Optimization of the Isolation Procedure of Genomic DNA from a Mucus Laden Pulmonate Gastropod, Achatina fulica

2017 ◽  
Vol 40 (2) ◽  
pp. 109-112 ◽  
Author(s):  
Vijaya Sai Ayyagari ◽  
Jalaja Naravula ◽  
Krupanidhi Sreerama
2017 ◽  
Vol 2 (4) ◽  
Author(s):  
S. Manikandan ◽  
S. Ansarali ◽  
G.M. Alagu Lakshmanan

The DNA isolation procedure for different plant groups have been studied and standardized.  The isolation of pure genomic DNA is the most essential component for any type of molecular studies.  The present work is aimed to identify suitable DNA markers for the amplification of P.amboinicus  DNA  becomes a great hurdle  for DNA barcoding studies carried out by rbcL and matK primers Used in the members of Lamiaceae. To solve this problem, The DNA was extracted by three methods from fresh young leaf tissue of P.amboinicus. After the evaluationthe outcome of these methods, one most suitable modified method was selected for isolating DNA from young leaves of P.amboinicus and selected for suitable DNA barcoding markers for PCR amplification. The quality and quantity of DNAs are a prerequisite for genetic studies for a variety of plants including P.amboinicus. The quantity and quality of the DNA extracted by this method wasused for suitable DNA barcoding markers selection.


1993 ◽  
Vol 69 (03) ◽  
pp. 217-220 ◽  
Author(s):  
Jonathan B Rosenberg ◽  
Peter J Newman ◽  
Michael W Mosesson ◽  
Marie-Claude Guillin ◽  
David L Amrani

SummaryParis I dysfibrinogenemia results in the production of a fibrinogen molecule containing a functionally abnormal γ-chain. We determined the basis of the molecular defect using polymerase chain reaction (PCR) to amplify the γ-chain region of the Paris I subject’s genomic DNA. Comparative sequence analysis of cloned PCR segments of normal and Paris I genomic DNA revealed only an A→G point mutation occurring at nucleotide position 6588 within intron 8 of the Paris I γ-chain gene. We examined six normal individuals and found only normal sequence in this region, indicating that this change is not likely to represent a normal polymorphism. This nucleotide change leads to a 45 bp fragment being inserted between exons 8 and 9 in the mature γparis I chain mRNA, and encodes a 15 amino acid insert after γ350 [M-C-G-E-A-L-P-M-L-K-D-P-C-Y]. Alternative splicing of this region from intron 8 into the mature Paris I γ-chain mRNA also results after translation into a substitution of S for G at position γ351. Biochemical studies of 14C-iodoacetamide incorporation into disulfide-reduced Paris I and normal fibrinogen corroborated the molecular biologic predictions that two additional cysteine residues exist within the γpariS I chain. We conclude that the insertion of this amino acid sequence leads to a conformationallyaltered, and dysfunctional γ-chain in Paris I fibrinogen.


2012 ◽  
Vol 3 (4) ◽  
pp. 193-194 ◽  
Author(s):  
M. Jayashankar M. Jayashankar ◽  
◽  
G.S.S.Murthy G.S.S.Murthy ◽  
D.K.Krishnappa D.K.Krishnappa ◽  
M.S.Reddy M.S.Reddy
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