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首页> 外文期刊>International Journal of Molecular Sciences >Exogenous GA3 Application Enhances Xylem Development and Induces the Expression of Secondary Wall Biosynthesis Related Genes in Betula platyphylla
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Exogenous GA3 Application Enhances Xylem Development and Induces the Expression of Secondary Wall Biosynthesis Related Genes in Betula platyphylla

机译:外源GA 3 的应用促进桦木木质部发育并诱导次生壁生物合成相关基因的表达

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摘要

Gibberellin (GA) is a key signal molecule inducing differentiation of tracheary elements, fibers, and xylogenesis. However the molecular mechanisms underlying the effect of GA on xylem elongation and secondary wall development in tree species remain to be determined. In this study, Betula platyphylla (birch) seeds were treated with 300 ppm GA3 and/or 300 ppm paclobutrazol (PAC), seed germination was recorded, and transverse sections of hypocotyls were stained with toluidine blue; the two-month-old seedlings were treated with 50 μM GA3 and/or 50 μM PAC, transverse sections of seedling stems were stained using phloroglucinol–HCl, and secondary wall biosynthesis related genes expression was analyzed by real-time quantitative PCR. Results indicated that germination percentage, energy and time of seeds, hypocotyl height and seedling fresh weight were enhanced by GA3, and reduced by PAC; the xylem development was wider in GA3-treated plants than in the control; the expression of NAC and MYB transcription factors, CESA, PAL, and GA oxidase was up-regulated during GA3 treatment, suggesting their role in GA3-induced xylem development in the birch. Our results suggest that GA3 induces the expression of secondary wall biosynthesis related genes to trigger xylogenesis in the birch plants.
机译:赤霉素(GA)是诱导气管元素,纤维和木糖异生分化的关键信号分子。然而,GA对树种木质部伸长和次生壁发育的影响的分子机制仍有待确定。在这项研究中,白桦种子用300 ppm GA 3 和/或300 ppm多效唑(PAC)处理,记录了种子的萌发,并用甲苯胺蓝将下胚轴的横切面染色。用50μMGA 3 和/或50μMPAC处理两个月大的幼苗,用间苯三酚-HCl对幼苗茎的横切面进行染色,并通过分析与次生壁生物合成相关的基因表达。实时定量PCR。结果表明:GA 3 提高了种子的发芽率,种子能量和时间,胚轴高度和幼苗的鲜重,而PAC降低了种子发芽率,胚轴的高度和幼苗的鲜重。 GA 3 处理植物的木质部发育比对照更宽。 GA 3 处理过程中NAC和MYB转录因子,CESA,PAL和GA氧化酶的表达上调,提示它们在GA 3 诱导的木质部发育中的作用桦木。我们的研究结果表明,GA 3 诱导了次生壁生物合成相关基因的表达,从而触发了桦木植物的木生。

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