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  6. Transgenic soybean overexpressing GmSAMT1 exhibits resistance to multiple-HG types of soybean cyst nematode Heterodera glycines
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Transgenic soybean overexpressing GmSAMT1 exhibits resistance to multiple-HG types of soybean cyst nematode Heterodera glycines

Source Publication
Plant Biotechnology Journal
Date Issued
May 23, 2016
Author(s)
Lin, Jingyu
Mazarei, Mitra  
Zhao, Nan
Hatcher, Catherine N.
Wuddineh, Wegi A.
Rudis, Mary  
Tschaplinski, Timothy J.
Pantalone, Vincent R.
Arelli, Prakash R.
Hewezi, Tarek  
Chen, Feng  
Stewart, Neal  
DOI
10.1111/pbi.12566
Permanent URI
https://trace.tennessee.edu/handle/20.500.14382/50525
Abstract

Soybean (Glycine max (L.) Merr.) salicylic acid methyl transferase (GmSAMT1) catalyses the conversion of salicylic acid to methyl salicylate. Prior results showed that when GmSAMT1 was overexpressed in transgenic soybean hairy roots, resistance is conferred against soybean cyst nematode (SCN), Heterodera glycines Ichinohe. In this study, we produced transgenic soybean overexpressing GmSAMT1 and characterized their response to various SCN races. Transgenic plants conferred a significant reduction in the development of SCN HG type 1.2.5.7 (race 2), HG type 0 (race 3) and HG type 2.5.7 (race 5). Among transgenic lines, GmSAMT1 expression in roots was positively associated with SCN resistance. In some transgenic lines, there was a significant decrease in salicylic acid titer relative to control plants. No significant seed yield differences were observed between transgenics and control soybean plants grown in one greenhouse with 22 °C day/night temperature, whereas transgenic soybean had higher yield than controls grown a warmer greenhouse (27 °C day/23 °C night) temperature. In a 1-year field experiment in Knoxville, TN, there was no significant difference in seed yield between the transgenic and nontransgenic soybean under conditions with negligible SCN infection. We hypothesize that GmSAMT1 expression affects salicylic acid biosynthesis, which, in turn, attenuates SCN development, without negative consequences to soybean yield or other morphological traits. Thus, we conclude that GmSAMT1 overexpression confers broad resistance to multiple SCN races, which would be potentially applicable to commercial production.

Subjects

salicylic acid methyl...

transgenic soybean

soybean cyst nematode...

gene expression

metabolite

female index

yield

Comments

This article was published openly thanks to the University of Tennessee Open Publishing Support Fund.


Licensed under a Creative Commons Attribution 4.0 International license.

Recommended Citation
Lin, J., Mazarei, M., Zhao, N., Hatcher, C.N., Wuddineh, W.A., Rudis, M., Tschaplinski, T.J., Pantalone, V.R., Arelli, P.R., Hewezi, T., Chen, F., Stewart, C.N. Jr. (2016) Transgenic soybean overexpressing GmSAMT1 exhibits resistance to multiple-HG types of soybean cyst nematode Heterodera glycines. Plant Biotechnology Journal 14, no. 11. doi: 10.1111/pbi.12566
Submission Type
Publisher's Version
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Neal_Stewart_PlantSci_TransgenicSoybean_2016.pdf

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525.75 KB

Format

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Checksum (MD5)

ceb265d41de246ca4b99786ce6d4b4bd


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