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In the framework of a willow rust research project, it was necessary to include vegetatively propagated plant material of selected sallow trees (Salix caprea L.) into biotests for identification of pathotypes. Since it was not possible to root sufficient clonal plants by conventional cutting propagation, the applicability of tissue culture methods was tested. From 10 selected donor trees of Salix caprea newly sprouted shoots were harvested and transferred to nutrient media after surface disinfection. The cultures were grown at 20--22 °C, illuminated with warm-white fluorescent tubes. The majority of shoot tips and nodal segments died during the first month, but only with nursery-grown plants this was caused by bacteria contamination. Two clones could be established easily on hormone-free medium. Five clones could be initiated only after repeated subcultures on various media variants. Three clones failed completely. Different basic media compositions were tested and Woody Plant Medium, supplemented with 0.1% activated charcoal, proved to be best for most of the sallow clones. Well developed rooted plantlets were used in vitro for microcutting propagation. The resulting plants were transferred to soil and could be included in the rust screening program after acclimatising. The applicability of micropropagation for selected Salix caprea donor trees was strongly depending on the genotype. But the comparison of results from microcuttings with conventional cutting propagation showed that these methods were successful for different clones each.  相似文献   
3.
This study reports a protocol for successful micropropagation of Penthorum chinense using nodal explants on Murashige and Skoog (MS) medium supplemented with 6-benzyladenine (BA) or kinetin (Kn). The presence of BA promoted a higher rate of shoot multiplication than Kn. Maximum multiple shoot formation was observed in 59.2% of nodal explants cultured on MS medium supplemented with 2.0 mg l−1 BA after 6 wk. After subculture for 4 wk, the maximum number of shoots (6.4) was obtained on a medium with 2.0 mg l−1 BA, but shoots were too short and not suitable for micropropagation. The taller shoots that regenerated in the presence of lower BA concentration (1.0 mg l−1) were selected for root induction study. Most shoots (98.8%) rooted in the presence of 0.5 mg l−1 indole-3-acetic acid after 3 wk, with each shoot forming an average of 10.0 roots. Plantlets were transferred to soil and successfully acclimatized.  相似文献   
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Encapsulation technology is an exciting and rapidly growing area of biotechnological research. This has drawn tremendous attention in recent years because of its wide use in conservation and delivery of tissue cultured plants of commercial and economic importance. Production of synthetic seeds by encapsulating somatic embryos, shoot buds or any other meristmatic tissue helps in minimizing the cost of micropropagated plantlets for commercialization and final delivery. In most of fruit crops, seed propagation has not been successful because of heterozygosity of seeds, minute seed size, presence of reduced endosperm, low germination rate, and also some are having seedless varieties. Many species have desiccation-sensitive intermediate or recalcitrant seeds and can be stored for only a few weeks or months. Under these circumstances, increasing interest has been shown recently to use encapsulation technology for propagation and conservation. Many fruit plants are studied worldwide for breeding, genetic engineering, propagation, and pharmaceutical purposes. In this context, synthetic seeds would be more applicable in exchange of elite and axenic plant material between laboratories and extension centers due to small bead size and ease in handling. Due to these advantages, interest in using encapsulation technology has continuously been increasing in several fruit plant species. The purpose of this review is to focus upon current information on development of synthetic seeds in several fruit crops.  相似文献   
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The age structures of both native and transplanted populations of the perennial herb, trout lily (Erythronium americanum), were analysed and found to have age-independent mortality rates. Cohort survival was greatest in populations growing on hardwood forested flood plains (60%), less in populations from gently sloping terraces with pit-and-mound microrelief (53%) and smallest (45%) for colonies on slopes steeper than 15°. The former habitat-type is the optimum for trout lily in Nova Scotia and in it the proportion of flowering bulbs can reach 35%. The second named habitat is widespread and characterised by fewer flowering bulbs (5–10%). In the latter habitat flowering bulbs are uniformly rare. Trout lily bulbs tend to be sterile until at least their eighth year. The high mortality rates of populations on steeply sloping, hardwood forested ground ensure minimal survival of bulbs beyond their sixth year. In the other two named habitats sufficient numbers of bulbs reach ages of 8 or 9 years for some to make the translation from the sterile to the flowering form. In all the habitats studied in Nova Scotia, propagation is typically by either runners or, less importantly, daughter bulbs, with the peak of activity in the bulbs third and fourth years. The plants of flood plains showed the greatest rates of vegetative propagation, by cohort, but many of the bulbs from colonies growing on steep slopes lacked runners or daughter bulbs. As all bulbs for the transplant experiments came from a single clone it can be concluded that trout lily plants in Nova Scotia have a sufficiently large genetic endowment for them to behave in the same manner as native populations of the species in the several habitats represented in the province.The figures were drafted in the cartography section of the University of Canterbury. The National Research Council of Canada supported the research with a series of grants.  相似文献   
6.
Summary The formation and subsequent growth of roots by cuttings of poinsettia, hydrangea, rose and azalea in various propagation media, Jiffy-7, Jiffy-9 and Grodan under different conditions of aeration was investigated. The interrelationships of the effects of air content of the media, temperature and light intensity on the rooting of poinsettia cuttings was also studied.With low air contents (0 cm moisture tension) in the propagation media the formation and growth of roots was strongly inhibited. The rooting performance of rose appeared to be less affected by the poor aeration. Increasing air content improved rooting but best results were obtained at moisture tensions of 4 to 8 cm. Rooting seems to be better correlated with oxygen diffusion rate (ODR) than with air content.For poinsettia cuttings the optimum temperature for rooting was 24 to 28°C. At low temperatures rooting was delayed while at higher temperatures it was almost completely inhibited. Callus formation increased with temperature but decreased with increasing moisture tension. Conditions which induced large callus formation inhibited root formation.High light intensity during rooting reduced overall rooting performance and the inhibition was most pronounced in conjunction with high moisture tensions.Report No. 255.  相似文献   
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We carried out an ecosystem service (ES) assessment at Soto de Pajares, a 400 ha active gravel quarry site located close to protected areas in the southeast of the Community of Madrid, Spain. The currently approved restoration plan is for quarry‐made excavations to be restored back to agricultural land. However, the site has been identified as being important for nature, so different restoration strategies should be considered. To better understand how these compare in terms of ES provision, which had not previously been done at mineral extraction sites in Spain, we used an established toolkit: the Toolkit for Ecosystem Service Site‐based Assessments (TESSA). We compared the agriculture‐focused restoration plan and two nature‐focused alternative scenarios, one without public access (conservation scenario) and the other with public access (compromise scenario). Monetary estimations of the value of agricultural production, climate change mitigation, and recreation were calculated in three scenarios. Results indicated that the compromise scenario provided the greatest annual value (€91,409), mainly due to its potential visitors, surpassing both agricultural (€68,504) and conservation (€48,556) scenarios. Considering the higher costs associated with restoring sites to agricultural production, nature conservation may be an attractive option for extraction companies. The use of TESSA at this site has provided valuable information to quarry managers to help guide their decision‐making.  相似文献   
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《Cryobiology》2015,71(3):217-225
The development of a vitrification method for cryopreservation of embryogenic lines from mature holm oak (Quercus ilex L.) trees is reported. Globular embryogenic clusters of three embryogenic lines grown on gelled medium, and embryogenic clumps of one line collected from liquid cultures, were used as samples. The effect of both high-sucrose preculture and dehydration by incubation in the PVS2 solution for 30–90 min, on both survival and maintenance of the differentiation ability was evaluated in somatic embryo explants with and without immersion into liquid nitrogen. Growth recovery of the treated samples and ability to differentiate cotyledonary embryos largely depended on genotype. Overall, high growth recovery frequencies on gelled medium and increase of fresh weight in liquid medium were obtained in all the tested lines, also after freezing. However, the differentiation ability of the embryogenic lines was severely hampered following immersion into LN. Two of the embryogenic lines from gelled medium were able to recover the differentiation ability, one not. In the lines with reduced or no differentiation ability, variation in the microsatellite markers was observed when comparing samples taken prior to and after cryopreservation. The best results were achieved in the genotype Q8 in which 80% of explants grown on gelled medium differentiated into cotyledonary embryos following cryopreservation when they were precultured on medium with 0.3 M sucrose and then incubated for 30 min in the PVS2 solution. Explants of the same genotype from liquid medium were unable to recover the differentiation ability. A 4-weeks storage period both in liquid nitrogen and in an ultra-low temperature freezer at −80 °C was also evaluated with four embryogenic lines from gelled medium using the best vitrification treatment. Growth recovery frequencies of all lines from the two storage systems were very high, but their differentiation ability was completely lost.  相似文献   
9.
The problem of paradoxically varying propagation velocities of action potentials in the conduction pathways of higher plants is considered. Possible reasons underlying this phenomenon are discussed.  相似文献   
10.
Three varieties of Hosta (Striptease, Minuteman and Stiletto) at four densities (40, 80, 120 and 200 explants per litre) were micropropagated on semi-solid agar and a thin-film liquid system with intermittent wetting of plant tissue. The mechanics of wetting by a small wave front required a larger rectangular vessel (11 × 27=297 cm 2) compared to the common cylindrical baby food jar (18 cm 2). Plants multiplied more rapidly in the agitated thin-film system than on agar. Lower plant densities increased rates of multiplication in liquid, but had little or no effect on multiplication rate on agar. Increasing plant density lowered the overall multiplication rate, but yielded greater numbers of plants per vessel. Yield, tabulated for utilization of shelf-space in growth room, was greater at all densities in rectangular vessels of liquid than conventional jars of agar media. Increased plant density lowered the sugar residual in media following the culture cycle and liquid media had less residual sugar than agar media. A liquid medium with 50 g l–1 sucrose was concentrated enough so that sugar depletion did not limit growth, even at the highest densities. The liquid system allows the technician to skip the step of manually spacing and orienting the freshly cut bud tissue at the transfer station. Harvesting 75–100 plants per vessel from the large rectangular vessels resulted in most efficient use of technician time. Plants from liquid and agar acclimatized to greenhouse. Increased multiplication, space utilization, sugar availability and worker efficiency was demonstrated to be greater in thin-film liquid than more conventional agar-based system.  相似文献   
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