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本文引用的文献

1
Polyhydroxybutyrate, a biodegradable thermoplastic, produced in transgenic plants.聚羟基丁酸酯,一种可生物降解的热塑性塑料,在转基因植物中生产。
Science. 1992 Apr 24;256(5056):520-3. doi: 10.1126/science.256.5056.520.
2
Changes in biochemical composition of the cell wall of the cotton fiber during development.棉纤维发育过程中细胞壁生化成分的变化。
Plant Physiol. 1977 Jun;59(6):1088-97. doi: 10.1104/pp.59.6.1088.
3
Analysis of Poly-beta-Hydroxybutyrate in Rhizobium japonicum Bacteroids by Ion-Exclusion High-Pressure Liquid Chromatography and UV Detection.用离子排斥高效液相色谱法和紫外检测分析根瘤菌类细菌中的聚-β-羟基丁酸。
Appl Environ Microbiol. 1983 Dec;46(6):1339-44. doi: 10.1128/aem.46.6.1339-1344.1983.
4
Polymeric Beta-Hydroxyalkanoates from Environmental Samples and Bacillus megaterium.从环境样本和巨大芽孢杆菌中提取的聚合β-羟基烷酸酯。
Appl Environ Microbiol. 1983 Jan;45(1):71-8. doi: 10.1128/aem.45.1.71-78.1983.
5
Tissue-specific and developmental regulation of cotton gene FbL2A. Demonstration of promoter activity in transgenic plants.棉花基因FbL2A的组织特异性及发育调控。转基因植物中启动子活性的验证。
Plant Physiol. 1996 Nov;112(3):1331-41. doi: 10.1104/pp.112.3.1331.
6
Characterization of mRNA for a proline-rich protein of cotton fiber.棉花纤维富含脯氨酸蛋白的mRNA的特性分析。
Plant Physiol. 1995 Jun;108(2):669-76. doi: 10.1104/pp.108.2.669.
7
Nile blue A as a fluorescent stain for poly-beta-hydroxybutyrate.尼罗蓝A作为聚β-羟基丁酸酯的荧光染色剂。
Appl Environ Microbiol. 1982 Jul;44(1):238-41. doi: 10.1128/aem.44.1.238-241.1982.
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The regulation of poly-beta-hydroxybutyrate metabolism in Azotobacter beijerinckii.拜氏固氮菌中聚-β-羟基丁酸酯代谢的调控
Biochem J. 1973 May;134(1):225-38. doi: 10.1042/bj1340225.
9
Cloning of the Alcaligenes eutrophus genes for synthesis of poly-beta-hydroxybutyric acid (PHB) and synthesis of PHB in Escherichia coli.用于合成聚-β-羟基丁酸(PHB)的嗜中性产碱杆菌基因的克隆及在大肠杆菌中合成PHB
J Bacteriol. 1988 Dec;170(12):5837-47. doi: 10.1128/jb.170.12.5837-5847.1988.
10
Poly-beta-hydroxybutyrate (PHB) biosynthesis in Alcaligenes eutrophus H16. Identification and characterization of the PHB polymerase gene (phbC).嗜碱产碱杆菌H16中聚-β-羟基丁酸酯(PHB)的生物合成。PHB聚合酶基因(phbC)的鉴定与表征。
J Biol Chem. 1989 Sep 15;264(26):15298-303.

棉花中的代谢途径工程:纤维细胞中聚羟基丁酸酯的生物合成

Metabolic pathway engineering in cotton: biosynthesis of polyhydroxybutyrate in fiber cells.

作者信息

John M E, Keller G

机构信息

Fiber Technology Division, Agracetus, 8520 University Green, Middleton, WI 53562, USA.

出版信息

Proc Natl Acad Sci U S A. 1996 Nov 12;93(23):12768-73. doi: 10.1073/pnas.93.23.12768.

DOI:10.1073/pnas.93.23.12768
PMID:11038522
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC23995/
Abstract

Alcaligenes eutrophus genes encoding the enzymes, beta-ketothiolase (phaA), acetoacetyl-CoA reductase (phaB), and polyhydroxyalkanoate synthase (phaC) catalyze the production of aliphatic polyester poly-d-(-)-3-hydroxybutyrate (PHB) from acetyl-CoA. PHB is a thermoplastic polymer that may modify fiber properties when synthesized in cotton. Endogenous beta-ketothiolase activity is present in cotton fibers. Hence cotton was transformed with engineered phaB and phaC genes by particle bombardment, and transgenic plants were selected based on marker gene, beta-glucuronidase (GUS), expression. Fibers of 10 transgenic plants expressed phaB gene, while eight plants expressed both phaB and phaC genes. Electron microscopy examination of fibers expressing both genes indicated the presence of electron-lucent granules in the cytoplasm. High pressure liquid chromatography, gas chromatography, and mass spectrometry evidence suggested that the new polymer produced in transgenic fibers is PHB. Sixty-six percent of the PHB in fibers is in the molecular mass range of 0.6 x 10(6) to 1.8 x 10(6) Da. The presence of PHB granules in transgenic fibers resulted in measurable changes of thermal properties. The fibers exhibited better insulating characteristics. The rate of heat uptake and cooling was slower in transgenic fibers, resulting in higher heat capacity. These data show that metabolic pathway engineering in cotton may enhance fiber properties by incorporating new traits from other genetic sources. This is an important step toward producing new generation fibers for the textile industry.

摘要

编码β-酮硫解酶(phaA)、乙酰乙酰辅酶A还原酶(phaB)和聚羟基脂肪酸酯合酶(phaC)的真养产碱菌基因催化由乙酰辅酶A生产脂肪族聚酯聚-d-(-)-3-羟基丁酸酯(PHB)。PHB是一种热塑性聚合物,当在棉花中合成时可能会改变纤维性能。棉花纤维中存在内源性β-酮硫解酶活性。因此,通过粒子轰击将工程化的phaB和phaC基因导入棉花,并基于标记基因β-葡萄糖醛酸酶(GUS)的表达筛选转基因植株。10株转基因植株的纤维表达phaB基因,而8株植株同时表达phaB和phaC基因。对同时表达这两个基因的纤维进行电子显微镜检查表明,细胞质中存在电子透明颗粒。高压液相色谱、气相色谱和质谱分析证据表明,转基因纤维中产生的新聚合物是PHB。纤维中66%的PHB分子量范围为0.6×10⁶至1.8×10⁶Da。转基因纤维中PHB颗粒的存在导致热性能发生可测量的变化。这些纤维表现出更好的隔热特性。转基因纤维的吸热和冷却速率较慢,导致热容量更高。这些数据表明,棉花中的代谢途径工程可以通过整合来自其他遗传来源的新特性来增强纤维性能。这是朝着为纺织工业生产新一代纤维迈出的重要一步。