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91.
92.
本文综述了近年来对链霉菌酪氨酸酶基因的研究。由酪氨酸酶合成黑色素是链霉菌属各个种的共同特性,并受到酪氨酸酶基因的控制。链霉菌几个种的酪氨酸酶基因已克隆到,其产黑色素的特性使之作为重要的标记基因得以广泛应用,同时,该基因在链霉菌的不同种及不同属的微生物中得到了高水平的表达。链霉菌酪氨酸酶基因表达调控的分子机制也得到较深入的研究。 相似文献
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Stimulation of Pod and Ovule Growth of Soybean, Glycine max (L.) Merr. by 6-Benzylaminopurine 总被引:1,自引:0,他引:1
Mosjidis Cecilia O'Hara; Peterson Curt M.; Truelove Bryan; Dute Roland R. 《Annals of botany》1993,71(3):193-199
Flowers at distal nodes on soybean racemes usually fail to setpods and subsequently abscise. Physiological and histologicalstudies were performed to determine the influence of 6-benzylaminopurine(BAP) on distal pod development. The pedicels of fully openedflowers on terminal racemes of field-grown IX93-100 soybeanplants were treated three times with 200 mg kg-1 BAP in lanolinover a 6-d period. Racemes were then excised and 32P uptakewas recorded for each flower position within a raceme; histologicalfeatures of pedicels and ovules also were determined. Applicationof BAP increased pod and ovule length, width and weight at allfour distal nodes (D, D-1, D-2, D-3) relative to controls treatedwith lanolin. Length and width of parietal endosperm cells weresmaller in BAP-treated ovules at the most proximal node beingstudied (D-3), and greater numbers of parietal endosperm cellswere observed at D-1 and D-3 nodes when compared to lanolincontrols. Smaller amounts of starch were found in suspensorcells, endosperm, and integuments of lanolin-treated ovules,and starch depletion over time was observed within starch sheathsof pedicels from lanolin-treated pods when compared to BAP-treatedtissues. BAP-treated racemes had more 32P uptake at the fourmost distal nodes. A higher rate of uptake (cpm mg-1 f. wt)was evident in ovules than in ovary tissues. These results suggestthat for racemes otherwise destined to abscise, applicationof BAP promotes pod set and growth by stimulating ovule development.Copyright1993, 1999 Academic Press Pod, ovule soybean, abscission, 6-benzylaminopurine 相似文献
95.
A rapid method for extraction of cotton (Gossypium spp.) genomic DNA suitable for RFLP or PCR analysis 总被引:13,自引:0,他引:13
Andrew H. Paterson Curt L. Brubaker Jonathan F. Wendel 《Plant Molecular Biology Reporter》1993,11(2):122-127
Extraction of high-quality genomic DNA fromGossypium (cotton) species is difficult due to high levels of polysaccharide, oxidizable quinones, and other interfering substances.
We describe a procedure that consistently permits isolation of cotton genomic DNA of satisfactory size and quality for RFLP
and PCR analysis, as well as for most routine cloning applications. Several antioxidants, phenol-binding reagents, and phenol
oxidase inhibitors are used throughout the procedure, and most polysaccharides are eliminated early in the procedure by isolation
of nuclei. 相似文献
96.
Neurochemical changes in the extracellular fluid of the rostral ventrolateral medulla (RVLM) were produced by changes in arterial blood pressure. Blood pressure was raised or lowered with systemic infusions of phenylephrine or nitroprusside and neurochemicals were recovered from RVLM by in vivo microdialysis. A dialysis probe 300 microns in diameter and 500 microns in length was stereotaxically implanted in the RVLM of the urethane-anesthetized rat. Sterile physiological Ringer's solution was perfused at a rate of 1.5 microliter/min. The perfusate was collected under ice-cold conditions every 15 min for the assay of epinephrine, dihydroxyphenylacetic acid (DOPAC), 5-hydroxyindoleacetic acid (5-HIAA), ascorbic acid, and uric acid. After stable baseline neurochemical concentrations were achieved, animals were infused with phenylephrine or nitroprusside intravenously to raise or lower the blood pressure. Increasing blood pressure 50 mm Hg above the baseline value by phenylephrine led to a significant reduction in heart rate and a reduction in extracellular epinephrine and DOPAC concentrations. The 5-HIAA concentration was increased during the hypertensive drug infusion. There were no changes in the concentrations of ascorbic acid or uric acid. Hypotension produced by nitroprusside (-20 mm Hg) led to neurochemical changes which were the reciprocal of those seen during hypertension. During hypotension, heart rate increased as did the extracellular fluid epinephrine concentration. The 5-HIAA concentration fell with hypotension and remained depressed following the nitroprusside infusion. Ascorbic acid and uric acid concentrations did not change during hypotension but ascorbic acid did increase after the nitroprusside infusion stopped. These data provide direct evidence that epinephrine release in RVLM is linked to changes in systemic blood pressure.(ABSTRACT TRUNCATED AT 250 WORDS) 相似文献
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98.
Select paramyxoviral V proteins inhibit IRF3 activation by acting as alternative substrates for inhibitor of kappaB kinase epsilon (IKKe)/TBK1 总被引:3,自引:0,他引:3
V accessory proteins from Paramyxoviruses are important in viral evasion of the innate immune response. Here, using a cell survival assay that identifies both inhibitors and activators of interferon regulatory factor 3 (IRF3)-mediated gene induction, we identified select paramyxoviral V proteins that inhibited double-stranded RNA-mediated signaling; these are encoded by mumps virus (MuV), human parainfluenza virus 2 (hPIV2), and parainfluenza virus 5 (PIV5), all members of the genus Rubulavirus. We showed that interaction between V and the IRF3/7 kinases, TRAF family member-associated NFkappaB activator (TANK)-binding kinase 1 (TBK1)/inhibitor of kappaB kinase epsilon (IKKe), was essential for this inhibition. Indeed, V proteins were phosphorylated directly by TBK1/IKKe, and this, intriguingly, resulted in lowering of the cellular level of V. Thus, it appears that V mimics IRF3 in both its phosphorylation by TBK1/IKKe and its subsequent degradation. Finally, a PIV5 mutant encoding a V protein that could not inhibit IKKe was much more susceptible to the antiviral effects of double-stranded RNA than the wild-type virus. Because many innate immune response signaling pathways, including those initiated by TLR3, TLR4, RIG-I, MDA5, and DNA-dependent activator of IRFs (DAI), use TBK1/IKKe as the terminal kinases to activate IRFs, rubulaviral V proteins have the potential to inhibit all of them. 相似文献
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100.