旱等胁迫响应均表现出不同的表达模式,除AtFBA3外,大多数AtFBA基因均具有显着响应性。干旱根源。此外,在处理24小时后,三种糖(蔗糖,葡萄糖和果糖)中的至少一种诱导了AtFBA1,AtFBA2,AtFBA5,AtFBA7和AtFBA8。进一步的功能分析表明,AtFBA2,AtFBA6和AtFBA8在植物生长,逆境响应和发育中分别具有重要线索。因此,这些结果提供了有关AtFBA家庭及其角色的更多知识。

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