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Arabidopsis brassinosteroid biosynthetic mutant dwarf7-1 exhibits slower rates of cell division and shoot induction

机译:拟南芥油菜素类固醇生物合成突变体dwarf7-1表现出较慢的细胞分裂和芽诱导

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Background Plant growth depends on both cell division and cell expansion. Plant hormones, including brassinosteroids (BRs), are central to the control of these two cellular processes. Despite clear evidence that BRs regulate cell elongation, their roles in cell division have remained elusive. Results Here, we report results emphasizing the importance of BRs in cell division. An Arabidopsis BR biosynthetic mutant, dwarf7-1 , displayed various characteristics attributable to slower cell division rates. We found that the DWARF4 gene which encodes for an enzyme catalyzing a rate-determining step in the BR biosynthetic pathways, is highly expressed in the actively dividing callus, suggesting that BR biosynthesis is necessary for dividing cells. Furthermore, dwf7-1 showed noticeably slower rates of callus growth and shoot induction relative to wild-type control. Flow cytometric analyses of the nuclei derived from either calli or intact roots revealed that the cell division index, which was represented as the ratio of cells at the G2/M vs. G1 phases, was smaller in dwf7-1 plants. Finally, we found that the expression levels of the genes involved in cell division and shoot induction, such as PROLIFERATING CELL NUCLEAR ANTIGEN2 ( PCNA2 ) and ENHANCER OF SHOOT REGENERATION2 ( ESR2 ), were also lower in dwf7-1 as compared with wild type. Conclusions Taken together, results of callus induction, shoot regeneration, flow cytometry, and semi-quantitative RT-PCR analysis suggest that BRs play important roles in both cell division and cell differentiation in Arabidopsis.
机译:背景植物的生长取决于细胞分裂和细胞扩增。植物激素,包括油菜素甾醇(BRs),是控制这两个细胞过程的关键。尽管有明确的证据表明BR可以调节细胞的伸长,但是它们在细胞分裂中的作用仍然难以捉摸。结果在这里,我们报告的结果强调了BR在细胞分裂中的重要性。拟南芥BR生物合成突变体dwarf7-1表现出归因于细胞分裂速度较慢的各种特征。我们发现,编码BR生物合成途径中决定速率的酶的DWARF4基因在活跃分裂的愈伤组织中高度表达,这表明BR生物合成对于分裂细胞是必需的。此外,相对于野生型对照,dwf7-1显示出愈伤组织生长和芽诱导的速率显着降低。对来源于愈伤组织或完整根的细胞核的流式细胞仪分析表明,在dwf7-1植物中,细胞分裂指数较小,表示为G2 / M与G1相的细胞比例。最后,我们发现与野生型相比,dwf7-1中参与细胞分裂和芽诱导的基因的表达水平在dwf7-1中也较低,例如增殖细胞核抗原2(PCNA2)和射血再生增强剂2(ESR2)。结论综上所述,愈伤组织诱导,枝条再生,流式细胞术和半定量RT-PCR分析的结果表明,BR在拟南芥中在细胞分裂和细胞分化中均起着重要作用。

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