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蒺藜苜蓿体细胞胚胎发生诱导过程中赤霉素生物合成的基因表达与代谢物谱分析

Gene expression and metabolite profiling of gibberellin biosynthesis during induction of somatic embryogenesis in Medicago truncatula Gaertn.

作者信息

Igielski Rafał, Kępczyńska Ewa

机构信息

Department of Plant Biotechnology, University of Szczecin, Szczecin, Poland.

出版信息

PLoS One. 2017 Jul 27;12(7):e0182055. doi: 10.1371/journal.pone.0182055. eCollection 2017.

Abstract

Gibberellins (GAs) are involved in the regulation of numerous developmental processes in plants including zygotic embryogenesis, but their biosynthesis and role during somatic embryogenesis (SE) is mostly unknown. In this study we show that during three week- long induction phase, when cells of leaf explants from non-embryogenic genotype (M9) and embryogenic variant (M9-10a) were forming the callus, all the bioactive gibberellins from non-13-hydroxylation (GA4, GA7) and 13-hydroxylation (GA1, GA5, GA3, GA6) pathways were present, but the contents of only a few of them differed between the tested lines. The GA53 and GA19 substrates synthesized by the 13-hydroxylation pathway accumulated specifically in the M9-10a line after the first week of induction; subsequently, among the bioactive gibberellins detected, only the content of GA3 increased and appeared to be connected with acquisition of embryogenic competence. We fully annotated 20 Medicago truncatula orthologous genes coding the enzymes which catalyze all the known reactions of gibberellin biosynthesis. Our results indicate that, within all the genes tested, expression of only three: MtCPS, MtGA3ox1 and MtGA3ox2, was specific to embryogenic explants and reflected the changes observed in GA53, GA19 and GA3 contents. Moreover, by analyzing expression of MtBBM, SE marker gene, we confirmed the inhibitory effect of manipulation in GAs metabolism, applying exogenous GA3, which not only impaired the production of somatic embryos, but also significantly decreased expression of this gene.

摘要

赤霉素(GAs)参与植物众多发育过程的调控,包括合子胚发生,但其在体细胞胚胎发生(SE)过程中的生物合成及作用大多未知。在本研究中,我们发现,在为期三周的诱导阶段,当来自非胚性基因型(M9)和胚性变异体(M9 - 10a)的叶片外植体细胞形成愈伤组织时,非13 - 羟基化途径(GA4、GA7)和13 - 羟基化途径(GA1、GA5、GA3、GA6)的所有生物活性赤霉素均存在,但仅其中少数几种的含量在测试品系间存在差异。由13 - 羟基化途径合成的GA53和GA19底物在诱导第一周后特异性地在M9 - 10a品系中积累;随后,在检测到的生物活性赤霉素中,只有GA3的含量增加,且似乎与胚性能力的获得有关。我们对2蒺藜苜蓿中编码催化赤霉素生物合成所有已知反应的酶的20个直系同源基因进行了全面注释。我们的结果表明,在所有测试基因中,只有三个基因:MtCPS、MtGA3ox1和MtGA3ox2的表达对胚性外植体具有特异性,并反映了GA53、GA19和GA3含量中观察到的变化。此外,通过分析SE标记基因MtBBM的表达,我们证实了应用外源GA3对GA代谢进行操作的抑制作用,这不仅损害了体细胞胚的产生,还显著降低了该基因的表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f9c9/5531487/14351aab833d/pone.0182055.g001.jpg

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