首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Identification, Functional Study, and Promoter Analysis of HbMFT1, a Homolog of MFT from Rubber Tree (Heveabrasiliensis)
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Identification, Functional Study, and Promoter Analysis of HbMFT1, a Homolog of MFT from Rubber Tree (Heveabrasiliensis)

机译:橡胶树MFT的同源物HbMFT1的鉴定,功能研究和启动子分析巴西利亚)

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摘要

A homolog of MOTHER OF FT AND TFL1 (MFT) was isolated from Hevea brasiliensis and its biological function was investigated. Protein multiple sequence alignment and phylogenetic analysis revealed that HbMFT1 conserved critical amino acid residues to distinguish MFT, FLOWERING LOCUS T (FT) and TERMINAL FLOWER1 (TFL1)-like proteins and showed a closer genetic relationship to the MFT-like group. The accumulation of HbMFT1 was generally detected in various tissues except pericarps, with the highest expression in embryos and relatively higher expression in roots and stems of seedlings, flowering inflorescences, and male and female flowers. HbMFT1 putative promoter analysis showed that tissue-specific, environmental change responsive and hormone-signaling responsive elements were generally present. HbMFT1 was strongly induced under a short-day condition at 28 °C, with the highest expression after the onset of a day. Overexpression of HbMFT1 inhibited seed germination, seedling growth, and flowering in transgenic Arabidopsis. The qRT-PCR further confirmed that APETALA1 (AP1) and FRUITFULL (FUL) were drastically down-regulated in 35S::HbMFT1 plants. A histochemical β-glucuronidase (GUS) assay showed that HbMFT1::GUS activity was mainly detected in stamens and mature seeds coinciding with its original expression and notably induced in rosette leaves and seedlings of transgenic Arabidopsis by exogenous abscisic acid (ABA) due to the presence of ABA cis-elements in HbMFT1 promoter. These results suggested that HbMFT1 was mainly involved in maintenance of seed maturation and stamen development, but negatively controlled germination, growth and development of seedlings and flowering. In addition, the HbMFT1 promoter can be utilized in controlling transgene expression in stamens and seeds of rubber tree or other plant species.
机译:从巴西橡胶树中分离出FT和TFL1的母亲的同系物,并对其生物学功能进行了研究。蛋白质多序列比对和系统发育分析表明,HbMFT1保留了关键氨基酸残基,以区分MFT,FLOWERING LOCUS T(FT)和TERMINAL FLOWER1(TFL1)样蛋白,并显示出与MFT样组更紧密的遗传关系。 HbMFT1的积累通常在果皮以外的各种组织中检测到,其在胚中的表达最高,在幼苗的根和茎,开花花序以及雌雄花中的表达相对较高。 HbMFT1推定的启动子分析表明,通常存在组织特异性,对环境变化敏感和对激素信号敏感的元素。 HbMFT1在28°C的短日条件下被强烈诱导,一天发作后表达最高。 HbMFT1的过表达抑制转基因拟南芥的种子发芽,幼苗生长和开花。 qRT-PCR进一步证实在35S :: HbMFT1植物中APETALA1(AP1)和FRUITFULL(FUL)显着下调。组织化学β-葡糖醛酸糖苷酶(GUS)检测表明,HbMFT1 :: GUS活性主要在雄蕊和成熟种子中检测到,与其原始表达相吻合,并在外源脱落酸的诱导下转基因拟南芥的莲座叶和幼苗中特别明显。酸(ABA)是由于 HbMFT1 启动子中存在ABA cis 元素。这些结果表明, HbMFT1 主要参与种子成熟和雄蕊发育的维持,但对种子的萌发,幼苗的生长发育和开花产生负面影响。此外, HbMFT1 启动子可用于控制橡胶树或其他植物的雄蕊和种子中的转基因表达。

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