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51.
Rice cultivar evaluation for phosphorus use efficiency 总被引:12,自引:1,他引:11
Phosphorus deficiency is one of the most growth-limiting factors in acid soils in various parts of the world. The objective of this study was to screen 25 rice cultivars (Oryza sativa L.) at low, medium, and high levels of soil P. Number of tillers, root length, plant height, root dry weight and shoot dry weight were related to tissue P concentrations, P uptake and P-use efficiency. Shoot weight was found to be the plant parameter most sensitive to P deficiency. Significant cultivar differences in P use efficiency were found. Phosphorus use efficiency was higher in roots than shoots and decreased with increasing levels of soil P. Positive correlations were found among growth parameters such as plant height, tillers, root and shoot weight, and P content of roots and shoots. These results indicate selection of rice cultivars for satisfactory performance under low P availability can be carried out using shoot and root dry weight as criteria. 相似文献
52.
53.
J. Bastow Wilson 《Plant and Soil》1988,109(1):128-130
In two experiments, wheat plants growing in solutions of different nitrogen concentration were subjected to root pruning. In higher concentrations of nitrogen the growth rate was higher, and the proportional allocation of growth to shoot higher, but pruning did not affect the allocation of growth at either level of nitrogen. This result gives no support to Thornley's source-sink model of the control of shoot: root ratio. 相似文献
54.
Kallar grass is a highly salt-tolerant grass grown as a pioneer plant on alkaline, salt-affected soils in Pakistan. Nitrogen-fixing bacteria and kallar grass were found to be in close association, which was even root-zone specific: rhizoplane and endorhizosphere were colonized by two different populations. Among theAzospirillum isolates originating from the root surface, some were of a new species, now namedA. halopraeferens. To study plant-bacterium interactions, this natural kallar grass association was chosen. The possible role of bacterial chemotaxis and oxygen tolerance are discussed. 相似文献
55.
56.
Three axenic and rhizosphere microorganism-inoculated shortgrass steppe plant species were evaluated for possible differences in residual organic carbon and nitrogen present as sugars, organic acids and amino acids. IntroducedAgropyron cristatum was compared toA. smithii andBouteloua gracilis, which are dominant species in the native shortgrass steppe. These plants, grown for 90 days in root growth chambers, showed differences in residual organic carbon and nitrogen per gram of root, and rhizosphere microbe presence resulted in additional changes in these compounds. The root biomass ofB. gracilis was significantly increased with microbes present. TheAgropyron species had significantly lower amino acid levels with microbes present, while under the same conditions, theB. gracilis showed significant decreases in residual sugars. Based on the amino acids, sugars and organic acids, the C/N ratio of the sterileA. cristatum was higher than forB. gracilis. Rhizosphere microbe presence did not result in changes in these C/N ratios. These results suggest thatA. cristatum, with microbes present, will have lower levels of amino acids present, whileB. gracilis, with a lower C/N ratio, will have sugars used to a greater extent by the rhizosphere microbes. This resulted in the higher levels of residual soluble organic C and N in the rhizosphere ofB. gracilis, in comparison with the introducedA. cristatum. These differences may be critical in influencing the course of nutrient accumulation and plant competition in short-grass steppe communities, and in understanding basic aspects of plant-rhizosphere microorganism interactions. 相似文献
57.
R. Habib 《Plant and Soil》1988,108(2):267-274
A method is proposed for estimating the total length of a root system from sub-samples. This method is based on the measurement
of the length and diameter of small pieces of roots, and on the measurements of the bulk density of root sub-samples. It is
assumed that roots are cylinders with a given bulk density. The length and diameter of small root pieces are measured by image
analysis. A weighted quadratic mean (W.Q.M.) root diameter is then calculated and used in estimating the root length. This
W.Q.M. diameter is defined as the real mean diameter of an equivalent single root with the same length and volume as the tested
root system. The accuracy of prediction is demonstrated for one theoretical root system. The standard deviation of estimation
can be calculated using sampling simulations. 相似文献
58.
The expression of a lectin gene in pea (Pisum sativum L.) roots has been investigated using the copy DNA of a pea seed lectin as a probe. An mRNA which has the same size as the seed mRNA but which is about 4000 times less abundant has been detected in 21-d-old roots. The probe detected lectin expression as early as 4 d after sowing, with the highest level being reached at 10 d, i.e. just before nodulation. In later stages (16-d- and 21-d-old roots), expression was substantially decreased. The correlation between infection by Rhizobium leguminosarum and lectin expression in pea roots has been investigated by comparing root lectin mRNA levels in inoculated plants and in plants grown under conditions preventing nodulation. Neither growth in a nitrate concentration which inhibited nodulation nor growth in the absence of Rhizobium appreciably affected lectin expression in roots.Abbreviation cDNA
copy DNA
- poly(A)+RNA
polyadenylated RNA 相似文献
59.
Robert W. Ridge 《Journal of plant research》1988,101(4):427-441
The freeze-substitution method was applied toVicia hirsuta root hairs to test its effectiveness in improving preservation of the cell ultrastruture. Freeze-substitution almost certainly
represents more faithfully the structure of the hair cell. A previously unreported ‘pyriformis’ vesicle is described. Also
unique to freeze-substituted material are coated secretory vesicles; a smooth plasma membrane profile; mitochondrial ribosomes;
long microfilament bundles which are associated with vesicles, mitochondria, coated pits and coated vesicles; microtubule-associated
filaments; well-preserved coated vesicles and coated pits with enclosing rings; a pliciform nucleus. The results are discussed
in context of previous reports using conventional fixation techniques. 相似文献
60.
Improved media for normal human muscle satellite cells: Serum-free clonal growth and enhanced growth with low serum 总被引:5,自引:0,他引:5
Richard G. Ham Judy A. St. Clair Cecelia Webster Helen M. Blau 《In vitro cellular & developmental biology. Plant》1988,24(8):833-844
Summary We have developed a serum-free medium for clonal growth of normal human muscle satellite cells (HMSC). It consists of an optimized
nutrient medium MCDB 120, plus a serum-free supplement, designated SF, that contains epidermal growth factor (EGF), insulin,
dexamethasone, bovine serum albumin, and fetuin. Fibroblast growth factor was needed with dialyzed fetal bovine serum (dFBS)
as the only other supplement, but in media containing SF, it was only slightly beneficial, and was omitted from the final
medium without significant loss. Clonal growth of HMSC in MCDB 120 plus SF is as good as with 15% serum and 0.5% chicken embryo
or bovine pituitary extract. However, growth is further improved by use of a doubly-supplemented (DS) medium containing both
SF and 5% dFBS. Clonal growth of HMSC in the DS medium far exceeds that in previous media with any amount of serum, and monolayer
growth is at least equal to that in conventional media with higher levels of serum. Cells grown in these media exhibit little
differentiation, even when grown to high densities. However, they retain the capacity for extensive fusion and synthesis of
increased creatine kinase when transferred to a serum-free differentiation-promoting medium, such as Dulbecco's modified Eagle's
medium plus insulin. All experiments were done with clonal cultures of HMSC to insure that observed growth responses were
always those of muscle cells.
This research was supported by a grant from the Muscular, Dystrophy Association.
Editor's statement This article describes the optimization of both the basal nutrient medium and growth factor requirements
for human muscle cells in vitro. This system is critical for studies of normal muscle cell and molecular biology, as well
as for understanding diseases of muscle such as Duchenne, Muscular Dystrophy. 相似文献