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1.
植物细胞生物反应器培养的研究进展(I)   总被引:6,自引:0,他引:6  
利用植物细胞大规模悬浮培养生产植物有用代谢产物在近些年来取得了很大发展,但植物细胞悬浮培养的工业化应用受到来自生物及工程技术上的限制.本文针对植物细胞培养的基本特点,详细讨论了与大规模生产有关的工程技术方面的问题,如植物细胞聚集、溶氧及气体成分、流体性能、剪切力对植物细胞培养产生的影响.  相似文献   

2.
植物细胞生物反应器培养的研究进展(Ⅰ)   总被引:3,自引:1,他引:2  
黄艳  赵德修等 《植物学通报》2001,18(5):567-570,553
利用植物细胞大规模悬浮培养生产植物有用代谢产物在近些所来取得了很大发展,但植物细胞悬浮培养的工业化应用受到来自生物及工程技术上的限制,本文针对植物细胞培养的基本特点,详细讨论了与大规模生产有关的工程技术方面的问题,如植物细胞聚集,溶氧及气体成分,流体性能,剪切力对植物细胞培养产生的影响。  相似文献   

3.
生物反应器技术应用于植物细胞培养既可以打破环境条件的限制,又有助于生产过程的人为调控,为植物细胞大规模培养或工厂化直接生产植物细胞有用代谢产物创造了条件,是当前植物细胞培养工作的研究热点。在介绍植物细胞培养特点的基础上,对适用于植物细胞培养的各类生物反应器(搅拌式生物反应器、非搅拌式生物反应器、用于植物细胞固定化培养的生物反应器、光生物反应器以及一次性培养生物反应器)的原理、优缺点等进行比较分析,最后提出了植物细胞培养生物反应器研究的发展方向,以期为植物细胞培养生物反应器的选择及改良提供参考。  相似文献   

4.
紫杉醇是一种二萜类生物碱,主要从红豆杉树皮中分离提取。目前采用植物细胞工程技术是提高紫杉醇产率、保护稀缺资源红豆杉、解决紫杉醇药源紧缺的一种最有效方法。该文对近十年来国内外有关采用植物细胞工程技术生产紫杉醇的研究进展,包括红豆杉细胞系的建立、悬浮培养条件的研究、生物反应器培养以及紫杉醇合成代谢调控方面的最新研究进展进行综述。并重点论述了前体、诱导子和代谢支路抑制剂对红豆杉细胞悬浮培养生产紫杉醇的影响,为植物细胞工程技术生产紫杉醇提供借鉴和参考。  相似文献   

5.
植物细胞培养生产天然产物的研究进展   总被引:4,自引:0,他引:4  
植物细胞培养技术已成为工业化生产天然产物的一条新途径。本文概述了植物细胞悬浮培养和固定化植物细胞系统生产天然产物的研究进展,介绍了植物细胞培养的产物,提高产物产量的途径和培养系统等方面的研究动态,讨论了目前存在的问题以及未来的发展趋向。  相似文献   

6.
植物悬浮细胞的研究进展   总被引:2,自引:0,他引:2  
综述了植物悬浮细胞培养的原理、培养类型、不同植物悬浮细胞培养基的配方和培养方法.同时阐述了悬浮细胞系在细胞生物学和分子生物学领域中的应用前景.  相似文献   

7.
植物细胞培养技术诞生于20世纪初,随着研究的不断进步,逐步发展出植物组织培养、植物器官培养、原生质体培养、细胞培养、冠瘿瘤培养以及不定根或毛状根培养等技术.20世纪80年代前后,利用植物细胞培养生产植物次生代谢产物的研究成为热点.比如1977年Noguchi等就利用20吨发酵罐进行了烟草细胞培养生产尼古丁实验.1977年Alfernmann等利用毛地黄培养细胞把甲基洋地黄毒苷转化为甲基地戈辛,证明植物细胞的生物转化能力.1985年日本的三井石油化学公司利用紫草细胞大规模培养生产紫草宁,并且投放市场,首次将植物细胞培养技术实现了产业化.  相似文献   

8.
本文介绍了植物细胞培养的特点及其生物反应器的设计原理,概述了植物细胞悬浮培养和固定化细胞系统中各类生物反应器的传氧、混合和流体力学特性与植物细胞生长和次生代谢物生产的关系。  相似文献   

9.
<正>化学工业出版社出版李永成、蒋志国编著。本书从植物细胞悬浮培养的意义、药用植物组织培养的基本方法、植物悬浮细胞的大规模培养、植物细胞悬浮培养的研究方法与有效成分的提取与分析等方面,系统介绍了药用植物细胞悬浮培养的基本理论与工艺路线、悬浮细胞合成  相似文献   

10.
利用植物细胞生物反应器技术生产植物有用代谢产物,近些年来取得了很大发展,但植物细胞悬浮培养的工业化应用仍受到来自生物及工程技术上的限制。针对植物细胞生物反应器技术的特点及其研究进展,提出在综合考虑生物学和工艺学两方面的基础上,选育药用植物稳定高产的优良细胞系是提高植物细胞生物反应器技术可行性的关键。  相似文献   

11.
The core mechanism of the plant cell cycle is conserved with all other eukaryotes but several aspects are unique to plant cells. Key characteristics of plant development include indeterminate growth and repetitive organogenesis derived from stem cell pools and they may explain the existence of the high number of cell cycle regulators in plants. In this review, we give an overview of the plant cell cycle and its regulatory components. Furthermore, we discuss the cell cycle aspects of plant stem cell maintenance and how the cell cycle relates to cellular differentiation during development. We exemplify this transition by focusing on organ initiation in the shoot.  相似文献   

12.
植物细胞壁蛋白质组学研究进展   总被引:1,自引:0,他引:1  
植物细胞壁蛋白质在细胞代谢和发育调控、细胞壁组分修饰、信号转导及胁迫响应等生物学事件中具有重要功能.最近,国内外学者开展了大量植物细胞壁蛋白质组学的研究工作,并取得了巨大进展.本文详述了细胞壁蛋白质的分类、提取、鉴定及生物信息学分析的最新进展,总结了植物细胞壁蛋白质组学的应用和面临的挑战,提出了植物细胞壁蛋白质组学研究的框架图,以期为植物细胞壁蛋白质组学的广泛研究提供借鉴.  相似文献   

13.
Discusses probable routes of agrobacterial penetration through the plant integumental tissues, cell wall, and plant cell plasmodesma. Analyzes the contribution of extracellular structures of agrobacteria in penetration through barriers of a plant cell, primary contact (adhesion), and during DNA transfer from bacterial (E. coli, A. tumefaciens) to recipient (bacterial or plant) cells. Discusses the relationship between donor cell adhesion to recipient cell surface and the infectious and conjugation processes. Considers the probable role of piles in conjugative transfer of agrobacterial DNA through membranes of donor and recipient (bacterial and plant) cells. Analyzes the contribution of the plant cell cytoskeleton to T-DNA transfer. Suggests a model of transport of T-DNA-VirD2 complex and VirE2 proteins through independent channels consisting of vir-coded proteins.  相似文献   

14.
Plant and fungal cells are surrounded by a cell wall rich in diverse polysaccharides and proteins. It has become apparent in recent years that the carbohydrates in the cell wall function not only to maintain cell shape and integrity, but also may serve as signals in plants. This review summarizes the evidence that biologically-active oligosaccharides (oligosaccharins) released from plant or microbial cell walls can serve as signals to regulate plant defense and plant growth and development. The oligosaccharins discussed include the fungal-derived hepta-β-glucoside and the plant cell wall-derived oligogalacturonides and xyloglucans. Possible mechanisms by which oligosaccharins may exert their effects on plant cells are discussed.  相似文献   

15.
综述了MAPKs参与植物细胞周期调控的最新进展 ,植物激素与MAPK ,MAPK与植物细胞有丝分裂 ,以及MAPK与植物细胞分裂和生长的调控等三方面 ,阐述MAPK参与调控高等植物细胞分化和有丝分裂的机制。  相似文献   

16.
Expansins and cell wall expansion   总被引:10,自引:4,他引:6  
The subject of this review is the discovery of expansins andtheir role in plant cell wall expansion. The review is introducedwith a summary of the importance of wall expansion in the controlof plant cell growth, and a brief discussion of the nature ofcell wall extension in plants. The role of expansins in wallextension and their mechanism of action will be reviewed, and,finally, the role of expansins in plant cell growth will bediscussed. Key words: Expansins, cell expansion, cell wall extension, plant growth  相似文献   

17.
Cells of Pseudomonas phaseolicola were observed entrapped against plant cell walls in both susceptible (Red Kidney) and resistant (Red Mexican) cultivars of French bean (Phaseolus vulgaris). After staining of samples with ruthenium red for electron microscopy pectic polysaccharide within plant cell walls became particularly well contrasted as did fibrillar material connecting bacteria to the plant cell walls. In places this fibrillar material appeared to emanate from the pectic polysaccharide in the plant cell wall, and the plant cell wall surface was eroded at such points. Ruthenium red also stains acidic, bacterial extracellular polysaccharide (EPS) and some of the fibrillar material in intercellular spaces is probably from this source. It is possible that bacteria become attached through an interaction between EPS and Pectic polysaccharide in plant cell walls.  相似文献   

18.
The shape of a plant cell has long been the cornerstone of diverse areas of plant research but it is only recently that molecular-genetic and cell-biological tools have been effectively combined for dissecting plant cell morphogenesis. Increased understanding of the polar growth characteristics of model cell types, the availability of many morphological mutants and significant advances in fluorescent-protein-aided live-cell visualization have provided the major impetus for these analyses. The cytoskeleton and its regulators have emerged as essential components of the scaffold involved in fabricating plant cell shape. In this article, I collate information from recent discoveries to derive a simple cytoskeleton-based operational framework for plant cell morphogenesis.  相似文献   

19.
Students of metazoan biology have traditionally viewed the extracellular matrix (ECM) as a substrate with which cells interact to participate in developmental pattern formation and define a specific location. In contrast, the plant cell wall has been viewed as a cage that limits and thus directs plant cell morphology, and perhaps for this reason many have shied away from calling the plant cell wall the ECM. The recent discovery of a variety of receptor molecules and their ligands on the surface of plant cells and the intimate role cell walls play in development should direct our thinking toward a more dynamic view of the plant cell wall. A recent example, is the discovery of wall associated kinases (WAKs), which may well signal between the ECM and the cell and are required for cell expansion.  相似文献   

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