Similarity in Venom Alkaloid Chemistry of Alate Queens of Imported Fire Ants: Implication for Hybridization between Solenopsis richteri and S. invicta in the Southern United States

Both cis‐ and trans‐2‐methyl‐6‐undecylpiperidines, MC11P, have been previously reported as the major components of the venom of alate queens of the imported fire ants, Solenopsis richteri (black) and S. invicta (red). To identify the minor components of venom alkaloids from alate queens and compare...

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Published inChemistry & biodiversity Vol. 9; no. 4; pp. 702 - 713
Main Authors Chen, Li, Lu, Yong-Yue, Hu, Qiong-Bo, Fadamiro, Henry Y.
Format Journal Article
LanguageEnglish
Published Zürich WILEY-VCH Verlag 01.04.2012
WILEY‐VCH Verlag
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Abstract Both cis‐ and trans‐2‐methyl‐6‐undecylpiperidines, MC11P, have been previously reported as the major components of the venom of alate queens of the imported fire ants, Solenopsis richteri (black) and S. invicta (red). To identify the minor components of venom alkaloids from alate queens and compare the venom alkaloid chemistry of alate queen of their hybrid (S. richteri×S. invicta) with that of the two parental fire ant species (S. richteri and S. invicta), silica‐gel short‐column chromatography was utilized for separating cis‐stereoisomers of venom alkaloids from trans‐stereoisomers. GC/MS Analyses of venom‐alkaloid chemistry of alate queens demonstrated that fewer alkaloid peaks were detected in the chromatograms of the alate queens compared to those of workers. Three new compounds, 7, 12, and 13, were detected as minor components in the venom of alate queens of all three fire ant species. Alate queens of hybrid fire ants showed cis‐ and trans‐alkaloid patterns similar to those of the parental species. Similarity in venom‐alkaloid chemistry of alate queens of S. richteri and S. invicta, and their hybrid may indicate their reproductive compatibility in the hybrid zone in southern United States, where all three species occur sympatrically.
AbstractList Abstract Both cis‐ and trans ‐2‐methyl‐6‐undecylpiperidines, MC11P, have been previously reported as the major components of the venom of alate queens of the imported fire ants, Solenopsis richteri (black) and S. invicta (red). To identify the minor components of venom alkaloids from alate queens and compare the venom alkaloid chemistry of alate queen of their hybrid ( S. richteri × S. invicta ) with that of the two parental fire ant species ( S. richteri and S. invicta ), silica‐gel short‐column chromatography was utilized for separating cis ‐stereoisomers of venom alkaloids from trans ‐stereoisomers. GC/MS Analyses of venom‐alkaloid chemistry of alate queens demonstrated that fewer alkaloid peaks were detected in the chromatograms of the alate queens compared to those of workers. Three new compounds, 7, 12 , and 13 , were detected as minor components in the venom of alate queens of all three fire ant species. Alate queens of hybrid fire ants showed cis‐ and trans ‐alkaloid patterns similar to those of the parental species. Similarity in venom‐alkaloid chemistry of alate queens of S. richteri and S. invicta , and their hybrid may indicate their reproductive compatibility in the hybrid zone in southern United States, where all three species occur sympatrically.
Both cis- and trans-2-methyl-6-undecylpiperidines, MC11P, have been previously reported as the major components of the venom of alate queens of the imported fire ants, Solenopsis richteri (black) and S. invicta (red). To identify the minor components of venom alkaloids from alate queens and compare the venom alkaloid chemistry of alate queen of their hybrid (S. richteri×S. invicta) with that of the two parental fire ant species (S. richteri and S. invicta), silica-gel short-column chromatography was utilized for separating cis-stereoisomers of venom alkaloids from trans-stereoisomers. GC/MS Analyses of venom-alkaloid chemistry of alate queens demonstrated that fewer alkaloid peaks were detected in the chromatograms of the alate queens compared to those of workers. Three new compounds, 7, 12, and 13, were detected as minor components in the venom of alate queens of all three fire ant species. Alate queens of hybrid fire ants showed cis- and trans-alkaloid patterns similar to those of the parental species. Similarity in venom-alkaloid chemistry of alate queens of S. richteri and S. invicta, and their hybrid may indicate their reproductive compatibility in the hybrid zone in southern United States, where all three species occur sympatrically.
Author Fadamiro, Henry Y.
Lu, Yong-Yue
Hu, Qiong-Bo
Chen, Li
Author_xml – sequence: 1
  givenname: Li
  surname: Chen
  fullname: Chen, Li
  organization: State Key Laboratory of Integrated Management of Pest Insects and Rodents, Institute of Zoology, the Chinese Academy of Sciences, Beijing 100101, P. R. China
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  givenname: Yong-Yue
  surname: Lu
  fullname: Lu, Yong-Yue
  organization: Red Imported Fire Ant Research Centre, South China Agricultural University, Guangzhou 510642, P. R. China
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  givenname: Qiong-Bo
  surname: Hu
  fullname: Hu, Qiong-Bo
  organization: Department of Pesticide Science, South China Agricultural University, Guangzhou 510642, P. R. China
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  givenname: Henry Y.
  surname: Fadamiro
  fullname: Fadamiro, Henry Y.
  email: fadamhy@auburn.edu
  organization: Department of Entomology & Plant Pathology, Auburn University, Auburn, Alabama 36849, USA, (phone: +1-334-844-5098; fax: +1-334-844-5005)
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SSID ssj0028808
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Snippet Both cis‐ and trans‐2‐methyl‐6‐undecylpiperidines, MC11P, have been previously reported as the major components of the venom of alate queens of the imported...
Both cis- and trans-2-methyl-6-undecylpiperidines, MC11P, have been previously reported as the major components of the venom of alate queens of the imported...
Abstract Both cis‐ and trans ‐2‐methyl‐6‐undecylpiperidines, MC11P, have been previously reported as the major components of the venom of alate queens of the...
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SubjectTerms Alate queens
Alkaloids
Alkaloids - chemistry
Alkaloids - genetics
Animals
Ant Venoms - chemistry
Ant Venoms - genetics
Ants - chemistry
Ants - genetics
Fire ants
Gas Chromatography-Mass Spectrometry
Hybridization
Hybridization, Genetic
Solenopsis invicta
Solenopsis richteri
Stereoisomerism
United States
Venom alkaloids
Title Similarity in Venom Alkaloid Chemistry of Alate Queens of Imported Fire Ants: Implication for Hybridization between Solenopsis richteri and S. invicta in the Southern United States
URI https://api.istex.fr/ark:/67375/WNG-FCZN2FD5-B/fulltext.pdf
https://onlinelibrary.wiley.com/doi/abs/10.1002%2Fcbdv.201100109
https://www.ncbi.nlm.nih.gov/pubmed/22492489
https://search.proquest.com/docview/993908570
Volume 9
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