稻瘟病菌纤维素合酶样f6启动子在水稻中的转基因表达特性研究

Q3 Multidisciplinary
Azreena Jamahari, Ling-Chie Wong, Xiaolai Fan, Qiaoquan Liu, S. S. Leong, Fauziah Abu Bakar, Amy Halimah Rajiee, J. King, S. Wong
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引用次数: 0

摘要

谷类作物中的β-葡聚糖是一种功能性食品,可以通过降低血液胆固醇水平来减少心血管疾病。然而,大米中的β-葡聚糖含量相对较低,尽管大麦和燕麦中的含量相对丰富。利用大米作为亚洲人的主食,增加食用大米中β-葡聚糖的含量可能有助于减少亚洲人的心血管相关疾病。先前试图通过将β-葡聚糖合成酶基因从大麦转基因表达到水稻中来增加水稻中的β-葡聚糖含量,但由于使用了非组织特异性和组成型表达的启动子,因此没有成功。目前的转基因表达研究是使用β-葡萄糖醛酸酶(GUS)报告基因来表征大麦中β-葡聚糖合酶基因的启动子。HvCslF6启动子的两个片段(2771bp和1257bp)成功地与GUS报告基因融合并整合到水稻植株中,证明该启动子在异源植物系统中具有功能。在转基因水稻的叶、根、茎和籽粒上观察到蓝色GUS染色的存在,而与所使用的启动子长度无关,并且直到下一代都保持功能。GUS定性分析证实,与较长的启动子相比,较短的启动子长度产生更强的GUS活性。这表明在-2771bp和-1257bp区域之间存在阻遏物元件。初步结果揭示了水稻胚乳组织中具有较强的启动子活性。它可以成为收集植物促进剂的替代品,用于改善粮食质量和生物强化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CHARACTERISATION OF HORDEUM VULGARE CELLULOSE SYNTHASE-LIKE F6 PROMOTER VIA TRANSGENE EXPRESSION IN RICE
Beta-glucan in cereal crops is known as a functional food, which can reduce cardiovascular diseases by lowering blood cholesterol levels. However, beta-glucan content is relatively low in rice grains, despite being relatively abundant in barley and oat grains. Taking advantage of rice as the staple food for Asians, increasing beta-glucan content in rice for their consumption may help to reduce cardiovascular-related diseases among them. Previous attempts in increasing beta-glucan content in rice via transgene expression of beta-glucan synthase genes from barley into rice were unsuccessful due to the use of non-tissue specific as well as constitutively expressing promoter. The current transgenic expression study was performed to characterise the promoter of beta-glucan synthase gene in barley using beta-glucuronidase (GUS) reporter gene. Two fragments of HvCslF6 promoter (2771 bp and 1257 bp) were successfully fused with GUS reporter gene and integrated into rice plants, demonstrated that the promoter was functional in the heterologous plant system. The presence of blue GUS staining was observed on the leaf, root, stem, and grain of the transgenic rice regardless of the promoter length used and stayed functional up to the next generation. GUS qualitative analysis confirmed that the shorter promoter length generated a stronger GUS activity in comparison to the longer one. This indicated that the presence of repressor elements in between the -2771 bp and -1257 bp regions. The preliminary results shed light on the strong promoter activity in the rice endosperm tissue. It can become an alternative to the collection of plant promoters that can be used for grain quality improvement and biofortification.
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来源期刊
Malaysian journal of science
Malaysian journal of science Multidisciplinary-Multidisciplinary
CiteScore
1.10
自引率
0.00%
发文量
36
期刊介绍: Information not localized
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