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1.
A rapidly growing, maintainable, embryogenic suspension culture of Glycine max L. Merrill. has been generated. The culture consisted almost entirely of clumps of proliferating globular embryos with very little nonembryogenic tissues. The number and size of somatic embryo clumps were used to quantify growth of embryogenic tissues under various conditions. Initiation and proliferation of this embryogenic suspension culture were dependent on the inoculum, method of subculture, and composition of the subculture medium. Twenty to 50 mg of highly embryogenic, early-staged soybean tissue were inoculated into 35 ml of liquid culture medium containing 5 mg 1–1 2,4-D and either 15 mM glutamine or preferably 5 mM asparagine. Suspension cultures were subcultured at the same inoculum density every 4 weeks. The embryos matured and germinated following placement on solid media, resulting in consistent plant regeneration. 相似文献
2.
Summary The photosynthetic cell suspension culture of soybean [Glycine max (L.) Merr. cv. Corsoy] (SB-M) was successfully cryopreserved in liquid nitrogen using a preculture and controlled freezing
to −40° C (two-step) freezing method. The effective method included a preculture treatment with gradually increasing levels
of sorbitol added to the 3% sucrose already present in the medium. The cells were then placed in a cryoprotectant solution
[10% DMSO (dimethylsulfoxide) and 9.1% sorbitol, or 10% DMSO and 8% sucrose], incubated for 30 min at 0° C, cooled at a rate
of 1° C/min to −40° C, held at −40° C for 1 h, and then immersed directly into liquid nitrogen. The cells were thawed at 40°
C and then immediately placed in liquid culture medium. The cell viabilities immediately after thawing were 75% or higher
in all cases where cell growth resumed. The original growth rate and chlorophyll level of the cells was recovered within 40
to 47 d. If the sorbitol level was not high enough or the preculture period too short, growing cultures could not be recovered.
Likewise, survival was not attained with cryoprotectant mixtures consisting of 15% DMSO, 15% glycerol, and 9.1% sucrose or
15% glycerol and 8% sucrose. The successful method was reproducible, thus allowing long-term storage of this and certain other
unique photosynthetic suspension cultures in liquid nitrogen. 相似文献
3.
Transformation of soybean via particle bombardment of embryogenic suspension culture tissue 总被引:18,自引:0,他引:18
John J. Finer Michael D. McMullen 《In vitro cellular & developmental biology. Plant》1991,27(4):175-182
Summary Embryogenic suspension culture tissue of soybean (Glycine max Merrill.) was bombarded with particles coated with plasmid DNAs encoding hygromycin resistance andβ-glucuronidase (GUS). One to two weeks after bombardment, embryogenic tissue was placed in a liquid proliferation medium containing
hygromycin. Four to six weeks after bombardment, lobes of yellow-green, hygromycin-resistant tissue, which began as outgrowths
on brown clumps of hygromycin-sensitive tissue, were isolated and cultured to give rise to clones of transgenic embryogenic
material. In vivo GUS assays of hygromycin-resistant clones showed that the early outgrowths could be negative, sectored,
or positive for GUS activity. Transgenic, fertile plants could be routinely produced from the proliferating transgenic embryogenic
clones. Southern hybridization analyses confirmed stable transformation and indicated that both copy number and integration
pattern of the introduced DNA varied among independently transformed clones. Hybridization analysis of DNA from progeny plants
showed genetic linkage of multiple copies of introduced DNA. An average of three transgenic clones were obtained per bombardment
making this procedure very suitable for transformation of soybean. 相似文献
4.
Photoautotrophic growth of soybean cells in suspension culture IV. Free amino acid pools and the effect of nitrogen on chlorophyll levels 总被引:1,自引:0,他引:1
A photoautotrophic soybean suspension culture was used to study free amino acid pools during a subculture cycle. Free amino acid analysis showed that the intracellular concentrations of asparagine, serine, glutamine, and alanine reached peaks of 200, 10, 9 and 7 mM, respectively, at specific times in the 14-day subculture cycle. Asparagine and serine levels peaked at day 14 but glutamine level rose quickly after subculture, peaking at day three and then declined gradually. Roughly similar patterns were found in the conditioned culture medium although the levels were 1000-fold lower than those found in cells. Photoautotrophic (SB-P) and photomixotrophic (SB-M) cultures were quantitatively similar with regard to free asparagine and serine but not glutamine or free ammonia. Heterotrophic (SB-H) cells had 81–85% less free asparagine on day seven than did SB-M or SB-P cells. Hence, similar to the phloem sap of a soybean plant, asparagine, glutamine, alanine and serine were the predominant amino acids in photoautotrophic soybean cell cultures. Varying the amount of total nitrogen in culture medium for two subcultures at 10, 25, 50, and 100% Of normal levels showed that growth was inhibited only at the 10 and 25% levels but that growth on medium containing 50% of the normal nitrogen was as good as that on 100% nitrogen. Moreover, cellular chlorophyll content correlated exceptionally well with initial nitrogen content of the medium. Thus, the photosynthesis of SB-P cells was not limited by chlorophyll content. SB-P cells grown for two subcultures on 10% nitrogen contained very low free amino acid levels and only 1% of the free ammonia levels found in cells growing on a full nitrogen complement.Abbreviations SB-P
photoautotrophic soybean cells (no sucrose, high CO2, high light)
- SB-M
photomixotrophic soybean cells (1% w/v sucrose, high light)
- SB-H
heterotrophic soybean cells (3% sucrose, dark) 相似文献
5.
Summary Protoplasts were isolated seedling hypocotyls of soybean (Glycine max), and cultured in both liquid and agarose-solidified, modified K8P medium. Nuclear staining revealed that only 2% of protoplasts
lacked a nucleus, 93% contained a single nucleus, and 5% contained more than one. Maximum protoplast yields and subsequent
division frequencies, in liquid medium, were obtained from 5 days-old seedlings. Maximum division frequencies (54%) were obtained
from hypocotyl protoplasts plated at a density of 5×104 ml−1. Using different osmolality reduction régimes for liquid cultures, hypocotyl protoplasts developed into green, nodular callus,
similar to that which has previously given rise to shoot buds in perennialGlycine species. This tissue, however, did not produce shoot buds in soybean.
N. H. was supported by a SERC CASE studentship and a postdoctoral fellowship from Shell Research Ltd., Sittingbourne, Kent,
UK. 相似文献
6.
R. F. Denison T. R. Sinclair R. W. Zobel M. N. Johnson G. M. Drake 《Plant and Soil》1983,70(2):173-182
Summary A system for employing open-ended root chambers to measurein situ acetylene reduction rates under field conditions is described. Gas mixtures containing about 2 mbar acetylene were continuously
flowed through the chambers providing a continuous record of acetylene reduction. These chambers have been used to measure
acetylene reduction rates of soybeans during three growing seasons. The system has proved to be reliable with a high degree
of precision. The large amount of plant-to-plant variability observed in N2 fixation research has been confirmed by the data collected with this system. However, such variability in physiological studies
can be reduced by using a non-destructive system to compare the response of an individual plant with its rates before treatment. 相似文献
7.
Vitamin B12 (Cyanocobalamin) is one of the vitamins believed to be produced exclusively by microorganisms. Although soil is a rich source of vitamin B12, systematic study as to possible uptake of this vitamin by the plant roots is lacking. This study was undertaken to investigate, under water culture conditions, the uptake of [57Co]-cyanocobalamin by soybean (Glycine max (L.) Merr.). In the range of 10 to 3200 mol L–1, uptake of vitamin B12 was a linear function of the vitamin concentration in the nutrient solution. Depending on the vitamin concentration, 12 to 34% of the total absorbed vitamin was transported to the plant shoots, with proportionally more vitamin B12 transported at higher vitamin concentrations. Aeration of the rooting medium with nitrogen gas significantly increased the total uptake and the percentage of vitamin transported to the shoots. Addition of respiration inhibitor dinitrophenol to the nutrient solution did not affect the total uptake or the partitioning of the vitamin. Root temperature (5–30°C) did not affect the total uptake but significantly altered the partitioning of the vitamin between the roots and the shoots. Foliar-applied vitamin B12 was not translocated to any considerable degree to other plant parts, indicating that phloem transport does not contribute to the distribution of this vitamin within the plant. It is suggested that adding manure (which is rich in this vitamin) to the soil could increase soil and thus plant content of vitamin B12. This could be of importance in raising the intake of this vitamin by people living by choice or necessity on vegetarian diets who are usually threatened by vitamin B12 deficiency. 相似文献
8.
Maria de Lourdes Lucio Ferrarese Nilson Evlázio de Souza João Domingos Rodrigues Osvaldo Ferrarese-Filho 《Acta Physiologiae Plantarum》2001,23(4):421-427
The objective of this research was to investigate how the allelochemical ferulic acid affects the carbohydrate and lipid contents
of soybean roots cultivated in nutrient culture. The results presented revealed that ferulic acid has significant effects
on carbohydrates by the increase in xylose, fructose and sucrose and decrease in glucose, after 24 h treatment of roots. Ferulic
acid increased the contents of saturated and unsaturated fatty acids of the polar and non-polar lipid fractions. The results
may contribute as additional data to explain allelopathic effects caused by ferulic acid. 相似文献
9.
Root extracts of leek (Allium porrum L.) and soybean (Glycine max L. Merr.) showed trehalase activity which was inhibited by phloridzin and was several times higher than the activity of general -glucosidase. The activity had an acidic optimum. Trehalase activity in extracts of sporocarps and extraradical mycelium of the arbuscular mycorrhizal fungus Glomus mosseae Nicol. & Gerd. (Trappe & Gerd.) was higher than in root extracts and had an optimum at pH 7. Following inoculation with G. mosseae, trehalase activity increased in mycorrhizal roots above the levels observed in nonmycorrhizal roots. Irrespective of fungal colonization, root trehalase activity increased in the presence of Mg2+, decreased in the presence of Mn2+ and Zn2+, and was unaffected by Na2EDTA. 相似文献
10.
Neither the reduction of Fe(III) to Fe(II) by roots nor its induction by Fe-deficiency are unique characteristics of the reductive activities of roots. We show that chelated Mn(III) or chelated Cu(II), as well as chelated Fe(III), may be reduced by Fe-stressed roots of pea (Pisum sativum L.). Deficiency of Fe stimulated the reduction of Fe(III)EDTA about 20-fold, the reduction of Mn(III)CDTA about 11-fold, the reduction of Cu(II)(BPDS)2 about 5-fold, and the reduction of Fe(III)(CN)6 by only about 50%. Not only are metals other than Fe reduced as part of the Fe-stress response, but deficiencies of metals other than Fe stimulate the reductive activity of roots. We show that depriving peas or soybeans (Glycine max) of Cu or Zn stimulates the reduction of Fe(III). 相似文献
11.
P. A. Stephens J. M. Widholm C. D. Nickell 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》1990,80(3):417-420
Summary The objectives of this study were: (i) to develop a tissue culture technique for the evaluation of Fe efficiency in soybean, and (ii) to compare the laboratory technique with field Fe chlorosis scores. Nineteen genotypes that had low and high levels of Fe efficiency were evaluated in the laboratory and at five field locations. Friable callus was induced from epicotyl sections, weighed, and placed on two different modified Murashige and Skoog media; one low in -naphthaleneacetic acid and the other low in Fe. Callus growth was rated as lack of growth compared to respective controls. As an example, Fe-inefficient cultivars (Asgrow A3205 and Pride B216) had significantly reduced growth compared to Fe-efficient germ plasm lines (All and A14). Correlation between the laboratory and field chlorosis rating was highest for the low auxin medium (r
2 = 0.78), although correlation for the low Fe medium was also significant (r
2 = 0.72). These results show that in vitro evaluation for Fe efficiency can be a useful tool for plant breeders. 相似文献
12.
Histology of embryogenic responses in soybean anther culture 总被引:3,自引:0,他引:3
In order to clarify the embryogenic responses in soybean anther culture, anthers of four cultivars were cultured under known conditions to trigger androgenic response. A histological study was performed with anthers in vivo and with approximately 100 explants sampled after 9, 12, 15, 18, 21, 30 and 45 days of culture. In vitro culture triggered the frequent accumulation of phenolic compounds on the locular and anther surfaces, and also caused the destruction of cells and tissues in complex structure such as the tapetum, microspores and pollen grains. Somatic embryogenesis of unicellular origin was observed from the epidermis and the middle layer, and of multicellular origin from connective calluses. No androgenic response could be observed in the anthers of these four soybean genotypes, in the medium and conditions indicated. We point out to the need of changing the approach to the study of androgenesis in soybean, either by using culture conditions unfavourable to the proliferation of diploid tissues, or by culturing isolated microspores. 相似文献
13.
The effect of aluminium (Al) on root elongation was studied in solution culture and sand culture. Compared to solution culture, in sand culture a ten times higher Al supply was necessary to inhibit root elongation to a comparable degree. This was due to a much lower Al uptake into the 5 mm root tips in sand culture. Fe concentrations in root tips were also lower in sand culture. Ca concentrations were higher and less depressed by Al, whereas Mg and K concentrations were not affected by the culture substrate. Regressions of Al concentrations in root tips versus inhibition of root elongation by Al revealed root damage at lower Al concentrations in sand culture. The effect of culture substrate on Al tolerance was independent of N source and could also be shown in flowing solution culture with and without sand. The results indicate that mechanical impedance in sand culture decreased Al uptake. This may be due to enhanced exudation of organic complexors thus reducing activites of monomeric Al species. 相似文献
14.
Hydrolysis of organic phosphates by corn and soybean roots 总被引:1,自引:0,他引:1
Because of the importance of organic phosphates as sources of P for plants, this work was performed to study the hydrolysis
of nine organic phosphates by sterile, intact corn (Zea mays L.) and soybean (Glycine max L.) roots. Results showed that the rates of hydrolysis ofp-nitrophenyl phosphate (PNP) in buffered solutions by roots of three varieties of corn and three varieties of soybean ranged
from 13 to 22 μmol PO4−P g−1 root h−1 and from 2.1 to 2.2 μmol PO4−P 0.1 g−1 root h−1, respectively. The average rate of hydrolysis of PNP in nonbuffered solutions was 2- to 3-fold lower for corn roots and 6-
to 10-fold lower for soybean roots as compared with those obtained with buffered solutions. The orthophosphate released from
hydrolysis of organic P compounds in buffered solutions during a 48-h incubation of corn roots showed that the maximum rate
of hydrolysis of PNP was 4 to 6 times greater than the commonly used substrates: α- and β-glycerophosphates, phenolphthalein
diphosphate, and glucose-6-phosphate. The rates of hydrolysis of glucose-6-phosphate and glucose-1-phosphate were similar
and about 6- to 12-fold lower than that of PNP. Phosphoethanolamine and phosphocholine were hydrolyzed slightly, ando-carboxyphenyl phosphate was not hydrolyzed. The rates of hydrolysis of organic P compounds in nonbuffered solutions by corn
and soybean roots were 1 to 3 and 1 to 10 times lower than those in buffered solutions, respectively. The trends in rates
of hydrolysis by soybean roots of buffered organic P substrates were similar to those observed with corn roots, with the exception
of glucose-1-phosphate and phosphoethanolamine. 相似文献
15.
Michael E. Horn Barry A. Martin Jack M. Widholm 《Plant Cell, Tissue and Organ Culture》1992,30(2):85-91
We have attempted to optimize the conditions under which a photoautotrophic soybean suspension culture line (SB-P; Horn et al. 1983) is grown. Magnesium, phosphate, and calcium concentrations were varied individually from one-tenth to five times the normal level found in the Murashige and Skoog (1962) recipe. After two subcultures, only phosphate at one-tenth the normal level caused the cells to show a substantial reduction in fresh and dry weight increase and chlorophyll level. Nitrate and ammonium levels were inversely varied in 20 millimolar increments of potassium nitrate and ammonium chloride. Neither N-source alone could support growth through two subcultures. A ratio of 40 millimolar potassium nitrate to 20 millimolar ammonium gave significantly better fresh and dry weight increases than did a ratio of 20:40 or 30:30 but the chlorophyll level was unchanged. The minor salts as a group resulted in a small improvement in growth when provided at twice the normal level.Indole-3-acetic acid at five milligrams per liter resulted in significantly better fresh and dry weight increases than did -naphthaleneacetic acid at any level but the final chlorophyll level was not changed. There was no correlation between growth and kinetin level and this resulted in the discovery that SB-P cells are cytokinin-autotrophic, as are heterotrophic SB cells, with regard to both growth and greening ability. Growing SB-P cells under a 14 h:10 h day:night photoperiod resulted in a slow but inevitable death. Increasing the carbon dioxide level to 10% for four weeks gave no increase in SB-P cell growth or chlorophyll level, but SB-P cells would not grow with carbon dioxide levels below 0.4%. The results clearly show that SB-P cells, despite their tenuous existence, are capable of adapting to a wide range of culture conditions. A simplified and improved culture medium for photoautotrophic cultures is given.Abbreviations SB-P
photoautotrophic soybean cells
- SB-M
photomixotrophic soybean cells
- SB-H
heterotrophic soybean cells 相似文献
16.
17.
The distribution of nodules of soybean (Glycine max (L.) Merr.) cultivar Bragg and the supernodulating mutant derivative nts382 was examined on the primary root relative to the first emerging lateral root, and on laterals relative to the base of the roots of plants grown in sand-vermiculite. Mutant nts382 nodulates profusely even in the presence of nitrate and appears defective in a systemic autoregulatory response that regulates nodule number in soybean. Nodules were clustered on primary roots about the first 4 cm down from the first emerging lateral root in both genotypes. Nodulation profiles showed reduced nodulation in younger and older regions of the primary root. Similarly, nodules appeared clustered close to the base of the lateral roots. Decreasing inoculum dose shifted nodule emergence to younger regions of the primary root and to lateral roots emerging in younger portions of the primary root. Our results indicate that the supernodulating mutant is able to regulate nodule number in both primary and lateral roots in the particulate matrix. 相似文献
18.
James A. Bunce 《Photosynthesis research》1982,3(4):307-311
Daytime rates of net photosynthesis of upper canopy leaflets of soybeans were compared on 17 days for leaflets exposed to air at the ambient humidity and at a higher humidity. Leaflets at the higher humidity had higher rates of net photosynthesis on 16 of the 17 days. The daily total of net photosynthesis of leaflets at the higher humidity was on average 1.32 times that for leaflets at ambient humidity. A strong limitation of net photosynthesis by ambient humidity was found throughout the growing season. 相似文献
19.
The photosynthetic properties of two commonly used suspension cultured lines, embryogenic and photoautotrophic (PA, SB-1 line) cells of soybean [Glycine max (L.) Merr.] were characterized. We found that compared to the dark green PA cells, the light green embryogenic cells contained fewer and smaller plastids with less-developed thylakoid membranes. The embryogenic cells also contained much lower contents of both chlorophyll and the large subunit of ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco; EC 4.1.1.39) protein, an undetectable level of Rubisco small subunit protein, and a very low rate of photosynthesis. While the DNA contents of the nuclear genomes were similar in these two types of cultured cells, the embryogenic cells possessed a markedly lower content of plastid DNA. The 18-year-old PA suspension culture, SB-1, continues to evolve with higher Rubisco and plastid DNA contents than leaves, and with small decreases in nuclear DNA content that appears to mimic changes in chromosome numbers. These findings may prove useful in the application of plastid transformation, particularly when non-leaf or non-green tissues must be used as targets for transformation and plant regeneration. 相似文献
20.
Polyamines and proline are affected by cadmium stress in nodules and roots of soybean plants 总被引:7,自引:0,他引:7
The effect of moderate (50 M) and high (200 M) doses of Cd were studied in relation to polyamine (Pas) metabolism, proline level and the glutamine synthetase/glutamate synthase system (GS/GOGAT) activity in nodules and roots of soybean plants during 6 days of treatment. The lower Cd concentration increased putrescine (Put) in both nodules and roots, while 200 M Cd increased Spm only in nodules and Put in roots. Spermidine (Spd) decreased in roots under both Cd concentrations. Arginine decarboxylase (ADC) and ornithine decarboxylase (ODC) were both involved in Put biosynthesis in roots. In nodules, Put formation could mainly be attributed to ODC activity. Diamine oxidase (DAO) activity was severely reduced by 50 and 200 M Cd either in nodules or roots. The GS/GOGAT system activity was depressed either with 50 or 200 M Cd, but most significantly with the highest metal concentration. Under 200 M Cd, GS activity decayed to 25% or 60% of the control in nodules and roots, respectively, while GOGAT decreased 85% in nodules and 79% in roots by day 4 of treatment. Ammonium increased greatly in nodules (200% over the controls) and roots (100%) under 200 M Cd. Proline concentration increased significantly in nodules and roots under both Cd treatments, more markedly under 200 M Cd. The relationship between Pas and proline accumulation and nitrogen assimilation is discussed. 相似文献