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1.
The age of the stock plants was important for the barley ( Hordeum vulgare L. cv. Perth) protoplast viability. Light conditions under which the stock plants were grown also affected the viability of the protoplasts. Greenhouse-grown plants yielded much higher number of protoplasts than dark-grown plants, but protoplast viability was better when protoplasts were isolated from etiolated plants. Light supplied during protoplast culture affected protoplast viability within the first 24 h of culture. Cellulase R-10 (Onozuka) was better than Cellulysin (Calbiochem) and Cellulase + Macerozyme R-10 (Onozuka) for barley mesophyll protoplast isolation. Cellulase R-10 (Onozuka) was fractionated on a G-75 Sephadex column. The eluted fractions were tested for their ability to release barley mesophyll protoplasts and for their toxicity towards the protoplasts. Only a small part of the Cellulase R-10 was necessary for protoplast isolation from barley leaves. When the fractionated cellulase was analysed by isoelectric focusing, this part of the cellolase appeared as a single band.  相似文献   

2.
Two types of protoplasts were isolated from leaves of shootsor callus of subcultures of jojoba (Simmondsia chinensis (Link)Schneider). Protoplasts from leaves were rich in chloro-plastsand were about half the volume of protoplasts from callus. Theviability of preparations as determined by the Evans blue techniquewas 80%. From cell cycle analysis by flow cytometry of nuclei,leaf protoplasts were uniformly in a non-proliferating phase(G0-G1), while callus protoplasts presented many phases of thecell cycle. Protoplasts from calli had only half the Chi ofthose from leaves. Yet Chi a/b ratio, as well as protein andtotal lipid content per cell, were similar in both types ofprotoplasts. A major drop in polar lipids, chiefly in mono-and digalactosyldiacylglycerol, and a parallel increase in neutrallipids occurred during protoplast isolation. The 18:2/18:3 ratiodecreased in neutral lipids concomitant with an increase intriglycerides rich in linolenic acid. Our results suggest atriggering of lipolytic acylhydrolases during the protoplastisolation, as reported for other species. Plasmolysis of thecells with high osmolarity medium and long incubation timeswere required to get a good yield of jojoba protoplasts. Inthe course of this procedure water-deficit stress takes place.A parallel with lipid changes occurring under this type of stressis discussed. (Received April 22, 1991; Accepted July 3, 1991)  相似文献   

3.
High yields of viable protoplasts were produced from pea leaves provided that only leaves of the same age were used in each preparation. The conditions under which the pea plants were grown and the age of the plants were also important. The protoplasts were cultured in a medium supplemented with 1 mg/1 2iP and 1 mg/1 2,4-D. They were able to regenerate cell walls within two days. After 5 days cell divisions were apparent and sustained divisions led to callus formation. Special emphasis has been given in this paper to the choice of leaf material for protoplast isolation.  相似文献   

4.
We describe here an efficient and reproducible protocol for isolation and culture of protoplasts from Ulmus minor. Different sources of donor tissues were tested for protoplast isolation: callus and juvenile leaves from in vitro and greenhouse plants. Several combinations and concentrations of hydrolytic enzymes were used. Comparative tests between Cellulase Onozuka R10 and Cellulase Onozuka RS were made and the last one proved to be more efficient. Both the pectinases used, Macerozyme Onozuka R10 and Pectinase (Sigma®), were efficient in protoplast isolation and there was no need for a more active pectinase. In vitro leaves proved to be the best source for protoplast isolation and produced an average of 3.96 × 107 protoplasts per gram of fresh weigh. Elm mesophyll protoplasts were cultured using the advantageous method of agarose droplets and a modification of the Kao and Michayluk culture medium, using two plating densities (1 × 105 and 2 × 105 protoplasts ml?1). Protoplast division and evolution into colonies and microcalli was promoted in the agarose droplets plated at 2 × 105 protoplasts ml?1. Ten weeks after protoplast culture initiation a plating efficiency of 2.7% was attained and the bigger microcalli, with at least 0.5 mm diameter, were transferred to a solid medium previously used for the production of embryogenic callus.  相似文献   

5.
6.
The viability of tobacco ( N. tabacum – L. cv. Xanthi-nc) protoplasts isolated during the winter months is affected by membrane calcium, total calcium, plant age and supplementary lighting. Feeding calcium nitrate and calcium chloride helps to increase protoplast stability. Feeding is important because it increases membrane calcium, but it also has other beneficial effects which may be connected with increased nitrate and chloride (anion) uptake and cation/anion interaction. Whatever optimal feeding regime is chosen, it must be used in conjunction with the correct harvesting practice, which depends on whether or not supplementary light is given. Plants grown without supplementary light are best harvested between 8–9 weeks. If supplementary light is given, older plants (with and without supplementary calcium feeding) of approx. ten weeks are better for protoplast isolation. Plants grown under supplementary light have low leaf shape index (LSI) values (i.e. wider leaves) compared to plants in low light.
Spring and summer calcium feeding treatments had no significant effect on increasing total or membrane calcium. Likewise, there was no significant correlation between total/membrane calcium and percentage protoplast viability from days 0–5; and protoplasts isolated from plants grown in shade and fed with calcium salts, were no more stable than protoplasts from control plants. Irrespective of the feed treatments given, spring and summer plants older than about fifty days and grown under shaded and normal light conditions, produced poor protoplasts despite the fact that there was more calcium present in the membranes compared to protoplasts of younger plants. This decrease in percentage protoplast viability appears to be associated with changes in leaf shape. As plants age from 49–63 days, the leaf shape index (LSI) values increase (i.e. leaves are becoming narrower) and % protoplast viability decreases.  相似文献   

7.
Summary Beauveria bassiana protoplast formation from blastospores, conidia and mycelia was studied. The method of protoplast formation involves preincubation of the fungal cells with dithiothreitol and subsequent treatment with an enzyme mixture consisting of: cellulase, chitinase, -glucuronidase and lysozyme. Using this procedure protoplasts were formed from blastospores and mycelia but not conidia. Formation of protoplasts from 24 hour old mycelia was 100% efficient using the above conditions. A number of ionic and osmotic protoplast stabilizing agents were tested. Ammonium sulfate was shown to be the stabilizer of choice. Protoplasts were stable when stored at 4° C with a loss of only 17% in 6 days. We suggest that this procedure of protoplast production will allow a gentler method for the extraction and isolation of intact high molecular weight DNA from B. bassiana.  相似文献   

8.
Hypocotyls, cotyledons and etiolated half-expanded leaves ofCucumismelo‘Green Delica’ were used as explants for protoplastisolation and culture. Protoplasts isolated from cotyledonsand etiolated half-expanded leaves cultured in Durand, Potrykusand Donn (DPD) medium supplemented with 0.9 µMbenzylaminopurine(BAP), 3.6 µM2,4-dichlorophenoxyacetic acid (2,4-D) and1% sucrose, using the agarose bead culture method, were ableto form cell walls and subsequently go through cell division.Pretreatment of half-expanded leaf explants in the dark for14 d provided the best material for protoplast isolation andcell division. Approximately one third of protoplasts from etiolatedhalf-expanded leaves formed microcolonies. For hypocotyl protoplasts,none of the treatments used were suitable to induce cell division.There was no significant difference between sucrose, glucose,and sucrose plus glucose, in culture media on the plating efficiencyof leaf protoplasts ofC. melo‘Green Delica’; however,bigger colonies were formed in media supplemented with 1% sucrose.No shoot or whole plant regeneration was achieved. However,the methods reported here provide further information onC. meloprotoplastculture.Copyright 1998 Annals of Botany Company Cucumis melo,protoplast culture, 2,4-D, BAP, yeast extract, casein hydrolysate.  相似文献   

9.
A simple method for the isolation of plant protoplasts   总被引:1,自引:0,他引:1  
A simple protoplast isolation protocol that was designed to recover totipotent plant protoplasts with relative ease has been described. The key elements of the protocol are, tissue digestion at slightly elevated temperatures and use of protoplast-releasing enzymes that are stable and efficient at higher temperatures. Besides enzymes, the protoplast isolation cocktail consisted of an osmoticum (mannitol or MgSO4), and a protectant (CaCl2 2H2O), all dissolved in distilled water. The protocol has ensured reproducibility, higher yields and is gentle on protoplasts as the protoplasts obtained were amenable to cell wall regeneration and cell division. Plant regeneration was demonstrated forNicotiana tabacum cv. Thompson from protoplasts isolated by this method. Wall regeneration and cell division were obtained in other species. The merits of the protocol are, simple and easy-to-handle procedure, non-requirement of preconditioning of donor plant and explants, incubation without agitation, satisfactory yields, culturability of the protoplasts isolated and applicability of the protocol to a large number of species including mucilage-containing plants.  相似文献   

10.
Fellner  Martin 《Annals of botany》1995,76(3):219-223
A major problem of in vitro plant culture techniques is chroniccontamination by microorganisms. Calli derived from basal partsof leaves of Allium longicuspis Regel (Alliaceae) and culturedin a medium without antibiotic contain most probably latentcontaminating microorganisms. These calli were used as the sourcematerial for isolation and culture of protoplasts. Isolatedprotoplasts were cultured in the presence of the antibioticciprofloxacin, and the protoplast viability, cell wall regenerationand cell division were studied as a function of the antibioticconcentration. Whatever the antibiotic concentration, protoplast-derivedcells kept significantly higher viability for at least 3 weekscompared with those cultured without antibiotic. As to cellwall regeneration after 2 d, it was not affected by the antibioticexcept at the highest concentration tested (100 mg l-1). Sporadicfirst cell division was observed after 2-6 d of culture in thepresence of ciprofloxacin while, in its absence, cell divisionwas never apparent before 10 d of culture.Copyright 1995, 1999Academic Press Allium, bacteria, cell division, cell wall regeneration, ciprofloxacin, contamination, garlic, mycoplasma, protoplast culture, viability  相似文献   

11.
Callus cells of rice (Oryza sativa L.) that were actively dividing in suspension culture had lost the ability to divide during the isolation process of protoplasts. Factors influencing the protoplast viability were examined using highly purified preparations of cellulase C1, xylanase, and pectin lyase, which were essential enzymes for the isolation of protoplasts from the rice cells. The treatment of the cells with xylanase and pectin lyase, both of which are macerating enzymes, caused cellular damage. Xylanase treatment was more detrimental to the cells. Osmotic stress, cell wall fragments solubilized by xylanase, and disassembly of cortical microtubules were not the primary factors which damaged the rice cells and protoplasts. The addition of AgNO3, an inhibitor of ethylene action, to the protoplast isolation medium increased the number of colonies formed from the cultured protoplasts, although the yield of protoplasts was reduced by the addition. Superoxide radical (O2-) was generated from the cells treated with xylanase or pectin lyase. The addition of superoxide dismutase and catalase to the protoplast isolation medium resulted in a marked improvement in protoplast viability especially when the non-additive control protoplasts formed colonies with a low frequency. The addition of glutathione peroxidase and phospholipase A2, which have been known to reduce and detoxify lipid hydroperoxides in membranes, to the protoplast culture medium significantly increased the frequency of colony formation. These results suggested that some of the damage to rice protoplasts may be caused by oxygen toxicity.  相似文献   

12.
A simple and quick method is described for rapid isolation of metabolically active mesophyll protoplasts from leaves of Arabidopsis thaliana . The optimal composition of the digestion medium, period of digestion and stability of protoplast preparation were examined. A large number of protoplasts could be prepared within an hour. The isolated protoplasts were intact, stable and metabolically very active, as indicated by their high rates of photosynthetic oxygen evolution. The important factors during the preparation of protoplasts are short time of digestion, composition of medium, use of nylon nets for filtration, centrifugation at low speed and use of pH 7.0 for storage. The highest rate of photosynthesis obtained in these experiments was 130 ± 4 μmol O2 evolved mg−1 Chl h−1, at 1 m M sodium bicarbonate and at a light intensity of 600 μE m−2 s−1. The present technique of isolation can be very useful for making Arabidopsis protoplasts for studies on not only metabolic processes, such as photosynthesis, but also metabolomics, proteomics and genomics.  相似文献   

13.
Silver nitrate (AgNO3), an inhibitor of the physiological actionof ethylene, reduced cell growth, promoted ethylene production,increased the yield of protoplasts and reduced shoot regenerationfrom sugarcane heterogeneous cell suspension cultures. The increasein the rate of protoplast isolation from cultures treated withAgNO3 (0 to 59 µM) correlate with an increase in endogenousethylene production by the cells. The addition to the culturemedium of chemicals that either inhibited (aminoethoxyvinylglycine,AVG) or promoted (aminocyclopropane-1-carboxylic acid, ACC)ethylene biosynthesis did not alter the number of protoplastsisolated from these cultures. However, protoplasts were isolatedwith AVG in combination with AgNO3 even though ethylene productionwas inhibited. These results suggested that AgNO3 may be havinganother more direct effect on protoplast release. One such sitemay be the cell wall or on cell metabolism conditioning cellsto release protoplasts after enzyme treatment. Key words: Sugarcane, cell suspension, protoplast, silver nitrate, ethylene  相似文献   

14.
A procedure for the culture of Solanum etuberosum mesophyll protoplasts with subsequent shoot regeneration is described. Several factors affected protoplast yield, colony formation, and shoot regeneration from in vitro plants. A protoplast isolation medium with 0.6 M sucrose produced twice the yield as one with 0.3 M sucrose. uowever, a higher concentration of osmoticum was inhibitory to colony development unless it was diluted into a lower osmoticum medium in a bilayer system. A 16 hour light/8 hour dark photoperiod for stock plants allowed twice the protoplast yield compared to plants grown under continuous light but no effect was found on subsequent colony formation or shoot regeneration. The concentrations of four major salts in the protoplast plating medium were critical for a high frequency of colony formation from protoplasts. Levels of 0.25 × or 1 × were considerably better than 4 ×. Fast colony formation, but at a lower efficiency, was obtained with a monolayer plating method. A bilayer plating system allowed a higher efficiency but colonies developed more slowly. For the best treatments, the frequency of colony formation from protoplasts ranged from 2.4 to 3.6 × 10-3 with 37% to 66% of the colonies producing shoots ten weeks after protoplast isolation.Cooperative investigation of the USDA-ARS and the Wisconsin Agric. Exp. Stn.  相似文献   

15.
Global warming is affecting Mediterranean ecosystems, in which Arbutus unedo represents an important species. Mesophyll protoplasts are convenient material to study plant DNA integrity, nevertheless their release from mature plants along the year has not been reported in sclerophyll species. In this respect, in the present study the chance to isolate protoplasts from leaf tissues of A. unedo in different seasons was investigated. The digestion was obtained using Macerozyme R10 (1%) and Cellulase Onozuka RS (2%), with 0.6 M of mannitol, incubated for 4 h at 25 °C in the dark. In spring, soft leaves of different ages were studied to identify the most suitable material and protoplast yields were significantly influenced, with the still expanding 4th leaf characterized by the highest amount. Protoplast release decreased during the growing season when leaves become partially hardened, while their obtainment was quite impossible in summer and winter, due to leaf hardening. In November, an increase of incubation time (16 h) and of Cellulase RS (4%) or mannitol concentration (0.8 M) was needed with chilled leaves from the field; conversely, a good source for protoplasts were the green soft leaves coming from detached and pruned branches placed in controlled environment at spring temperatures. The employment of polyvinylpyrrolidone-40 during isolation procedure is discussed. The isolated protoplasts were employed to assess the DNA integrity, by using single cell gel electrophoresis (SCGE). The X-irradiated nucleoids were significantly damaged confirming that the present approach could be used in the selection of elite material of A. unedo devoted to fruit plantation.  相似文献   

16.
Yields of 106–108 peach mesophyll cells and protoplasts · gfw-1 were obtained depending on factors such as digesting enzymes, and leaf size. Onozuka R-10 (2%) in combination with Macerase (0.5%) was found best for protoplast isolation and mediocre for cell isolation among several enzyme combinations tested. Viability was 90% for protoplasts and 60% for cells. Pectolyase Y23 was found to be ineffective in our investigation. Small leaves, 4–10 mm in length, were a superior source for protoplast isolation than medium or big expanded leaves, 22–30 mm in length. The high yields of protoplasts could be obtained only when keeping the ratio of leaf biomass to volume of digesting enzyme solution under 20 mg ml-1. Purification of protoplasts on a sucrose gradient yielded about 107 protoplasts · gfw-1, however, the preparation was still contaminated by intact cells. Protoplasts were cultured under different growth regulators and physical conditions. Limited growth and division of protoplasts embedded in agarose drops were observed.Abbreviations BA 6-benzyladenine - IBA indolebutyric acid - FDA fluorescein diacetate - MES 2-M-morpholinoethane sulphonic acid - MS Murashige and Skoog - NAA -naphthaleneacetic acid - PVP polyvinylpyrrolidone  相似文献   

17.
Summary Somatic hybridization in higher plants has come into focus since methods have been established for protoplast fusion and uptake of foreign DNA and organelles by protoplasts. Polyethylene glycol (PEG) was an effective agent for inducing fusion. Treatment of protoplasts with PEG resulted in 5 to 30% heterospecific fusion products. Protoplasts of different species, genera and even families were compatible when fused. A number of protoplast combinations (soybean + corn, soybean + pea, soybean + tobacco, carrot + barley, etc.) provided fusion products which underwent cell division and callus formation. Fusion products initially were heterokaryocytes. In dividing heterokaryocytes, random distribution of mitotic nuclei was observed to be accompanied by multiple wall formation and to result in chimeral callus. Juxtaposition of mitotic nuclei suggested nuclear fusion and hybrid formation. Fusion of heterospecific interphase nuclei was demonstrated in soybean + pea and carrot + barley heterokaryons. Provided parental protoplasts carry suitable markers, the fusion products can be recognized. For the isolation and cloning of hybrid cells, fusion experiments must be supplemented with a selective system. Complementation of two nonallelic genes that prevent or inhibit growth under special culture conditions appears as the principle on which to base the selection of somatic hybrids. As protoplasts of some species have been induced to regenerate entire plants, the development of hybrid plants from protoplast fusion products is feasible and has already been demonstrated for tobacco. Presented in the formal symposium on Somatic Cell Genetics at the 27th Annual Meeting of the Tissue Culture Association, Philadelphia, Pennsylvania, June 7–10, 1976.  相似文献   

18.
Aoyagi H 《Biotechnology letters》2006,28(20):1687-1694
An index [kv: average isolation rate of viable protoplast (number/ml min)] was established to evaluate the optimal conditions for protoplast isolation from cultured plant cells. The optimal conditions for protoplasts isolation from Nicotiana tabacum BY2 cultured cells could be determined on the basis of the kv [31.7 × 103 (number/ml min)]. The colony-forming efficiency of the protoplasts was about 46%. The optimal conditions for protoplasts isolation from Catharanthus roseus [kv = 38.1 × 103 (number/ml min)] and Wasabia japonica [kv = 14.2 × 103 (number/ml min)] cultured cells could also be determined. Furthermore, a method for rapid regenerating cell wall of protoplast in liquid culture using alginate gel containing locust bean gum was developed.  相似文献   

19.
玉米、小麦、水稻原生质体制备条件优化   总被引:3,自引:0,他引:3  
玉米Zea mays L.、小麦Triticum aestivum L.、水稻Oryza sativaL.是三大重要粮食作物,对其原生质体制备条件的优化具有重要意义.以玉米(综3)、小麦(中国春)、水稻(日本晴)10日龄幼苗为材料,研究了叶肉细胞原生质体分离过程中的酶浓度、酶解时间和离心力大小等因素对产量和活力的影响.结果表明:酶浓度和酶解时间对原生质体产量影响显著,随着酶解液浓度和酶解时间的提高,原生质体产量增加,但细胞碎片同时增多.水稻经真空处理后,原生质体产量大幅度提高.通过正交实验设计得出如下结果:玉米叶肉细胞原生质体分离的最佳条件为:纤维素酶1.5%,离析酶0.5%,50 r/min酶解7h,100×g离心2 min收集,原生质体产量为7×106/g FW;小麦叶肉细胞原生质体分离的最佳条件为:纤维素酶1.5%,离析酶0.5%,50 r/min酶解5h,100×g离心2 min收集,原生质体产量为6×106/g FW;水稻叶肉细胞原生质体分离的最佳条件为:纤维素酶2.0%,离析酶0.7%,50 r/min酶解7h,1 000×g离心2 min收集,得到的原生质体产量为6×106/g FW.通过二乙酸荧光素染色发现原生质体活力均在90%以上.用PEG-Ca2+介导法将含有绿色荧光蛋白的质粒转化入原生质体,转化率可达50% ~80%.  相似文献   

20.
The formation of ethylene during isolation of mesophyll protoplastsfrom leaves of in vitro cultured sugarbeet (Beta vulgaris L.)seedlings was monitored. The addition of the lipoxygenase (EC1.13.11.12 [EC] ) inhibitor n-propyl gallate to the isolation mediumsignificantly reduced the amount and rate of ethylene production.The relevance of cell physiology on protoplast regenerationis discussed. Key words: Beta vulgaris L., protoplasts, ethylene, lipoxygenase inhibitor, regeneration  相似文献   

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