Sandal Niels, Petersen Thomas Rørby, Murray Jeremy, Umehara Yosuke, Karas Bogumil, Yano Koji, Kumagai Hirotaka, Yoshikawa Makoto, Saito Katsuharu, Hayashi Masaki, Murakami Yasuhiro, Wang Xinwang, Hakoyama Tsuneo, Imaizumi-Anraku Haruko, Sato Shusei, Kato Tomohiko, Chen Wenli, Hossain Md Shakhawat, Shibata Satoshi, Wang Trevor L, Yokota Keisuke, Larsen Knud, Kanamori Norihito, Madsen Esben, Radutoiu Simona, Madsen Lene H, Radu Talida Gratiela, Krusell Lene, Ooki Yasuhiro, Banba Mari, Betti Marco, Rispail Nicolas, Skøt Leif, Tuck Elaine, Perry Jillian, Yoshida Satoko, Vickers Kate, Pike Jodie, Mulder Lonneke, Charpentier Myriam, Müller Judith, Ohtomo Ryo, Kojima Tomoko, Ando Shotaro, Marquez Antonio J, Gresshoff Peter M, Harada Kyuya, Webb Judith, Hata Shingo, Suganuma Norio, Kouchi Hiroshi, Kawasaki Shinji, Tabata Satoshi, Hayashi Makoto, Parniske Martin, Szczyglowski Krzysztof, Kawaguchi Masayoshi, Stougaard Jens
Laboratory of Gene Expression, Department of Molecular Biology, University of Aarhus, Gustav Wieds Vej, Aarhus C, Denmark.
Mol Plant Microbe Interact. 2006 Jan;19(1):80-91. doi: 10.1094/MPMI-19-0080.
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.
用于分析植物对根瘤菌和菌根共生的遗传贡献的分子工具的发展,为我们理解植物 - 微生物相互作用带来了重大进展,并且已经鉴定和表征了几个关键的共生基因。为了提高模式豆科植物百脉根遗传分析的效率,我们在此展示一系列改进的遗传工具。先前从百脉根岐阜变种与丝状百脉根的种间杂交,以及百脉根岐阜变种和百脉根MG - 20两个生态型的种内杂交构建的两个遗传连锁图谱,通过一组锚定标记进行了比对。突出显示了连锁群区域,在这些区域中,优先使用一种或另一种亲本组合可获得遗传分辨率。通过从这两个群体中单粒传衍生的重组自交系获得了额外的遗传分辨率和稳定的作图群体。为了更快地定位新基因座,在染色体臂上分布的一组可靠标记为在未表征的突变系中更有效地鉴定新等位基因和新共生基因座提供了一个通用框架。结合来自百脉根群体的资源,提供了大量共生基因座的图谱位置以及等位基因和紧密连锁的分子标记。总之,这为百脉根属建立了一个共同的遗传资源。基于网络的版本将使该资源能够定期策划和更新。