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QTL Mapping and Data Mining to Identify Genes Associated With the Sinorhizobium fredii HH103 T3SS Effector NopD in Soybean

In some legume–rhizobium symbioses, host specificity is influenced by rhizobial type III effectors-nodulation outer proteins (Nops). However, the genes encoding host proteins that interact with Nops remain unknown. In this study, we aimed to identify candidate soybean genes associated with NopD, one...

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Autores principales: Wang, Jinhui, Wang, Jieqi, Ma, Chao, Zhou, Ziqi, Yang, Decheng, Zheng, Junzan, Wang, Qi, Li, Huiwen, Zhou, Hongyang, Sun, Zhijun, Liu, Hanxi, Li, Jianyi, Chen, Lin, Kang, Qinglin, Qi, Zhaoming, Jiang, Hongwei, Zhu, Rongsheng, Wu, Xiaoxia, Liu, Chunyan, Chen, Qingshan, Xin, Dawei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7249737/
https://www.ncbi.nlm.nih.gov/pubmed/32508850
http://dx.doi.org/10.3389/fpls.2020.00453
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author Wang, Jinhui
Wang, Jieqi
Ma, Chao
Zhou, Ziqi
Yang, Decheng
Zheng, Junzan
Wang, Qi
Li, Huiwen
Zhou, Hongyang
Sun, Zhijun
Liu, Hanxi
Li, Jianyi
Chen, Lin
Kang, Qinglin
Qi, Zhaoming
Jiang, Hongwei
Zhu, Rongsheng
Wu, Xiaoxia
Liu, Chunyan
Chen, Qingshan
Xin, Dawei
author_facet Wang, Jinhui
Wang, Jieqi
Ma, Chao
Zhou, Ziqi
Yang, Decheng
Zheng, Junzan
Wang, Qi
Li, Huiwen
Zhou, Hongyang
Sun, Zhijun
Liu, Hanxi
Li, Jianyi
Chen, Lin
Kang, Qinglin
Qi, Zhaoming
Jiang, Hongwei
Zhu, Rongsheng
Wu, Xiaoxia
Liu, Chunyan
Chen, Qingshan
Xin, Dawei
author_sort Wang, Jinhui
collection PubMed
description In some legume–rhizobium symbioses, host specificity is influenced by rhizobial type III effectors-nodulation outer proteins (Nops). However, the genes encoding host proteins that interact with Nops remain unknown. In this study, we aimed to identify candidate soybean genes associated with NopD, one of the type III effectors of Sinorhizobium fredii HH103. The results showed that the expression pattern of NopD was analyzed in rhizobia induced by genistein. We also found NopD can be induced by TtsI, and NopD as a toxic effector can induce tobacco leaf death. In 10 soybean germplasms, NopD played a positively effect on nodule number (NN) and nodule dry weight (NDW) in nine germplasms, but not in Kenjian28. Significant phenotype of NN and NDW were identified between Dongnong594 and Charleston, Suinong14 and ZYD00006, respectively. To map the quantitative trait locus (QTL) associated with NopD, a recombinant inbred line (RIL) population derived from the cross between Dongnong594 and Charleston, and chromosome segment substitution lines (CSSLs) derived from Suinong14 and ZYD00006 were used. Two overlapping conditional QTL associated with NopD on chromosome 19 were identified. Two candidate genes were identified in the confident region of QTL, we found that NopD could influence the expression of Glyma.19g068600 (FBD/LRR) and expression of Glyma.19g069200 (PP2C) after HH103 infection. Haplotype analysis showed that different types of Glyma.19g069200 haplotypes could cause significant nodule phenotypic differences, but Glyma.19g068600 (FBD/LRR) was not. These results suggest that NopD promotes S. fredii HH103 infection via directly or indirectly regulating Glyma.19g068600 and Glyma.19g069200 expression during the establishment of symbiosis between rhizobia and soybean plants.
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spelling pubmed-72497372020-06-05 QTL Mapping and Data Mining to Identify Genes Associated With the Sinorhizobium fredii HH103 T3SS Effector NopD in Soybean Wang, Jinhui Wang, Jieqi Ma, Chao Zhou, Ziqi Yang, Decheng Zheng, Junzan Wang, Qi Li, Huiwen Zhou, Hongyang Sun, Zhijun Liu, Hanxi Li, Jianyi Chen, Lin Kang, Qinglin Qi, Zhaoming Jiang, Hongwei Zhu, Rongsheng Wu, Xiaoxia Liu, Chunyan Chen, Qingshan Xin, Dawei Front Plant Sci Plant Science In some legume–rhizobium symbioses, host specificity is influenced by rhizobial type III effectors-nodulation outer proteins (Nops). However, the genes encoding host proteins that interact with Nops remain unknown. In this study, we aimed to identify candidate soybean genes associated with NopD, one of the type III effectors of Sinorhizobium fredii HH103. The results showed that the expression pattern of NopD was analyzed in rhizobia induced by genistein. We also found NopD can be induced by TtsI, and NopD as a toxic effector can induce tobacco leaf death. In 10 soybean germplasms, NopD played a positively effect on nodule number (NN) and nodule dry weight (NDW) in nine germplasms, but not in Kenjian28. Significant phenotype of NN and NDW were identified between Dongnong594 and Charleston, Suinong14 and ZYD00006, respectively. To map the quantitative trait locus (QTL) associated with NopD, a recombinant inbred line (RIL) population derived from the cross between Dongnong594 and Charleston, and chromosome segment substitution lines (CSSLs) derived from Suinong14 and ZYD00006 were used. Two overlapping conditional QTL associated with NopD on chromosome 19 were identified. Two candidate genes were identified in the confident region of QTL, we found that NopD could influence the expression of Glyma.19g068600 (FBD/LRR) and expression of Glyma.19g069200 (PP2C) after HH103 infection. Haplotype analysis showed that different types of Glyma.19g069200 haplotypes could cause significant nodule phenotypic differences, but Glyma.19g068600 (FBD/LRR) was not. These results suggest that NopD promotes S. fredii HH103 infection via directly or indirectly regulating Glyma.19g068600 and Glyma.19g069200 expression during the establishment of symbiosis between rhizobia and soybean plants. Frontiers Media S.A. 2020-05-19 /pmc/articles/PMC7249737/ /pubmed/32508850 http://dx.doi.org/10.3389/fpls.2020.00453 Text en Copyright © 2020 Wang, Wang, Ma, Zhou, Yang, Zheng, Wang, Li, Zhou, Sun, Liu, Li, Chen, Kang, Qi, Jiang, Zhu, Wu, Liu, Chen and Xin. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Wang, Jinhui
Wang, Jieqi
Ma, Chao
Zhou, Ziqi
Yang, Decheng
Zheng, Junzan
Wang, Qi
Li, Huiwen
Zhou, Hongyang
Sun, Zhijun
Liu, Hanxi
Li, Jianyi
Chen, Lin
Kang, Qinglin
Qi, Zhaoming
Jiang, Hongwei
Zhu, Rongsheng
Wu, Xiaoxia
Liu, Chunyan
Chen, Qingshan
Xin, Dawei
QTL Mapping and Data Mining to Identify Genes Associated With the Sinorhizobium fredii HH103 T3SS Effector NopD in Soybean
title QTL Mapping and Data Mining to Identify Genes Associated With the Sinorhizobium fredii HH103 T3SS Effector NopD in Soybean
title_full QTL Mapping and Data Mining to Identify Genes Associated With the Sinorhizobium fredii HH103 T3SS Effector NopD in Soybean
title_fullStr QTL Mapping and Data Mining to Identify Genes Associated With the Sinorhizobium fredii HH103 T3SS Effector NopD in Soybean
title_full_unstemmed QTL Mapping and Data Mining to Identify Genes Associated With the Sinorhizobium fredii HH103 T3SS Effector NopD in Soybean
title_short QTL Mapping and Data Mining to Identify Genes Associated With the Sinorhizobium fredii HH103 T3SS Effector NopD in Soybean
title_sort qtl mapping and data mining to identify genes associated with the sinorhizobium fredii hh103 t3ss effector nopd in soybean
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7249737/
https://www.ncbi.nlm.nih.gov/pubmed/32508850
http://dx.doi.org/10.3389/fpls.2020.00453
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