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1.
Surendra Singh 《FEMS microbiology letters》1988,56(3):281-283
Abstract The utilization of urea was studied in the cyanobacterium Anabaena doliolum . The uptake of urea was unaltered in the presence of ammonium. The cells receiving ATP exogenously showed an induced level of urea-uptake as compared with the control cells. Urease inhibitor acetohydroxamic acid and hydroxyurea as well as glutamate analogue, MSO, did not affect the uptake of urea. These results suggest: (1) urea and ammonia have different uptake sites, (2) urea-uptake is an energy dependent process, and (3) during short-term experiments, urea uptake is not linked with the enzyme urease or the ammonium assimilating enzyme glutamine synthetase. 相似文献
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Most plants are constructed from repeating modular units such as phytomers, merophytes, and cell packets. Even an organism
as simple as the filamentous cyanobacterium Anabaena shows recurrent patterns of differentiated cellular structures, notably with respect to its heterocysts. These examples reflect
the inherent rhythms established within developmental processes of living organisms. In the present article, attention is
paid to repetitious production of idioblasts—isolated cells, or clusters of cells, with an identity different to that of neighbouring
cells from which they are derived. In higher plant root tissues, idioblasts are contained within cell packets that grow up
from mother cells during the course of a number of cycles of cell production. The heterocysts of Anabaena are also discussed; they, too, are a type of idioblast. The idioblasts of root tissues originate as small cells which result
from unequal cell divisions. Such divisions are usually the final ones within a cell packet which has already undergone a
number of division cycles and are characteristically located at one or both ends of a packet. The packet end walls are suggested
to have a role in regulating division asymmetry. Idioblastic systems discussed are root cortical trichosclereids and diaphragm
cells; in their earliest stage, the cells from which lateral root primordia arise are also considered as clusters of idioblasts
because they, too, are the products of asymmetric divisions of pericyclic mother cells. The division patterns of all these
idioblastic systems were modelled in a consistent way using L-systems, with the assumption that the age of a cell-packet end
wall plays a special role in cell determination.
This article is dedicated to Vsevelod Ya. Brodsky, doyen of Russian studies of rhythms in cell division and development, who
celebrates his 80th birthday on August 4, 2008
This article was presented in original. 相似文献
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【目的】表达鱼腥藻苯丙氨酸脱氨酶(AvPAL),并经分子改造降低其最适反应pH。【方法】PCR克隆AvPAL编码基因,并在大肠杆菌中表达,用Ni2+亲和层析柱和凝胶柱纯化重组蛋白。利用GETAREA软件筛选与催化残基距离较近的暴露于酶分子表面的氨基酸位点,将其突变为带电性质不同的氨基酸,并对突变体进行酶学性质研究。【结果】在大肠杆菌中成功表达了AvPAL,纯化后得到电泳纯的重组酶。突变体E75Q和E75R的最适反应pH从8.5分别偏移到7.5和7.0。E75Q在pH 7.5时的比酶活较原酶提高了25%,在pH 6.5–9.5之间酶的稳定性良好,其最适反应温度为50 °C,在此温度下保温1 h酶活无显著变化。在最适反应条件下,E75Q的kcat/Km值较原酶提高了26.6%。【结论】改变AvPAL酶分子中起路易斯碱作用的关键氨基酸残基(质子受体)附近与之有相互作用的氨基酸的带电性质,降低了AvPAL的最适反应pH,提升了其在医疗领域的应用前景。 相似文献
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Yohei Kurio Yosuke Koike Yu Kanesaki Satoru Watanabe Shigeki Ehira 《Molecular microbiology》2020,114(4):553-562
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洱海螺旋鱼腥藻生长生理特性的初步研究 总被引:5,自引:0,他引:5
近年来,洱海正处于中营养水平向富营养湖泊的过渡阶段,蓝藻水华也频繁发生。本文作者在洱海大规模水华暴发期间,分离、纯化了水华优势种螺旋鱼腥藻,并对其生长生理特性进行了初步研究,以期为探讨洱海鱼腥藻水华发生的环境影响因素提供基础的参考资料。实验结果表明,氮含量1.5mmol/L、磷含量12µmol/L、光照强度30E/ m·s、pH值8-10及温度25℃时,螺旋鱼腥藻生长状况最好,生物量及相对生长速率较高。不同氮、磷浓度下的氮磷代谢活性表明:氮浓度在0-0.36mmol/L时,硝酸还原酶活性随着氮浓度的增加而增强;氮浓度在0.36-6 mmol/L时,酶活性由其生长状况决定,生长越好,酶活性越高。碱性磷酸酶受磷影响较大,随着磷浓度的增加其活性逐渐减弱,磷充足时,氮对其活性并无显著影响。此外,洱海螺旋鱼腥藻可在低的氮、磷浓度下生长,这与其氮磷代谢活性的调节作用有关。 相似文献
8.
Eliška Zapomělová Jitka Jezberová Pavel Hrouzek Daniel Hisem Klára Řeháková Jaroslava Komárková 《Journal of phycology》2009,45(6):1363-1373
Occurrences of rare cyanobacteria Anabaena reniformis Lemmerm. and Aphanizomenon aphanizomenoides (Forti) Horecká et Komárek were recently detected at several localities in the Czech Republic. Two monoclonal strains of An. reniformis and one strain of Aph. aphanizomenoides were isolated from distant localities and different sampling years. They were characterized by a combination of morphological, genetic, and biochemical approaches. For the first time, partial 16S rRNA gene sequences were obtained for these morphospecies. Based on this gene, all of these strains clustered separately from other planktonic Anabaena and Aphanizomenon strains. They appeared in a cluster with Cylindrospermopsis Seenaya et Subba Raju and Raphidiopsis F. E. Fritsch et M. F. Rich, clustered closely together with two An. kisseleviana Elenkin strains available from GenBank. A new generic entity was defined (Sphaerospermum gen. nov., with the type species S. reniforme, based on the traditional species An. reniformis). These results contribute significantly to the knowledge base about genetic heterogeneity among planktonic Anabaena–like and Aphanizomenon–like morphospecies. Accordingly, the subgenus Dolichospermum, previously proposed for the group of planktonic Anabaena, should be revaluated. Secondary metabolite profiles of the An. reniformis and Aph. aphanizomenoides strains differed considerably from 17 other planktonic Anabaena strains of eight morphospecies isolated from Czech water bodies. Production of puwainaphycin A was found in both of the An. reniformis strains. Despite the relatively short phylogenetic distance from Cylidrospermopsis, the production of cylindrospermopsin was not detected in any of our strains. 相似文献
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