首页> 外文期刊>BMC Plant Biology >Laser microdissection of conifer stem tissues: Isolation and analysis of high quality RNA, terpene synthase enzyme activity and terpenoid metabolites from resin ducts and cambial zone tissue of white spruce ( Picea glauca )
【24h】

Laser microdissection of conifer stem tissues: Isolation and analysis of high quality RNA, terpene synthase enzyme activity and terpenoid metabolites from resin ducts and cambial zone tissue of white spruce ( Picea glauca )

机译:针叶树茎组织的激光显微切割:分离和分析白云杉(云杉)树脂导管和冈比亚区组织中的高质量RNA,萜烯合酶活性和萜类代谢物

获取原文
           

摘要

Background Laser microdissection (LMD) has been established for isolation of individual tissue types from herbaceous plants. However, there are few reports of cell- and tissue-specific analysis in woody perennials. While microdissected tissues are commonly analyzed for gene expression, reports of protein, enzyme activity and metabolite analysis are limited due in part to an inability to amplify these molecules. Conifer stem tissues are organized in regular patterns with xylem, phloem and cortex development controlled by the activity of the cambial zone (CZ). Defense responses of conifer stems against insects and pathogens involve increased accumulation of terpenoids in cortical resin ducts (CRDs) and de novo formation of traumatic resin ducts from CZ initials. These tissues are difficult to isolate for tissue-specific molecular and biochemical characterization and are thus good targets for application of LMD. Results We describe robust methods for isolation of individual tissue-types from white spruce ( Picea glauca ) stems for analysis of RNA, enzyme activity and metabolites. A tangential cryosectioning approach was important for obtaining large quantities of CRD and CZ tissues using LMD. We report differential expression of genes involved in terpenoid metabolism between CRD and CZ tissues and in response to methyl jasmonate (MeJA). Transcript levels of β-pinene synthase and levopimaradiene/abietadiene synthase were constitutively higher in CRDs, but induction was stronger in CZ in response to MeJA. 3-Carene synthase was more strongly induced in CRDs compared to CZ. A differential induction pattern was observed for 1-deoxyxyulose-5-phosphate synthase, which was up-regulated in CRDs and down-regulated in CZ. We identified terpene synthase enzyme activity in CZ protein extracts and terpenoid metabolites in both CRD and CZ tissues. Conclusions Methods are described that allow for analysis of RNA, enzyme activity and terpenoid metabolites in individual tissues isolated by LMD from woody conifer stems. Patterns of gene expression are demonstrated in specific tissues that may be masked in analysis of heterogenous samples. Combined analysis of transcripts, proteins and metabolites of individual tissues will facilitate future characterization of complex processes of woody plant development, including periodic stem growth and dormancy, cell specialization, and defense and may be applied widely to other plant species.
机译:背景技术已经建立了激光显微切割术(LMD),用于从草本植物中分离出单个组织类型。然而,很少有报道对木质多年生植物进行细胞和组织特异性分析。虽然通常对显微解剖的组织进行基因表达分析,但蛋白质,酶活性和代谢产物分析的报道有限,部分原因是无法扩增这些分子。针叶树茎组织以规则的方式组织,木质部,韧皮部和皮层发育受冈比亚区(CZ)的活动控制。针叶树茎对昆虫和病原体的防御反应涉及萜类化合物在皮质树脂导管(CRD)中的积累增加以及从CZ字母的开头重新形成创伤性树脂导管。这些组织很难进行组织特异性分子和生化表征分离,因此是LMD应用的良好靶标。结果我们描述了从白云杉(Picea glauca)茎中分离单个组织类型的可靠方法,用于分析RNA,酶活性和代谢产物。切向冷冻切片法对于使用LMD获得大量CRD和CZ组织很重要。我们报告差异表达的基因参与CRD和CZ组织之间的类萜代谢和响应茉莉酸甲酯(MeJA)。在CRDs中,β-pine烯合酶和levopimaradiene / abietadiene合酶的转录水平组成上较高,但对MeJA的响应在CZ中较强。与CZ相比,在CRD中更强烈地诱导了3-Carene合酶。观察到1-脱氧木糖-5-磷酸合酶的差异诱导模式,其在CRD中上调而在CZ中下调。我们在CRD和CZ组织中鉴定了CZ蛋白提取物中的萜类合酶活性和萜类代谢物。结论所描述的方法可以分析木质针叶树茎中LMD分离的单个组织中的RNA,酶活性和类萜代谢产物。基因表达的模式在特定组织中得到证实,在异质样品的分析中可能被掩盖。对各个组织的转录本,蛋白质和代谢产物进行综合分析,将有助于今后表征木本植物发育的复杂过程,包括周期性的茎生长和休眠,细胞专一性和防御能力,并可广泛应用于其他植物物种。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号