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甜叶菊的叶片提取物:二萜类化合物合成基因发现的资源。

Leaf Ests from Stevia rebaudiana: a resource for gene discovery in diterpene synthesis.

作者信息

Brandle J E, Richman A, Swanson A K, Chapman B P

机构信息

Agriculture and Agri-Food Canada, Southern Crop Protection and Food Research Centre, London, Ontario.

出版信息

Plant Mol Biol. 2002 Nov;50(4-5):613-22. doi: 10.1023/a:1019993221986.

DOI:10.1023/a:1019993221986
PMID:12374295
Abstract

Expressed sequence tags (ESTs) are providing a new approach to gene discovery in plant secondary metabolism. Stevia rebaudiana Bert. leaves produce high concentrations of diterpene steviol glycosides and should be a rich source of transcripts involved in diterpene synthesis. In order to create a resource for gene discovery and increase our understanding of steviol glycoside biosynthesis, we sequenced 5,548 ESTs from a S. rebaudiana leaf cDNA library. The EST collection was fully annotated based on database search results. ESTs involved in diterpene synthesis were identified using published sequences as electronic probes, by keyword searches of search results, and by differential representation. A significant portion of the ESTs were specific for standard leaf metabolic pathways; energy and primary metabolism represented 17.6% and 13.1% of total transcripts respectively. Diterpene metabolism in S. rebaudiana represented 1.1% of total transcripts. This study identified candidate genes for 70% of the known steps in the steviol glycoside pathway. One candidate, kaurene oxidase, was the 8th most abundant EST in the collection. Identification of many candidate genes specific to the I -deoxyxylulose 5-phosphate pathway suggests that the primary source of isopentenyl diphosphate, a precursor of geranylgeranyl diphosphate, is via the non-mevalonic acid pathway. The use of ESTs has greatly facilitated the identification of candidate genes and increased our understanding of diterpene metabolism.

摘要

表达序列标签(ESTs)为植物次生代谢中的基因发现提供了一种新方法。甜叶菊叶片能产生高浓度的二萜类甜菊糖苷,应该是参与二萜合成的转录本的丰富来源。为了创建一个基因发现资源库并增进我们对甜菊糖苷生物合成的理解,我们对来自甜叶菊叶片cDNA文库的5548个ESTs进行了测序。根据数据库搜索结果对ESTs集合进行了全面注释。通过使用已发表的序列作为电子探针、对搜索结果进行关键词搜索以及差异表达分析,鉴定出参与二萜合成的ESTs。很大一部分ESTs对标准叶片代谢途径具有特异性;能量和初级代谢分别占总转录本的17.6%和13.1%。甜叶菊中的二萜代谢占总转录本的1.1%。本研究确定了甜菊糖苷途径中70%已知步骤的候选基因。其中一个候选基因——贝壳杉烯氧化酶,是该集合中第8丰富的EST。鉴定出许多特定于1-脱氧木酮糖5-磷酸途径的候选基因,这表明香叶基香叶基二磷酸的前体异戊烯基二磷酸的主要来源是通过非甲羟戊酸途径。ESTs的使用极大地促进了候选基因的鉴定,并增进了我们对二萜代谢的理解。

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本文引用的文献

1
Glucosylation of Steviol and Steviol-Glucosides in Extracts from Stevia rebaudiana Bertoni.甜菊醇和甜菊醇糖苷在甜菊叶提取物中的糖化作用。
Plant Physiol. 1991 Jan;95(1):152-6. doi: 10.1104/pp.95.1.152.
2
Deoxyxylulose phosphate pathway to terpenoids.通向萜类化合物的磷酸脱氧木酮糖途径。
Trends Plant Sci. 2001 Feb;6(2):78-84. doi: 10.1016/s1360-1385(00)01812-4.
3
The CYP88A cytochrome P450, ent-kaurenoic acid oxidase, catalyzes three steps of the gibberellin biosynthesis pathway.细胞色素P450 CYP88A,内贝壳杉烯酸氧化酶,催化赤霉素生物合成途径的三个步骤。
染色体水平的甜叶菊基因组为甜菊糖苷生物合成提供了见解。
Hortic Res. 2021 Jun 1;8(1):129. doi: 10.1038/s41438-021-00565-4.
4
Synthesis and production of steviol glycosides: recent research trends and perspectives.甜菊糖苷的合成与生产:最新研究趋势与展望。
Appl Microbiol Biotechnol. 2021 May;105(10):3883-3900. doi: 10.1007/s00253-021-11306-x. Epub 2021 Apr 29.
5
Dissecting plant secondary metabolism - constitutive chemical defences in cereals.剖析植物次生代谢——谷物中的组成型化学防御
New Phytol. 2003 Jul;159(1):101-108. doi: 10.1046/j.1469-8137.2003.00759.x.
6
Characterizing glycosyltransferases by a combination of sequencing platforms applied to the leaf tissues of Stevia rebaudiana.通过应用于甜叶菊叶片组织的多种测序平台组合来表征糖基转移酶。
BMC Genomics. 2020 Nov 13;21(1):794. doi: 10.1186/s12864-020-07195-5.
7
ISSR markers to assess genetic diversity of cultivated populations from artificial selection of (Bert.) Bertoni.用于评估经人工选择的栽培群体遗传多样性的ISSR标记(Bert.)Bertoni。
Breed Sci. 2020 Sep;70(4):508-514. doi: 10.1270/jsbbs.20014. Epub 2020 Aug 6.
8
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9
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Proc Natl Acad Sci U S A. 2001 Feb 13;98(4):2065-70. doi: 10.1073/pnas.98.4.2065. Epub 2001 Feb 6.
4
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FEBS Lett. 2001 Jan 19;488(3):170-3. doi: 10.1016/s0014-5793(00)02420-0.
5
An investigation of the storage and biosynthesis of phenylpropenes in sweet basil.甜罗勒中苯丙烯类化合物的储存与生物合成研究。
Plant Physiol. 2001 Feb;125(2):539-55. doi: 10.1104/pp.125.2.539.
6
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Plant Cell. 2001 Jan;13(1):113-23. doi: 10.1105/tpc.13.1.113.
7
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8
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Trends Plant Sci. 2000 Dec;5(12):523-30. doi: 10.1016/s1360-1385(00)01790-8.
9
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Plant Physiol. 2000 Dec;124(4):1582-94. doi: 10.1104/pp.124.4.1582.
10
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Plant Sci. 2000 Oct 16;159(1):87-95. doi: 10.1016/s0168-9452(00)00335-6.