\documentclass[english,german]{scrartcl}
\usepackage[latin1]{inputenc}
\usepackage{geometry}
\geometry{verbose,a4paper,tmargin=1.75cm,bmargin=2cm,lmargin=2cm,rmargin=2cm,headheight=0.8cm,headsep=0.5cm,footskip=0.5cm}
\usepackage{babel}
\usepackage{url}
\urlstyle{same}
\newcommand\email{\begingroup \urlstyle{same}\Url}\usepackage{graphicx}
\usepackage{units}
\usepackage{tabularx}
\usepackage{wasysym} % enable use of \permil instead of \textperthousand
\usepackage{marvosym}
\usepackage{arabtex}
\usepackage{hyphenat}
\usepackage{booktabs}
\usepackage{mdwlist}
\renewcommand{\thefootnote}{\relax}
\usepackage{index}
\newindex{key}{kdx}{knd}{Keywords}
\newindex{author}{idx}{ind}{Authors}
\usepackage{fancyhdr}
\pagestyle{fancy}
\renewcommand{\headrulewidth}{0pt}
\fancyfoot{}
\usepackage{ifpdf}
\ifpdf
%\usepackage[activate]{pdfcprot}
%\usepackage[owner=Tapioka, print=true, copy=true, edit=false, annotate=false,set]{pdfcrypt}
%encryption: not supported any more (since pdftex 1.10)
\usepackage[pdftex]{thumbpdf}
\usepackage[pdftex]{hyperref}
\hypersetup{pdftitle={Study   Mineral Metal Contents  of  Some Edible Medicinal Mushrooms from India as   Supportive Natural Nutrients in HIV and Cancer and other Diseases by Atomic Absorption Spectroscopy  and other Techniques},pdfauthor={Bharati Dr Pardeshi, Prajakta Pardeshi},pdfsubject={Tropentag 2010: Abstract},pdfkeywords={ATOMIC ABSORPTION SPECTROSCOPY, CANCER, medicnal mushrooms, trace elemental},pdfpagemode=None,colorlinks=true}
\else
\usepackage{ae}
\usepackage{textcomp}
\fi
\begin{document}
\ifpdf
\parbox[b]{2.5cm}{\resizebox*{2.5cm}{!}{\includegraphics{dtt2010.jpg}}}
\else
\parbox[b]{2.5cm}{\resizebox*{2.5cm}{!}{\includegraphics{dtt2010.eps}}}
\fi
\hfill
\parbox[b]{13.4cm}{\centering \large{\textbf{Tropentag, September 14-16, 2010, Zurich}}\\[1ex] \Large{``World Food System  ---\\A Contribution from Europe''\\[2ex]}}
\hspace{0.1cm}
\begin{center}
\Large{\textbf{Study   Mineral Metal Contents  of  Some Edible Medicinal Mushrooms from India as   Supportive Natural Nutrients in HIV and Cancer and other Diseases by Atomic Absorption Spectroscopy  and other Techniques\footnote{\textbf{Contact Address:} Bharati Dr Pardeshi, B.g.college,under University of Pune,india, Chemistry, Plot 51 S.no 46/1/2/2/1vidyanagar Lane Ipimple Gurav Puneindia, 411027~Pune, India, \mbox{e-mail}: \email{bharatipardeshi@rediffmail.com}}\\[0.8ex]}}
\normalsize{\textsc{Bharati Dr Pardeshi$^{1}$, Prajakta Pardeshi$^{2}$}}
\end{center}
\begin{itemize*}
\item[]{\small{\textit{$^{1}$B.g.college,under University of Pune,india, Chemistry, India}}}
\item[]{\small{\textit{$^{2}$Lsi Pune, India, Software Development, }}}
\end{itemize*}
\index[author]{Dr Pardeshi, Bharati}
\index[author]{Pardeshi, Prajakta}
\begin{center}
\vspace{1.1cm}
\textbf{Abstract}
\begin{abstract}
\normalsize{
The aim of the study was to determine the minor major and trace elemental contents of mineral elements (Zn, Mn, Fe, Cu, Ca, Mg  Total Nitrogen (N)\%,Total Phosphorus (P$_{2}$O$_{5}$)\% and Total Potash  from medicinal mushrooms were analysed by AAS method and other methods. 



Present study deals with the metal contents of medicinal mushrooms viz  Button Mushroom, Oyster, Shitake, Phellinus  Sanghuang, Hexagonia, Reishi Gyanoderma and Gyanocillium mushrooms used as supportive medicine in the treatment of Cancer, HIV and many other diseases .







In Medicinal mushrooms, it was  found  that Total nitrogen, Total phosphorus,   Total potash  and Calcium   and  magnesium  were  present  at  major  level   while the other elements- Zn, Cu, Fe, Mn  were present at minor or trace levels. In general the order of major level   components  was  found in the order of Mg $>$ N$>$ Ca$>$K$>$P . Total  nitrogen varies from  2.8 to \mbox{5.4\,\%} on dry weight basis. The nitrogen content of  Reishi Gyanoderma   mushroom  studied  is highest(5.40$\pm$0.2)  and lowest  in   button  mushroom,  Total  phosphorus varies  from  0.06 $\pm$ \mbox{0.05\,\%}  to 1.02 $\pm$ \mbox{0.03\,\%} on  dry weight  basis.   The phosphorus   content   of   Reishi  Gyanoderma    mushroom   studied    is highest ( 102 $\pm$ \mbox{0.03\,\%} ) and  lowest  in  Shitake   (0.06$\pm$\mbox{0.05\,\%}).    Total potash  varies from (0.10$\pm$\mbox{0.02\,\%}) to (1.05$\pm$\mbox{0.02\,\%}) on dry weight basis. The  potash  content  of   Reishi  Gyanoderma       mushroom   studied  is    highest (1.05$\pm$\mbox{0.02\,\%} )  and   lowest  in   Phellinus .   Calcium  content   varies   from (1.02 $\pm$ \mbox{0.02\,\%} ) to ( 2.80 $\pm$ \mbox{0.05\,\%}). The  calcium   content   of   Reishi Gyanoderma. mushroom studied is highest(2.80$\pm$\mbox{0.05\,\%} ) and   lowest  in button   mushroom  ( 1.02 $\pm$ \mbox{0.02\,\%}) on  dry  weight  basis. The order  of minor or trace element is found to be  present in edible mushrooms  under study was Fe$>$Cu$>$Zn$>$Mn and The overall order of all  elements    present  for    most   of  the  samples  was  established   as     Mg $>$ N$>$ Ca$>$K$>$P$>$ Fe$>$Cu$>$Zn$>$Mn. But this order is  variable  for all the mushroom under study. In general, most of the mushrooms studied had good amounts of minerals, including trace minerals.}

\vspace{0.5cm}
\end{abstract}
\end{center}
\noindent \textbf{Keywords:} ATOMIC ABSORPTION SPECTROSCOPY, CANCER, medicnal mushrooms, trace elemental
\index[key]{Medicnal mushrooms}
\index[key]{Trace elements}
\end{document}
