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The soybean Rhg1 amino acid transporter gene alters glutamate homeostasis and jasmonic acid‐induced resistance to soybean cyst nematode

Rhg1 (resistance to Heterodera glycines 1) is an important locus that contributes to resistance against soybean cyst nematode (SCN; Heterodera glycines Ichinohe), which is the most economically damaging disease of soybean worldwide. Simultaneous overexpression of three genes encoding a predicted ami...

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Autores principales: Guo, Wei, Zhang, Feng, Bao, Aili, You, Qingbo, Li, Zeyu, Chen, Jingsheng, Cheng, Yihui, Zhao, Wei, Shen, Xinjie, Zhou, Xinan, Jiao, Yongqing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6637870/
https://www.ncbi.nlm.nih.gov/pubmed/30264924
http://dx.doi.org/10.1111/mpp.12753
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author Guo, Wei
Zhang, Feng
Bao, Aili
You, Qingbo
Li, Zeyu
Chen, Jingsheng
Cheng, Yihui
Zhao, Wei
Shen, Xinjie
Zhou, Xinan
Jiao, Yongqing
author_facet Guo, Wei
Zhang, Feng
Bao, Aili
You, Qingbo
Li, Zeyu
Chen, Jingsheng
Cheng, Yihui
Zhao, Wei
Shen, Xinjie
Zhou, Xinan
Jiao, Yongqing
author_sort Guo, Wei
collection PubMed
description Rhg1 (resistance to Heterodera glycines 1) is an important locus that contributes to resistance against soybean cyst nematode (SCN; Heterodera glycines Ichinohe), which is the most economically damaging disease of soybean worldwide. Simultaneous overexpression of three genes encoding a predicted amino acid transporter, an α‐soluble N‐ethylmaleimide‐sensitive factor attachment protein (α‐SNAP) and a predicted wound‐induced protein resulted in resistance to SCN provided by this locus. However, the roles of two of these genes (excluding α‐SNAP) remain unknown. Here, we report the functional characterization of Glyma.18G022400, a gene at the Rhg1 locus that encodes the predicted amino acid transporter Rhg1‐GmAAT. Although the direct role of Rhg1‐GmAAT in glutamate transport was not demonstrated, multiple lines of evidence showed that Rhg1‐GmAAT impacts glutamic acid tolerance and glutamate transportation in soybean. Transcriptomic and metabolite profiling indicated that overexpression of Rhg1‐GmAAT activated the jasmonic acid (JA) pathway. Treatment with a JA biosynthesis inhibitor reduced the resistance provided by the Rhg1‐containing PI88788 to SCN, which suggested that the JA pathway might play a role in Rhg1‐mediated resistance to SCN. Our results could be helpful for the clarification of the mechanism of resistance to SCN provided by Rhg1 in soybean.
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spelling pubmed-66378702019-09-16 The soybean Rhg1 amino acid transporter gene alters glutamate homeostasis and jasmonic acid‐induced resistance to soybean cyst nematode Guo, Wei Zhang, Feng Bao, Aili You, Qingbo Li, Zeyu Chen, Jingsheng Cheng, Yihui Zhao, Wei Shen, Xinjie Zhou, Xinan Jiao, Yongqing Mol Plant Pathol Original Articles Rhg1 (resistance to Heterodera glycines 1) is an important locus that contributes to resistance against soybean cyst nematode (SCN; Heterodera glycines Ichinohe), which is the most economically damaging disease of soybean worldwide. Simultaneous overexpression of three genes encoding a predicted amino acid transporter, an α‐soluble N‐ethylmaleimide‐sensitive factor attachment protein (α‐SNAP) and a predicted wound‐induced protein resulted in resistance to SCN provided by this locus. However, the roles of two of these genes (excluding α‐SNAP) remain unknown. Here, we report the functional characterization of Glyma.18G022400, a gene at the Rhg1 locus that encodes the predicted amino acid transporter Rhg1‐GmAAT. Although the direct role of Rhg1‐GmAAT in glutamate transport was not demonstrated, multiple lines of evidence showed that Rhg1‐GmAAT impacts glutamic acid tolerance and glutamate transportation in soybean. Transcriptomic and metabolite profiling indicated that overexpression of Rhg1‐GmAAT activated the jasmonic acid (JA) pathway. Treatment with a JA biosynthesis inhibitor reduced the resistance provided by the Rhg1‐containing PI88788 to SCN, which suggested that the JA pathway might play a role in Rhg1‐mediated resistance to SCN. Our results could be helpful for the clarification of the mechanism of resistance to SCN provided by Rhg1 in soybean. John Wiley and Sons Inc. 2018-11-15 /pmc/articles/PMC6637870/ /pubmed/30264924 http://dx.doi.org/10.1111/mpp.12753 Text en © 2018 The Authors. Molecular Plant Pathology Published by BSPP and John Wiley & Sons Ltd This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Guo, Wei
Zhang, Feng
Bao, Aili
You, Qingbo
Li, Zeyu
Chen, Jingsheng
Cheng, Yihui
Zhao, Wei
Shen, Xinjie
Zhou, Xinan
Jiao, Yongqing
The soybean Rhg1 amino acid transporter gene alters glutamate homeostasis and jasmonic acid‐induced resistance to soybean cyst nematode
title The soybean Rhg1 amino acid transporter gene alters glutamate homeostasis and jasmonic acid‐induced resistance to soybean cyst nematode
title_full The soybean Rhg1 amino acid transporter gene alters glutamate homeostasis and jasmonic acid‐induced resistance to soybean cyst nematode
title_fullStr The soybean Rhg1 amino acid transporter gene alters glutamate homeostasis and jasmonic acid‐induced resistance to soybean cyst nematode
title_full_unstemmed The soybean Rhg1 amino acid transporter gene alters glutamate homeostasis and jasmonic acid‐induced resistance to soybean cyst nematode
title_short The soybean Rhg1 amino acid transporter gene alters glutamate homeostasis and jasmonic acid‐induced resistance to soybean cyst nematode
title_sort soybean rhg1 amino acid transporter gene alters glutamate homeostasis and jasmonic acid‐induced resistance to soybean cyst nematode
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6637870/
https://www.ncbi.nlm.nih.gov/pubmed/30264924
http://dx.doi.org/10.1111/mpp.12753
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