Study of an Enzyme that Regulates Oil Synthesis in Seeds
Study of an Enzyme that Regulates Oil Synthesis in Seeds
批准号:
9219323
负责人:
Anthony Huang
金额:
$22.5万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
1993
资助国家:
美国
项目状态:
已结题
起止时间:
1993-04-01 至 1997-03-31
中文摘要
种子成熟和萌发过程中三酰基甘油(TAG)的合成和降解涉及活跃的代谢途径。了解标签代谢的详细机制将有助于在植物生活史的活跃阶段控制食物储备的沉积和利用。它还将提供关于如何培育或基因工程更好的种子油供人类使用的不可或缺的信息。该实验室的长期目标是阐明种子中TAG代谢的机制。重点放在成熟种子中一种关键的标签合成酶--溶血磷脂酸(LPA)酰基转移酶上。这种酶催化从酰基辅酶A到1-酰基甘油-3-磷酸的sn-2位的酰基部分的掺入,产物磷脂酸酯将被进一步代谢为TAG或磷脂。该酶在两种底物上都有非常严格的酰基偏好,从而控制了首选脂肪酸在TAG的sn-1和sn-2位置的掺入。脂肪酸组成以及种子标签的性质在很大程度上依赖于LPA酰基转移酶的酰基偏好。在这项研究方案中,将追求以下两个目标。第一个目标是检测一种植物的特殊酰基偏好的种子LPA酰基转移酶在遗传转化后是否在另一种植物中具有活性。本实验将对棕榈树、油菜籽和草甸海绵的种子LPA酰基转移酶进行鉴定,以获得它们用于转化适当植物的基因,并检测外源酶在转化植物中的活性。将使用几种不同的方法来获得该基因;这些方法包括:通过从纯化的酶和细菌基因推导出的寡核苷酸来筛选基因的cdna文库,以及与细菌突变体进行功能互补。已经获得了与编码该酶的植物cDNA功能互补的假定的大肠杆菌突变株;这些突变株将得到最深入的研究。如果时间允许,我们将利用棕榈树和草甸泡沫塑料LPA酰基转移酶基因转化甘蓝,并分析转化植株中外源酶的活性。这些信息将对我们理解种子中脂肪酸组装成TAG以及非种子器官中甘油脂的调控机制至关重要。第二个目标是测试细菌来源的膜相关的脂肪代谢酶在高等植物中是否具有活性。用编码LPA酰基转移酶的大肠杆菌基因转化油菜,研究细菌基因在转化油菜中的表达。这个项目的目标是获取一种基因,这种基因可以产生一种酶,这种酶可以产生棕榈树中发现的某种植物油,并将该基因引入其他植物中,看看它们是否也会产生棕榈油。如果这是成功的,调查人员已经找到了一种方法,从美国不常见的植物中生产出的油,也可以在美国常见的其他种类的植物中获得。此外,这些酶还可以用来制造新型的脂质生物材料。
英文摘要
Synthesis and degradation of triacylglycerols (TAG) in seeds during maturation and germination involve active metabolic pathways. Understanding the detailed mechanism of TAG metabolism will enable the control of food reserve deposition and utilization during active stages of the plant life cycle. It will also provide an indispensable information of how to breed or genetically engineer better seed oils for human utilization. The long term objective of the laboratory is to elucidate the mechanism of TAG metabolism in seeds. The focus is on a crucial TAG synthesizing enzyme, lysophosphatidate (LPA) acyltransferase, in maturing seed. This enzyme catalyzes the incorporation of acyl moiety from acyl CoA to the sn-2 position of 1-acyl-glycerol-3-phosphate, and the product phosphatidate will be further metabolized to either TAG or phospholipids. The enzyme has a very stringent acyl preference on both substrates, and thus controls the incorporation of preferred fatty acids into the sn-1 and sn-2 positions of TAG. The fatty acid composition, and thus the properties of seed TAG, rely heavily on the acyl preference of LPA acyltransferase. In this research proposal, the following two objectives will be pursued. The first objective is to examine whether seed LPA acyltransferase of a special acyl preference from one plant species will be active in another plant species after genetic transformation. Experiments will be performed to characterized seed LPA acyltransferases from palm, Brassica, and meadowfoam, to obtain their genes for transformation of appropriate plants, and to detect activities of the foreign enzymes in the transformed plants. Several different approaches will be used to obtain the gene; these approaches include: screening cDNA libraries for the genes by oligonucleotides deduced from the purified enzyme and by a bacterial gene, and functional complementation with a bacterial mutant. Putative E. coli mutant lines functionally complemented with plant cDNA encoding the enzyme have been obtained; these lines will be studied most intensively. If time permits, we will use the palm and meadowfoam LPA acyltransferase genes to transform Brassica, and analyze the transformed plants for activities of the foreign enzyme. The information will be crucial to our understanding of the control mechanism of fatty acid assembly into TAG in seeds as well as glycerolipids in non seed organs. The second objective is to test if a membrane-associated, lipid-metabolizing enzyme of bacterial origin can be active, in higher plants. by transforming Brassica with an E. coli gene encoding LPA acyltransferase and studying the expression of the bacterial gene in the transformed Brassica. %%% This project aims to take a gene which makes an enzyme that Produces a certain plant oil found in palms, and introduce the gene into other plants to see if they also would produce the palm oil. If this is successful the investigators have found a way for oil produced in plants not common to the US to be available in other species of plants common in this country. Furthermore, these enzymes could be used to make novel lipid biomaterials.
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会议论文
Neutral Lipids in the Flowers of Arabidopsis Mutants
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批准号:0131358
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项目类别:Continuing Grant
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资助金额:$38.26万
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财政年份:2002
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负责人:Anthony Huang
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依托单位:
Lipase and Lipid Bodies in Seeds
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批准号:8805618
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项目类别:Continuing Grant
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资助金额:$20.86万
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财政年份:1989
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负责人:Anthony Huang
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依托单位:
Lipase and Lipid Bodies in Seeds
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批准号:8896251
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项目类别:Continuing Grant
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资助金额:$6.23万
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财政年份:1988
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负责人:Anthony Huang
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依托单位:
Lipase and Lipid Bodies in Seeds
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批准号:8515556
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项目类别:Continuing Grant
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资助金额:$10.33万
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负责人:Anthony Huang
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依托单位:
Lipase and Lipid Bodies in Oil Seeds
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批准号:8304556
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项目类别:Standard Grant
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资助金额:$10.0万
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负责人:Anthony Huang
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依托单位:
Metabolism of Proline and Betaine in Normal and Water-Stressed Plant Tissues
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批准号:8021970
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项目类别:Standard Grant
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资助金额:$9.12万
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财政年份:1981
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负责人:Anthony Huang
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依托单位:
Dynamic Aspects of Storage Protein Bodies
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批准号:7717679
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项目类别:Standard Grant
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资助金额:$4.74万
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财政年份:1978
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负责人:Anthony Huang
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依托单位:
Studies on Glyoxysomes and Related Organelles
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批准号:7502320
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项目类别:Standard Grant
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资助金额:$2.65万
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财政年份:1975
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负责人:Anthony Huang
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依托单位:
国内基金
海外基金
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批准号:21176106
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项目类别:面上项目
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资助金额:60.0万元
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批准年份:2011
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负责人:孙付保
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依托单位: