Optimization of RT-PCR reactions in studies with genes of lignin biosynthetic route in Saccharum spontaneum

ABSTRACT Saccharum spontaneum has been used for the development of energy cane a crop aimed to be used for the production of second-generation ethanol, or lignocellulosic ethanol. Lignin is a main challenge in the conversion of cell wall sugars into ethanol. In our studies to isolate the genes the l...

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Main Authors: JUAN P.P. LLERENA, PEDRO ARAÚJO, PAULO MAZZAFERA
Format: Article
Language:English
Published: Academia Brasileira de Ciências
Series:Anais da Academia Brasileira de Ciências
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0001-37652018000100509&lng=en&tlng=en
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spelling doaj-200e9749df9f46b380c6fbc37352634e2020-11-24T21:06:33ZengAcademia Brasileira de CiênciasAnais da Academia Brasileira de Ciências1678-269090150951910.1590/0001-3765201820170250S0001-37652018000100509Optimization of RT-PCR reactions in studies with genes of lignin biosynthetic route in Saccharum spontaneumJUAN P.P. LLERENAPEDRO ARAÚJOPAULO MAZZAFERAABSTRACT Saccharum spontaneum has been used for the development of energy cane a crop aimed to be used for the production of second-generation ethanol, or lignocellulosic ethanol. Lignin is a main challenge in the conversion of cell wall sugars into ethanol. In our studies to isolate the genes the lignin biosynthesis in S. spontaneum we have had great difficulty in RT-PCR reactions. Thus, we evaluated the effectiveness of different additives in the amplification of these genes. While COMT and CCoAOMT genes did not need any additives for other genes there was no amplification (HCT, F5H, 4CL and CCR) or the yield was very low (CAD and C4H). The application of supplementary cDNA was enough to overcome the non-specificity and low yield for C4H and C3H, while the addition of 0.04% BSA + 2% formamide was effective to amplify 4CL, CCR, F5H and CCR. HCT was amplified only by addition of 0.04% BSA + 2% formamide + 0.1 M trehalose and amplification of PAL was possible with addition of 2% of DMSO. Besides optimization of expression assays, the results show that additives can act independently or synergistically.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0001-37652018000100509&lng=en&tlng=enbiomasscell wallenergy caneligninlignocellulosic ethanolsugarcane
collection DOAJ
language English
format Article
sources DOAJ
author JUAN P.P. LLERENA
PEDRO ARAÚJO
PAULO MAZZAFERA
spellingShingle JUAN P.P. LLERENA
PEDRO ARAÚJO
PAULO MAZZAFERA
Optimization of RT-PCR reactions in studies with genes of lignin biosynthetic route in Saccharum spontaneum
Anais da Academia Brasileira de Ciências
biomass
cell wall
energy cane
lignin
lignocellulosic ethanol
sugarcane
author_facet JUAN P.P. LLERENA
PEDRO ARAÚJO
PAULO MAZZAFERA
author_sort JUAN P.P. LLERENA
title Optimization of RT-PCR reactions in studies with genes of lignin biosynthetic route in Saccharum spontaneum
title_short Optimization of RT-PCR reactions in studies with genes of lignin biosynthetic route in Saccharum spontaneum
title_full Optimization of RT-PCR reactions in studies with genes of lignin biosynthetic route in Saccharum spontaneum
title_fullStr Optimization of RT-PCR reactions in studies with genes of lignin biosynthetic route in Saccharum spontaneum
title_full_unstemmed Optimization of RT-PCR reactions in studies with genes of lignin biosynthetic route in Saccharum spontaneum
title_sort optimization of rt-pcr reactions in studies with genes of lignin biosynthetic route in saccharum spontaneum
publisher Academia Brasileira de Ciências
series Anais da Academia Brasileira de Ciências
issn 1678-2690
description ABSTRACT Saccharum spontaneum has been used for the development of energy cane a crop aimed to be used for the production of second-generation ethanol, or lignocellulosic ethanol. Lignin is a main challenge in the conversion of cell wall sugars into ethanol. In our studies to isolate the genes the lignin biosynthesis in S. spontaneum we have had great difficulty in RT-PCR reactions. Thus, we evaluated the effectiveness of different additives in the amplification of these genes. While COMT and CCoAOMT genes did not need any additives for other genes there was no amplification (HCT, F5H, 4CL and CCR) or the yield was very low (CAD and C4H). The application of supplementary cDNA was enough to overcome the non-specificity and low yield for C4H and C3H, while the addition of 0.04% BSA + 2% formamide was effective to amplify 4CL, CCR, F5H and CCR. HCT was amplified only by addition of 0.04% BSA + 2% formamide + 0.1 M trehalose and amplification of PAL was possible with addition of 2% of DMSO. Besides optimization of expression assays, the results show that additives can act independently or synergistically.
topic biomass
cell wall
energy cane
lignin
lignocellulosic ethanol
sugarcane
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0001-37652018000100509&lng=en&tlng=en
work_keys_str_mv AT juanppllerena optimizationofrtpcrreactionsinstudieswithgenesofligninbiosyntheticrouteinsaccharumspontaneum
AT pedroaraujo optimizationofrtpcrreactionsinstudieswithgenesofligninbiosyntheticrouteinsaccharumspontaneum
AT paulomazzafera optimizationofrtpcrreactionsinstudieswithgenesofligninbiosyntheticrouteinsaccharumspontaneum
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