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The formation of effective root nodules on a non-nodulating line (T201) of soybean (Glycine max (L.) Merr.,) was induced by a treatment with 2,4-dichlorophenoxyacetate (2,4-D). The induced nodules, inoculated with mixed Bradyrhizobium japonicum strains A1017 and IRj2101, had a normal internal structure, red in colour and the cells being filled with bacteroids. Externally, the induced nodules were of unusual shape, being paired or gourd-like in form and were attached to thickened roots. The nodules were capable of acetylene reduction (3.1–3.5 moles g-1 fresh weight nodules h-1), allowing the growth of plants with dark green leaves. 相似文献
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Yasuo Nagasawa Shoichiro Kurata Hiroto Komano Shunji Natori 《Development, growth & differentiation》1993,35(3):331-340
Previously, we reported autocrine involvement of Sarcophaga lectin in the development of Sarcophaga imaginal discs (Kawaguchi et al. , Dev. Biol. 144 , 86–93 (1991)). In this study, we purified Sarcophaga lectin binding protein from the membrane fraction of cultured embryonic cells of Sarcophaga to near homogeneity and raised a monoclonal antibody against it. Histochemical analysis using the monoclonal antibody revealed that this binding protein is distributed heterogeneously on the surface of leg imaginal discs. This binding protein was especially clearly localized in the central region of the basal side of leg discs which forms the junction between the leg and body, suggesting the participation of Sarcophaga lectin in morphogenesis of the basal region of the developing leg. 相似文献
4.
Possible Involvement of Phosphorylation of Occludin in Tight Junction Formation 总被引:21,自引:3,他引:18 下载免费PDF全文
Akira Sakakibara Mikio Furuse Mitinori Saitou Yuhko Ando-Akatsuka Shoichiro Tsukita 《The Journal of cell biology》1997,137(6):1393-1401
Occludin is an integral membrane protein localizing at tight junctions in epithelial and endothelial cells. Occludin from confluent culture MDCK I cells resolved as several (>10) bands between 62 and 82 kD in SDS-PAGE, of which two or three bands of the lowest Mr were predominant. Among these bands, the lower predominant bands were essentially extracted with 1% NP-40, whereas the other higher Mr bands were selectively recovered in the NP-40–insoluble fraction. Alkaline phosphatase treatment converged these bands of occludin both in NP-40–soluble and -insoluble fractions into the lowest Mr band, and phosphoamino acid analyses identified phosphoserine (and phosphothreonine weakly) in the higher Mr bands of occludin. These findings indicated that phosphorylation causes an upward shift of occludin bands and that highly phosphorylated occludin resists NP-40 extraction. When cells were grown in low Ca medium, almost all occludin was NP-40 soluble. Switching from low to normal Ca medium increased the amount of NP-40–insoluble occludin within 10 min, followed by gradual upward shift of bands. This insolubilization and the band shift correlated temporally with tight junction formation detected by immunofluorescence microscopy. Furthermore, we found that the anti–chicken occludin mAb, Oc-3, did not recognize the predominant lower Mr bands of occludin (non- or less phosphorylated form) but was specific to the higher Mr bands (phosphorylated form) on immunoblotting. Immunofluorescence microscopy revealed that this mAb mainly stained the tight junction proper of intestinal epithelial cells, whereas other anti-occludin mAbs, which can recognize the predominant lower Mr bands, labeled their basolateral membranes (and the cytoplasm) as well as tight junctions. Therefore, we conclude that non- or less phosphorylated occludin is distributed on the basolateral membranes and that highly phosphorylated occludin is selectively concentrated at tight juctions as the NP-40–insoluble form. These findings suggest that the phosphorylation of occludin is a key step in tight junction assembly. 相似文献
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Nucleic acid metabolism in cold-treated wheat embryos 总被引:1,自引:0,他引:1
The incorporation of 32P into nucleic acid fractions separatedon a MAK column was compared for normally germinated and cold-treatedwheat embryos. 32P accumulation in DNA fraction was decreasedby cold treatment, although that in the RNA fractions was slightlypromoted. The synthesis of the fraction, probably mRNA, elutedafter the peak of heavy rRNA was enhanced in cold-treated embryosand suppressed when the embryos were cold-treated in the presenceof 8-azaguanine, an inhibitor of vernalization. (Received May 2, 1975; ) 相似文献
7.
Embryos excised from winter wheat grains were vernalized for1050 days with or without sugar (sucrose). Determinationswere made of fresh weight, protein-nitrogen, amino-nitrogen,RNA and DNA. There was no change in the contents of RNA of wheatembryos during the vernalization. The incorporation of 32P intonucleic acid in wheat embryos during vernalization in the presenceof sugar was much higher than that of embryos vernalized withoutsugar. From these results we assumed that RNA turnover occurredduring the vernalization. There was no significant differencein the nucleotide composition of RNA extracted between the vernalizedand unvernalized embryos. The RNA of wheat embryos was separatedinto two fractions. Proportions of these two RNA fractions variedin the course of cold treatment, and similar changes were foundin developing wheat leaves. (Received July 25, 1974; ) 相似文献
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Tomohiro Nishimura Shinya Sato Wittaya Tawong Hiroshi Sakanari Keita Uehara Md Mahfuzur Rahman Shah Shoichiro Suda Takeshi Yasumoto Yohsuke Taira Haruo Yamaguchi Masao Adachi 《PloS one》2013,8(4)
Background
The marine epiphytic dinoflagellate genus Gambierdiscus produce toxins that cause ciguatera fish poisoning (CFP): one of the most significant seafood-borne illnesses associated with fish consumption worldwide. So far, occurrences of CFP incidents in Japan have been mainly reported in subtropical areas. A previous phylogeographic study of Japanese Gambierdiscus revealed the existence of two distinct phylotypes: Gambierdiscus sp. type 1 from subtropical and Gambierdiscus sp. type 2 from temperate areas. However, details of the genetic diversity and distribution for Japanese Gambierdiscus are still unclear, because a comprehensive investigation has not been conducted yet.Methods/Principal Finding
A total of 248 strains were examined from samples mainly collected from western and southern coastal areas of Japan during 2006–2011. The SSU rDNA, the LSU rDNA D8–D10 and the ITS region were selected as genetic markers and phylogenetic analyses were conducted. The genetic diversity of Japanese Gambierdiscus was high since five species/phylotypes were detected: including two reported phylotypes (Gambierdiscus sp. type 1 and Gambierdiscus sp. type 2), two species of Gambierdiscus (G. australes and G. cf. yasumotoi) and a hitherto unreported phylotype Gambierdiscus sp. type 3. The distributions of type 3 and G. cf. yasumotoi were restricted to the temperate and the subtropical area, respectively. On the other hand, type 1, type 2 and G. australes occurred from the subtropical to the temperate area, with a tendency that type 1 and G. australes were dominant in the subtropical area, whereas type 2 was dominant in the temperate area. By using mouse bioassay, type 1, type 3 and G. australes exhibited mouse toxicities.Conclusions/Significance
This study revealed a surprising diversity of Japanese Gambierdiscus and the distribution of five species/phylotypes displayed clear geographical patterns in Japanese coastal areas. The SSU rDNA and the LSU rDNA D8–D10 as genetic markers are recommended for further use. 相似文献10.
The biosyntheses of sescandelin (1) and sescandelin B (2) were studied by feeding of [13C]labelled precursors to Sesquicilium candelabrum. The labelling pattern of those compounds enriched from the [1-13C], [2-13C], and [l,2-13C]acetates, and from the [13C]formate showed that both compounds were derived from a pentaketide chain and a C1 unit. The isocoumarin skeleton of 1 and 2 is considered to have been formed by the cyclization of a pentaketide chain and a C1 unit, and of a pentaketide, respectively. 相似文献