Literature DB >> 16404956

Genetics of symbiosis in Lotus japonicus: recombinant inbred lines, comparative genetic maps, and map position of 35 symbiotic loci.

Niels Sandal1, Thomas Rørby Petersen, Jeremy Murray, Yosuke Umehara, Bogumil Karas, Koji Yano, Hirotaka Kumagai, Makoto Yoshikawa, Katsuharu Saito, Masaki Hayashi, Yasuhiro Murakami, Xinwang Wang, Tsuneo Hakoyama, Haruko Imaizumi-Anraku, Shusei Sato, Tomohiko Kato, Wenli Chen, Md Shakhawat Hossain, Satoshi Shibata, Trevor L Wang, Keisuke Yokota, Knud Larsen, Norihito Kanamori, Esben Madsen, Simona Radutoiu, Lene H Madsen, Talida Gratiela Radu, Lene Krusell, Yasuhiro Ooki, Mari Banba, Marco Betti, Nicolas Rispail, Leif Skøt, Elaine Tuck, Jillian Perry, Satoko Yoshida, Kate Vickers, Jodie Pike, Lonneke Mulder, Myriam Charpentier, Judith Müller, Ryo Ohtomo, Tomoko Kojima, Shotaro Ando, Antonio J Marquez, Peter M Gresshoff, Kyuya Harada, Judith Webb, Shingo Hata, Norio Suganuma, Hiroshi Kouchi, Shinji Kawasaki, Satoshi Tabata, Makoto Hayashi, Martin Parniske, Krzysztof Szczyglowski, Masayoshi Kawaguchi, Jens Stougaard.   

Abstract

Development of molecular tools for the analysis of the plant genetic contribution to rhizobial and mycorrhizal symbiosis has provided major advances in our understanding of plant-microbe interactions, and several key symbiotic genes have been identified and characterized. In order to increase the efficiency of genetic analysis in the model legume Lotus japonicus, we present here a selection of improved genetic tools. The two genetic linkage maps previously developed from an interspecific cross between L. japonicus Gifu and L. filicaulis, and an intraspecific cross between the two ecotypes L. japonicus Gifu and L. japonicus MG-20, were aligned through a set of anchor markers. Regions of linkage groups, where genetic resolution is obtained preferentially using one or the other parental combination, are highlighted. Additional genetic resolution and stabilized mapping populations were obtained in recombinant inbred lines derived by a single seed descent from the two populations. For faster mapping of new loci, a selection of reliable markers spread over the chromosome arms provides a common framework for more efficient identification of new alleles and new symbiotic loci among uncharacterized mutant lines. Combining resources from the Lotus community, map positions of a large collection of symbiotic loci are provided together with alleles and closely linked molecular markers. Altogether, this establishes a common genetic resource for Lotus spp. A web-based version will enable this resource to be curated and updated regularly.

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Year:  2006        PMID: 16404956     DOI: 10.1094/MPMI-19-0080

Source DB:  PubMed          Journal:  Mol Plant Microbe Interact        ISSN: 0894-0282            Impact factor:   4.171


  27 in total

1.  Quantitative trait locus analysis of symbiotic nitrogen fixation activity in the model legume Lotus japonicus.

Authors:  Akiyoshi Tominaga; Takahiro Gondo; Ryo Akashi; Shao-Hui Zheng; Susumu Arima; Akihiro Suzuki
Journal:  J Plant Res       Date:  2011-10-19       Impact factor: 2.629

2.  A novel ankyrin-repeat membrane protein, IGN1, is required for persistence of nitrogen-fixing symbiosis in root nodules of Lotus japonicus.

Authors:  Hirotaka Kumagai; Tsuneo Hakoyama; Yosuke Umehara; Shusei Sato; Takakazu Kaneko; Satoshi Tabata; Hiroshi Kouchi
Journal:  Plant Physiol       Date:  2007-02-02       Impact factor: 8.340

3.  Two microRNAs linked to nodule infection and nitrogen-fixing ability in the legume Lotus japonicus.

Authors:  Ana De Luis; Katharina Markmann; Valérie Cognat; Dennis B Holt; Myriam Charpentier; Martin Parniske; Jens Stougaard; Olivier Voinnet
Journal:  Plant Physiol       Date:  2012-10-15       Impact factor: 8.340

Review 4.  Transcription factors network in root endosymbiosis establishment and development.

Authors:  Issa Diédhiou; Diaga Diouf
Journal:  World J Microbiol Biotechnol       Date:  2018-02-15       Impact factor: 3.312

5.  Atypical Receptor Kinase RINRK1 Required for Rhizobial Infection But Not Nodule Development in Lotus japonicus.

Authors:  Xiaolin Li; Zhiqiong Zheng; Xiangxiao Kong; Ji Xu; Liping Qiu; Jongho Sun; Dugald Reid; Haojie Jin; Stig U Andersen; Giles E D Oldroyd; Jens Stougaard; J Allan Downie; Fang Xie
Journal:  Plant Physiol       Date:  2019-08-13       Impact factor: 8.340

6.  Lotus japonicus nodulation requires two GRAS domain regulators, one of which is functionally conserved in a non-legume.

Authors:  Anne B Heckmann; Fabien Lombardo; Hiroki Miwa; Jillian A Perry; Sue Bunnewell; Martin Parniske; Trevor L Wang; J Allan Downie
Journal:  Plant Physiol       Date:  2006-10-27       Impact factor: 8.340

7.  Ecotypes of the model legume Lotus japonicus vary in their interaction phenotypes with the root-knot nematode Meloidogyne incognita.

Authors:  H L Cabrera Poch; R H Manzanilla López; S J Clark
Journal:  Ann Bot       Date:  2007-05-02       Impact factor: 4.357

8.  The first SSR-based genetic linkage map for cultivated groundnut (Arachis hypogaea L.).

Authors:  R K Varshney; D J Bertioli; M C Moretzsohn; V Vadez; L Krishnamurthy; R Aruna; S N Nigam; B J Moss; K Seetha; K Ravi; G He; S J Knapp; D A Hoisington
Journal:  Theor Appl Genet       Date:  2008-12-02       Impact factor: 5.699

9.  Legume anchor markers link syntenic regions between Phaseolus vulgaris, Lotus japonicus, Medicago truncatula and Arachis.

Authors:  Birgit Kristine Hougaard; Lene Heegaard Madsen; Niels Sandal; Marcio de Carvalho Moretzsohn; Jakob Fredslund; Leif Schauser; Anna Marie Nielsen; Trine Rohde; Shusei Sato; Satoshi Tabata; David John Bertioli; Jens Stougaard
Journal:  Genetics       Date:  2008-08-09       Impact factor: 4.562

10.  An analysis of synteny of Arachis with Lotus and Medicago sheds new light on the structure, stability and evolution of legume genomes.

Authors:  David J Bertioli; Marcio C Moretzsohn; Lene H Madsen; Niels Sandal; Soraya C M Leal-Bertioli; Patricia M Guimarães; Birgit K Hougaard; Jakob Fredslund; Leif Schauser; Anna M Nielsen; Shusei Sato; Satoshi Tabata; Steven B Cannon; Jens Stougaard
Journal:  BMC Genomics       Date:  2009-01-23       Impact factor: 3.969

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