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31.
Assignment of the pepsinogen gene complex (PGA) to human chromosome region 11q13 by in situ hybridization 总被引:5,自引:0,他引:5
The genes coding for human pepsinogen (PGA3, PGA4, and PGA5) were assigned to chromosome region 11q13 by in situ hybridization. Previously we localized the PGA gene complex to a centromeric region of chromosome 11 (p11----q13) by Southern blot analysis of mouse-human somatic cell hybrids. Our in situ hybridization results confirm this assignment and further localize the genes to a smaller region on the long arm. 相似文献
32.
The genes coding for insulin-like growth factors I and II and epidermal growth factor have been localized to human chromosomes 12q22----q24.1, 11p15, and 4q25----q27, respectively. 相似文献
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At least two thyroid hormone receptor (hTR) genes are present in humans, but the significance of this multiplicity is unknown. These receptors could have differences in tissue distribution or possess different functions. We studied the distribution and abundance of three hTR mRNAs (hTR beta, hTR alpha 1, and hTR alpha 2) by Northern blot analysis. Three mRNAs were expressed in all tissues examined. hTR beta was strongly expressed in brain and prostate predominantly as a 10.0-kilobase (kb) mRNA. This mRNA was also expressed in thyroid and was much less abundant in liver, kidney, placenta, tonsil, and spleen. hTR alpha 1 is represented by two mRNAs with sizes of 6.0 and 3.2 kb. The 6.0-kb mRNA was constantly less abundant than the 3.2-kb mRNA. hTR alpha 2 was detected as a single mRNA with a size of 3.2 kb, using a probe unique for this mRNA. Both hTR alpha 1 and hTR alpha 2 were strongly expressed in brain, prostate, and thyroid and much less in other tissues. The relative amounts of the three hTR mRNAs were roughly parallel in each tissue. It is of interest that none of these hTRs was abundant in liver, which is the major thyroid hormone-responsive organ. Another hTR may be present in liver. 相似文献
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Shiro Tsuyuzaki 《Ecological Research》1989,4(2):167-173
In 1987, a study on buried seed populations was conducted in the crater basin of Mt. Usu, a volcano located in northern Japan,
where the vegetation had beeen almost completely destroyed by eruptions in 1977 and 1978. The former vegetation had consisted
of grassland and broad-leaved forest. In the areas formerly occupied by this grassland and forest, 2128.0 and 1985.3 seeds
per square meter, respectively, were extracted from 12 blocks of the former topsoil using a floattion method. This revealed
that many seeds were still viable even after ten years of burial under thick volcanic deposits. The seeds were distributed
more in sandy soil than in rocky soil of the former topsoil. Twenty-five species, most of which favored grassland, were detected
in both the former grassland and forest. From comparison of α-and β-diversities between the grassland and forest, the structure
of the buried seed population was considered likely to have been more diverse in the forest than in the grassland. The determinants
of composition of the buried seed populations were discussed with reference to the former vegetation and soil characteristics. 相似文献
40.
Shiro Tsuyuzaki 《Journal of plant research》1989,102(4):511-520
Soon after the 1977–78 eruptions of the volcano Usu, there were created many gullies in which former topsoil, i.e., well-developed
soil accumulated before the eruptions, was eroded in the crater basin, whereas the outside of the gully was covered with thick
volcanic deposits. The short-dispersal-seed plants were the most abundant in the inside of gully where the former topsoil
was exposed, however, they have not immigrated from external environments. The germination tests of the seeds extracted from
the former topsoil demonstrated that viable seeds were buried at 1683.3/m2 for 9 years after the eruptions. At least, 12 herbaceous species, e.g.,Rumex obtusifolius, Geum macrophyllum var.sachalinense andPoa annua, were derived from the buried seeds in the former topsoil. Their contribution to revegetation was estimated to be 40.0% in
the inside of gully where the former topsoil was exposed in 1983, suggesting that buried seeds are one of the most important
seed source for revegetation even in the case of a volcano which produced pumice and ash by eruption. 相似文献