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从茄属植物中分离和功能表征番茄红素β-环化酶(CYC-B)启动子。

Isolation and functional characterization of lycopene beta-cyclase (CYC-B) promoter from Solanum habrochaites.

机构信息

National Research Centre on Plant Biotechnology, Indian Agricultural Research Institute, New Delhi, India.

出版信息

BMC Plant Biol. 2010 Apr 9;10:61. doi: 10.1186/1471-2229-10-61.

Abstract

BACKGROUND

Carotenoids are a group of C40 isoprenoid molecules that play diverse biological and ecological roles in plants. Tomato is an important vegetable in human diet and provides the vitamin A precursor beta-carotene. Genes encoding enzymes involved in carotenoid biosynthetic pathway have been cloned. However, regulation of genes involved in carotenoid biosynthetic pathway and accumulation of specific carotenoid in chromoplasts are not well understood. One of the approaches to understand regulation of carotenoid metabolism is to characterize the promoters of genes encoding proteins involved in carotenoid metabolism. Lycopene beta-cyclase is one of the crucial enzymes in carotenoid biosynthesis pathway in plants. Its activity is required for synthesis of both alpha-and beta-carotenes that are further converted into other carotenoids such as lutein, zeaxanthin, etc. This study describes the isolation and characterization of chromoplast-specific Lycopene beta-cyclase (CYC-B) promoter from a green fruited S. habrochaites genotype EC520061.

RESULTS

A 908 bp region upstream to the initiation codon of the Lycopene beta-cyclase gene was cloned and identified as full-length promoter. To identify promoter region necessary for regulating developmental expression of the ShCYC-B gene, the full-length promoter and its three different 5' truncated fragments were cloned upstream to the initiation codon of GUS reporter cDNA in binary vectors. These four plant transformation vectors were separately transformed in to Agrobacterium. Agrobacterium-mediated transient and stable expression systems were used to study the GUS expression driven by the full-length promoter and its 5' deletion fragments in tomato. The full-length promoter showed a basal level activity in leaves, and its expression was upregulated > 5-fold in flowers and fruits in transgenic tomato plants. Deletion of -908 to -577 bp 5' to ATG decreases the ShCYC-B promoter strength, while deletion of -908 to -437 bp 5' to ATG led to significant increase in the activity of GUS in the transgenic plants. Promoter deletion analysis led to the identification of a short promoter region (-436 bp to ATG) that exhibited a higher promoter strength but similar developmental expression pattern as compared with the full-length ShCYC-B promoter.

CONCLUSION

Functional characterization of the full-length ShCYC-B promoter and its deletion fragments in transient expression system in fruto as well as in stable transgenic tomato revealed that the promoter is developmentally regulated and its expression is upregulated in chromoplast-rich flowers and fruits. Our study identified a short promoter region with functional activity and developmental expression pattern similar to that of the full-length ShCYC-B promoter. This 436 bp promoter region can be used in promoter::reporter fusion molecular genetic screens to identify mutants impaired in CYC-B expression, and thus can be a valuable tool in understanding carotenoid metabolism in tomato. Moreover, this short promoter region of ShCYC-B may be useful in genetic engineering of carotenoid content and other agronomic traits in tomato fruits.

摘要

背景

类胡萝卜素是一组 C40 异戊二烯分子,在植物中具有多种生物和生态作用。番茄是人类饮食中的一种重要蔬菜,提供维生素 A 前体β-胡萝卜素。参与类胡萝卜素生物合成途径的酶的基因已被克隆。然而,类胡萝卜素生物合成途径中涉及的基因的调节以及质体中特定类胡萝卜素的积累尚不清楚。了解类胡萝卜素代谢调节的一种方法是表征参与类胡萝卜素代谢的蛋白质编码基因的启动子。番茄红素β-环化酶是植物中类胡萝卜素生物合成途径中的关键酶之一。它的活性是合成α-和β-胡萝卜素所必需的,而α-和β-胡萝卜素进一步转化为叶黄素、玉米黄质等其他类胡萝卜素。本研究描述了从绿色果实 S. habrochaites 基因型 EC520061 中分离和鉴定质体特异性番茄红素β-环化酶(CYC-B)启动子。

结果

克隆并鉴定了起始密码子上游 908bp 的 Lycopene beta-cyclase 基因全长启动子。为了鉴定调控 ShCYC-B 基因发育表达所必需的启动子区域,将全长启动子及其三个不同的 5' 截短片段克隆到 GUS 报告 cDNA 的起始密码子上游,在二元载体中。这四个植物转化载体分别转化到农杆菌中。使用农杆菌介导的瞬时和稳定表达系统研究了全长启动子及其 5' 缺失片段在番茄中的 GUS 表达。全长启动子在叶片中表现出基础水平的活性,在转基因番茄植株的花和果实中表达上调了>5 倍。-908 到-577bp 5' 到 ATG 的缺失降低了 ShCYC-B 启动子的强度,而-908 到-437bp 5' 到 ATG 的缺失导致转基因植物中 GUS 的活性显著增加。启动子缺失分析确定了一个短的启动子区域(-436bp 到 ATG),其具有更高的启动子强度,但与全长 ShCYC-B 启动子的发育表达模式相似。

结论

在瞬时表达系统和稳定转化的番茄中对全长 ShCYC-B 启动子及其缺失片段的功能表征表明,该启动子是发育调控的,在富含质体的花和果实中表达上调。我们的研究确定了一个具有功能活性和与全长 ShCYC-B 启动子相似的发育表达模式的短启动子区域。这个 436bp 的启动子区域可用于启动子::报告基因融合分子遗传筛选,以鉴定 CYC-B 表达受损的突变体,从而有助于理解番茄中的类胡萝卜素代谢。此外,ShCYC-B 的这个短启动子区域可能在番茄果实中类胡萝卜素含量和其他农艺性状的遗传工程中有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/63b2/2923535/3b44169a0f06/1471-2229-10-61-1.jpg

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