Investigating insect molecular responses to two plant defense proteins and characterizing a novel insecticidal protein from Arabidopsis

The molecular interaction between plants and insects is dynamic and multifaceted. We are interested in understanding the molecular mechanism that insects utilize to overcome plant defense proteins, as well as discovering novel plant insecticidal proteins. Three projects were developed. First, we eva...

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Bibliographic Details
Main Author: Liu, Yilin
Other Authors: Zhu-Salzman, Keyan
Format: Others
Language:en_US
Published: Texas A&M University 2007
Subjects:
Online Access:http://hdl.handle.net/1969.1/4855
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spelling ndltd-tamu.edu-oai-repository.tamu.edu-1969.1-48552013-01-08T10:38:37ZInvestigating insect molecular responses to two plant defense proteins and characterizing a novel insecticidal protein from ArabidopsisLiu, Yilinplant defense proteinsinsectmolecular interactionsThe molecular interaction between plants and insects is dynamic and multifaceted. We are interested in understanding the molecular mechanism that insects utilize to overcome plant defense proteins, as well as discovering novel plant insecticidal proteins. Three projects were developed. First, we evaluated the effects of soybean cysteine protease inhibitor (soyacystatin N, scN) on the growth and development in southern corn rootworm. Both subtractive suppressed hybridization (SSH) and cDNA microarray analyses were used to uncover the changes of gene expression profiles in southern corn rootworm under the scN challenge. The counterdefense-related genes were identified, suggesting that southern corn rootworm deployed several regulatory mechanisms to overcome the dietary scN. Second, to identify and confirm insecticidal properties of vegetative storage protein 2 in Arabidopsis (AtVSP2), the gene was cloned and expressed in E.coli. This protein showed acid phosphatase activity. Feeding assay indicated that AtVSP increased the mortality and delayed the development of two coleopteran and one dipteran insects. Third, to identify the molecular mechanism of this novel insecticidal protein, P element mutagenesis was utilized to generate AtVSP resistant mutants (VRs). Two balanced VR mutants and their revertants were generated, and can be used to further characterize the genetic loci of P element inserted in the mutants.Texas A&M UniversityZhu-Salzman, Keyan2007-04-25T20:10:25Z2007-04-25T20:10:25Z2005-122007-04-25T20:10:25ZBookThesisElectronic Dissertationtext812474 byteselectronicapplication/pdfborn digitalhttp://hdl.handle.net/1969.1/4855en_US
collection NDLTD
language en_US
format Others
sources NDLTD
topic plant defense proteins
insect
molecular interactions
spellingShingle plant defense proteins
insect
molecular interactions
Liu, Yilin
Investigating insect molecular responses to two plant defense proteins and characterizing a novel insecticidal protein from Arabidopsis
description The molecular interaction between plants and insects is dynamic and multifaceted. We are interested in understanding the molecular mechanism that insects utilize to overcome plant defense proteins, as well as discovering novel plant insecticidal proteins. Three projects were developed. First, we evaluated the effects of soybean cysteine protease inhibitor (soyacystatin N, scN) on the growth and development in southern corn rootworm. Both subtractive suppressed hybridization (SSH) and cDNA microarray analyses were used to uncover the changes of gene expression profiles in southern corn rootworm under the scN challenge. The counterdefense-related genes were identified, suggesting that southern corn rootworm deployed several regulatory mechanisms to overcome the dietary scN. Second, to identify and confirm insecticidal properties of vegetative storage protein 2 in Arabidopsis (AtVSP2), the gene was cloned and expressed in E.coli. This protein showed acid phosphatase activity. Feeding assay indicated that AtVSP increased the mortality and delayed the development of two coleopteran and one dipteran insects. Third, to identify the molecular mechanism of this novel insecticidal protein, P element mutagenesis was utilized to generate AtVSP resistant mutants (VRs). Two balanced VR mutants and their revertants were generated, and can be used to further characterize the genetic loci of P element inserted in the mutants.
author2 Zhu-Salzman, Keyan
author_facet Zhu-Salzman, Keyan
Liu, Yilin
author Liu, Yilin
author_sort Liu, Yilin
title Investigating insect molecular responses to two plant defense proteins and characterizing a novel insecticidal protein from Arabidopsis
title_short Investigating insect molecular responses to two plant defense proteins and characterizing a novel insecticidal protein from Arabidopsis
title_full Investigating insect molecular responses to two plant defense proteins and characterizing a novel insecticidal protein from Arabidopsis
title_fullStr Investigating insect molecular responses to two plant defense proteins and characterizing a novel insecticidal protein from Arabidopsis
title_full_unstemmed Investigating insect molecular responses to two plant defense proteins and characterizing a novel insecticidal protein from Arabidopsis
title_sort investigating insect molecular responses to two plant defense proteins and characterizing a novel insecticidal protein from arabidopsis
publisher Texas A&M University
publishDate 2007
url http://hdl.handle.net/1969.1/4855
work_keys_str_mv AT liuyilin investigatinginsectmolecularresponsestotwoplantdefenseproteinsandcharacterizinganovelinsecticidalproteinfromarabidopsis
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