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61.
Nine novel microsatellite loci were isolated from Oplegnathus fasciatus by screening an enriched genomic library using nonradioactive PCR (polymerase chain reaction) techniques. All loci were found to be polymorphic with an average of 8.1 alleles per locus (range 3–15). The mean observed and expected heterozygosities were 0.71 (range 0.40–1.00) and 0.74 (range 0.50–0.90), respectively. Two loci showed significant Hardy–Weinberg disequilibrium at the P < 0.05 level. The high variabilities revealed in this study suggest that these microsatellite loci should provide useful markers for genetic variation monitoring of O. fasciatus. 相似文献
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WILLARD Z. PARK 《American anthropologist》1938,40(4):622-638
63.
A fungal vacuolation factor causes vacuolation when appliedto the plasmodium ofP. polycephalum, and also results in negativechemotaxis of the plasmodium. This, and the relationship betweenthe normal distribution of vacuoles in the plasmodium and itsdirection of locomotion, suggests that a similar factor maybe operative in determining polarity. A vacuolation factor hasbeen extracted from P. polycephalum. A vacuolar-reticular system in the cytoplasm shows a cycle ofcontractions and expansions that, in the advancing lobe at least,is usually in phase with the oscillating streaming pattern ofthe plasmodium in that region. The possible significance ofthese findings for the mechanism of streaming is discussed. 相似文献
64.
From either a mycelial or a conidial inoculum the fungus survivedin soil as inactive chlamydospores. The level of its soil populationat equilibrium was too low to be studied by dilution plating.Plant materials placed on or beneath the surface of inoculatedsoil were colonized deeply by the fungus, which produced conidiaon them. Dispersal of conidia can occur with water movementin soil, and at right angles to, as well as in the directionof, that movement. No evidence was found of dispersal of thefungus in soil by continuous growth, even over continuous stretchesof organic matter. This finding was related to the inabilityof the fungus to colonize those organic materials that werepreviously colonized by other organisms from the soil, unlessits inoculum potential were greatly augmented. The fungus isthus seen to be a pioneer fungus. The strain used here grewoutwards a short distance from colonized organic food basesin the soil, leaving in the soil resting spores which couldcolonize fresh pieces of organic material subsequently addedthere. The organism could thus spread by discontinuous growthon successively available, fresh, organic materials. 相似文献
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66.
JAE MIN CHUNG KWANG WOO PARK CHONG‐SEO PARK SUNG‐HO LEE MYONG GI CHUNG MI YOON CHUNG 《Botanical journal of the Linnean Society. Linnean Society of London》2009,160(2):119-129
Many terrestrial orchids are historically rare and occur in small, spatially isolated populations. Theory predicts that such species will harbour low levels of genetic variation within populations and will exhibit a high degree of population genetic divergence, primarily as a result of genetic drift. If the origin of the present‐day populations is relatively recent from the same genetically depauperate source population, a complete lack of genetic differentiation between conspecific populations is expected. If a terrestrial orchid was historically common with moderate or high levels of genetic diversity, but has experienced more recent anthropogenic disturbance as a result of over‐collection, it would still exhibit initial levels of genetic variation within populations and a low degree of genetic divergence between populations. To test these predictions, we examined the genetic diversity in six populations (N = 131) of the historically and currently rare Cypripedium japonicum and in four populations (N = 94) of the historically common but now rare C. macranthos from South Korea. Fourteen putative allozyme loci resolved from eight enzyme systems revealed no variation either within or among populations of C. japonicum, which supports the first prediction. In contrast, populations of C. macranthos harboured high levels of genetic variation (mean percentage of polymorphic loci %P = 46.7; mean expected heterozygosity He = 0.185) and exhibited a low degree of population genetic divergence (GST = 0.059), supporting the second prediction. The lack of genetic variation both within and among conspecific populations of C. japonicum may suggest that populations originated from the same genetically depauperate ancestral population. The high levels of genetic diversity maintained in populations of C. macranthos suggest that the collection‐mediated decrease in the number of individuals is still too recent for long‐term effects on genetic variation. Based on current demographic and genetic data, in situ and ex situ conservation strategies should be provided to preserve genetic variation and to ensure the long‐term survival of the two species in the Korean Peninsula. © 2009 The Linnean Society of London, Botanical Journal of the Linnean Society, 2009, 160 , 119–129. 相似文献
67.
KYUNG‐HO MA KWANG‐HO KIM ANUPAM DIXIT JAE‐WOONG YU JONG‐WOOK CHUNG JEONG‐HEUI LEE EUN‐GI CHO TAE SAN KIM YONG‐JIN PARK 《Molecular ecology resources》2006,6(3):689-691
A microsatellite‐enriched library of Job's tears (Coix lacryma‐jobi L. var. Ma‐yuen Stapf) was constructed using a modified biotin–streptavidin capture method. After screening, 17 polymorphic microsatellites were used for diversity analysis among 30 Job's tears accessions. The number of alleles ranged from one to five alleles per locus with an average of 2.8 alleles. Expected heterozygosity (HE) and polymorphism information content (PIC) ranged from 0 to 0.676 and from 0 to 0.666, respectively. The newly developed microsatellite markers are expected to be very valuable tools for evaluation of genetic diversity among large germplasm collection of Job's tears present in our Korean Gene Bank. 相似文献
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69.
Root growth, developmental changes in the apex, and hydraulic conductivity for Opuntia ficus-indica during drought 总被引:6,自引:0,他引:6
Developmental changes in the root apex and accompanying changes in lateral root growth and root hydraulic conductivity were examined for Opuntia ficus-indica (L.) Miller during rapid drying, as occurs for roots near the soil surface, and more gradual drying, as occurs in deeper soil layers. During 7 d of rapid drying (in containers with a 3-cm depth of vermiculite), the rate of root growth decreased sharply and most root apices died; such a determinate pattern of root growth was not due to meristem exhaustion but rather to meristem mortality after 3 d of drying. The length of the meristem, the duration of the cell division cycle, and the length of the elongation zone were unchanged during rapid drying. During 14 d of gradual drying (in containers with a 6-cm depth of vermiculite), root mortality was relatively low; the length of the elongation zone decreased by 70%, the number of meristematic cells decreased 30%, and the duration of the cell cycle increased by 36%. Root hydraulic conductivity ( L P ) decreased to one half during both drying treatments; L P was restored by 2 d of rewetting owing to the emergence of lateral roots following rapid drying and to renewed apical elongation following gradual drying. Thus, in response to drought, the apical meristems of roots of O. ficus-indica near the surface die, whereas deeper in the substrate cell division and elongation in root apices continue. Water uptake in response to rainfall in the field can be enhanced by lateral root proliferation near the soil surface and additionally by resumption of apical growth for deeper roots. 相似文献
70.