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331.
Pradeep AR Awasthi AK Singh CK Anuradha HJ Rao CG Vijayaprakash NB 《Journal of applied genetics》2011,52(3):345-353
Genetic structure of populations is under constant pressure from varying geographical conditions that induce phenotypic plasticity
in insects. Spatial distribution of 15 populations of Indian eri silkworm, Samia cynthia ricini originated at various altitudes of sub Himalayas based on Euclidean distance realized from yield attributes showed two population
clusters irrespective of their place of origin and altitude. However, DNA amplification profile by inter SSR (ISSR) markers
showed genetic variations among the populations depend on low and high altitudes. One ISSR locus each specific to high and
low altitude population was identified. The locus from high altitude showed deviation from Hardy-Weinberg equilibrium but
that from low altitude was in neutrality suggests that the high altitude loci could be under pressure from the altitudinal
variations. In association with different yield traits, 18 loci were identified. Of which, three markers showed association
with more than one trait indicative of pleiotropic influence. Stepwise addition of markers enhanced the correlation between
markers and the associated trait pointed to polygenic influence. Association of markers with altitude and yield traits suggests
an imperative relation of rare genetic loci with gene-environment interaction and phenotypic variability in S. c. ricini. 相似文献
332.
Recent studies point to a diverse assemblage of prokaryotic cognates of the eukaryotic ubiquitin (Ub) system. These systems span an entire spectrum, ranging from those catalyzing cofactor and amino acid biosynthesis, with only adenylating E1-like enzymes and ubiquitin-like proteins (Ubls), to those that are closer to eukaryotic systems by virtue of possessing E2 enzymes. Until recently E3 enzymes were unknown in such prokaryotic systems. Using contextual information from comparative genomics, we uncover a diverse group of RING finger E3s in prokaryotes that are likely to function with E1s, E2s, JAB domain peptidases and Ubls. These E1s, E2s and RING fingers suggest that features hitherto believed to be unique to eukaryotic versions of these proteins emerged progressively in such prokaryotic systems. These include the specific configuration of residues associated with oxyanion-hole formation in E2s and the C-terminal UFD in the E1 enzyme, which presents the E2 to its active site. Our study suggests for the first time that YukD-like Ubls might be conjugated by some of these systems in a manner similar to eukaryotic Ubls. We also show that prokaryotic RING fingers possess considerable functional diversity and that not all of them are involved in Ub-related functions. In eukaryotes, other than RING fingers, a number of distinct binuclear (chelating two Zn atoms) and mononuclear (chelating one zinc atom) treble clef domains are involved in Ub-related functions. Through detailed structural analysis we delineated the higher order relationships and interaction modes of binuclear treble clef domains. This indicated that the FYVE domain acquired the binuclear state independently of the other binuclear forms and that different treble clef domains have convergently acquired Ub-related functions independently of the RING finger. Among these, we uncover evidence for notable prokaryotic radiations of the ZF-UBP, B-box, AN1 and LIM clades of treble clef domains and present contextual evidence to support their role in functions unrelated to the Ub-system in prokaryotes. In particular, we show that bacterial ZF-UBP domains are part of a novel cyclic nucleotide-dependent redox signaling system, whereas prokaryotic B-box, AN1 and LIM domains have related functions as partners of diverse membrane-associated peptidases in processing proteins. This information, in conjunction with structural analysis, suggests that these treble clef domains might have been independently recruited to the eukaryotic Ub-system due to an ancient conserved mode of interaction with peptides. 相似文献
333.
Characterization, direct sequencing of the PCR amplicon and phylogenetic relationship was done to discover a novel Vip protein
genes of the Bt isolates, to improve the prospects for insect control, more Vip proteins should be sought out and researched to predict their
insecticidal activity. Characterization was based on direct sequencing of PCR amplicon using primers specific to vip3A gene was presented here. 12 out of 18 isolates screened were positive for vip gene-specific primers. Homology search for the partial sequences using BLAST showed that 11 isolates had high similarity
to vip3Aa gene and only one fragment with vip3Ae gene (25–100% at nucleotide and amino acid level). Phylogenetic analysis showed that the gene sequences were responsible
for geographic separation for divergence within vip genes, consistent with the evaluation of distinct bacterial population. Despite the geographical distances, strains harbouring
vip genes have originated from common ancestors may significantly contribute to control resistant insect pests. Some strains
have evolved to be quite distinct and others remain as members of closely related groups. The reported method is a powerful
tool to find novel Vip3A proteins from large-scale Bt strains which is effective in terms of time and cost. Further the Vip proteins produced by different strains of B. thuringiensis are unique in terms of the sequence divergence and hence may also differ in their insecticidal activities. 相似文献
334.
Two-component systems are widely used by bacteria to mediate adaptive responses to a variety of environmental stimuli. The CusR/CusS two-component system in Escherichia coli induces expression of genes involved in metal efflux under conditions of elevated Cu(I) and Ag(I) concentrations. As seen in most prototypical two-component systems, signal recognition and transmission is expected to occur by ligand binding in the periplasmic sensor domain of the histidine kinase CusS. Although discussed in the extant literature, little experimental evidence is available to establish the role of CusS in metal homeostasis. In this study, we show that the cusS gene is required for Cu(I) and Ag(I) resistance in E.?coli and that CusS is linked to the expression of the cusCFBA genes. These results show a metal-dependent mechanism of CusS activation and suggest an absolute requirement for CusS in Cu(I)- and Ag(I)-dependent upregulation of cusCFBA expression in E.?coli. 相似文献
335.
Swamy HM Asokan R Rajasekaran PE Mahmood R Nagesha SN Arora DK 《Recent patents on DNA & gene sequences》2012,6(1):64-71
Bacillus thuringiensis (Bt) is the most widely used microbial control agent. The broad spectrum of susceptible hosts, production on artificial media and ease of application has caused the widespread use of this bacterium against several pests in agriculture, forest and vectors of human diseases. B.thuringiensis toxins are highly species specific which provide economic, environmental benefits, potential for future control and spread of the technology worldwide. This makes the B. thuringiensis crystal proteins an interesting tool for the implementation in integrated pest management programs. It has gained importance over the last 100 years for its biocontrol properties which is used in this review as a case study and analysis of the patents granted on B. thuringiensis was carried out. This study categorizes a number of patents related to B.thuringiensis insecticidal crystal proteins, application of B.thuringiensis insecticidal crystal proteins and the development of patentable technologies. The analyses were done using various criteria like patenting trends over the years, assignees playing a major role, comparison of the technology used in different patents and the patenting activity across the insect orders. Patent documents related to bacterium B.thuringiensis contain a trove of technical and commercial information and thus, patent analysis is considered as a useful tool for R management and techno economical development. Patent analysis also helps identifying and evaluating new and alternate technologies, keeping abreast with latest technologies for business interests, finding solutions to technical problems and ideas for new innovative trends. 相似文献
336.
Mahesh Bachu Swarupa Yalla Mangaiarkarasi Asokan Anjali Verma Ujjwal Neogi Shilpee Sharma Rajesh V. Murali Anil Babu Mukthey Raghavendra Bhatt Snehajyoti Chatterjee Roshan Elizabeth Rajan Narayana Cheedarla Venkat S. Yadavalli Anita Mahadevan Susarla K. Shankar Nirmala Rajagopalan Anita Shet Shanmugam Saravanan Pachamuthu Balakrishnan Suniti Solomon Madhu Vajpayee Kadappa Shivappa Satish Tapas K. Kundu Kuan-Teh Jeang Udaykumar Ranga 《The Journal of biological chemistry》2012,287(53):44714-44735
337.
338.
Setti A Venugopal Rao V Priyamvada Devi A Pawar SC Naresh B Kalyan CS 《Journal of receptor and signal transduction research》2012,32(4):225-229
Breast cancer is a frequently reported cancer in women all over the world. Several methods available to cure the breast cancer based on stage. This study focused on chemoprevention drugs of Aromatase, a potential target in breast cancer. Natural variants of Aromatase are very common; they have been collected and modeled, optimized the energy of mutated Aromatase protein. Reversible (Anastrozole) and irreversible (Exemestane) Aromatase inhibitors are selected and performed molecular docking studies of each drug against each variant to see the binding affinity impact on protein variant and drugs. In this comparative study, Anastrozole, a cumene derivative showed more binding affinity and Diethylstilbestrol showed weak binding affinity against among all drugs. The comparative molecular docking revealed that the binding affinity between drug and Aromatase protein variant is imprecise but fairly close; therefore the protein variants of Aromatase can be conceived to be equal for chemoprevention of breast cancer therapy. 相似文献
339.
S Shen KD Bryant J Sun SM Brown A Troupes N Pulicherla A Asokan 《Journal of virology》2012,86(19):10408-10417
Glycans are key determinants of host range and transmissibility in several pathogens. In the case of adeno-associated viruses (AAV), different carbohydrates serve as cellular receptors in vitro; however, their contributions in vivo are less clear. A particularly interesting example is adeno-associated virus serotype 9 (AAV9), which displays systemic tropism in mice despite low endogenous levels of its primary receptor (galactose) in murine tissues. To understand this further, we studied the effect of modulating glycan binding avidity on the systemic fate of AAV9 in mice. Intravenous administration of recombinant sialidase increased tissue levels of terminally galactosylated glycans in several murine tissues. These conditions altered the systemic tropism of AAV9 into a hepatotropic phenotype, characterized by markedly increased sequestration within the liver sinusoidal endothelium and Kupffer cells. In contrast, an AAV9 mutant with decreased glycan binding avidity displayed a liver-detargeted phenotype. Altering glycan binding avidity also profoundly affected AAV9 persistence in blood circulation. Our results support the notion that high glycan receptor binding avidity appears to impart increased liver tropism, while decreased avidity favors systemic spread of AAV vectors. These findings may not only help predict species-specific differences in tropism for AAV9 on the basis of tissue glycosylation profiles, but also provide a general approach to tailor AAV vectors for systemic or hepatic gene transfer by reengineering capsid-glycan interactions. 相似文献