Kumar Anil, Cousins Donna R, Liu Cheng-Wu, Xu Ping, Murray Jeremy D
National Key Laboratory of Plant Molecular Genetics, CAS-JIC Centre of Excellence for Plant and Microbial Science (CEPAMS), CAS Center for Excellence in Molecular and Plant Sciences, Institute of Plant Physiology and Ecology, Chinese Academy of Sciences, Shanghai 200032, China.
Cell and Developmental Biology, John Innes Centre, Norwich Research Park, Norwich NR4 7UH, UK.
Plants (Basel). 2020 Jan 6;9(1):71. doi: 10.3390/plants9010071.
Most legumes can engage in symbiosis with N-fixing bacteria called rhizobia. This symbiosis, called nodulation, evolved from the more widespread symbiosis that most land plants form with arbuscular mycorrhiza, which is reflected in a common requirement of certain genes for both these symbioses. One key nodulation gene, (), has been intensively studied. Mutants in are unable to form nodules, which has made it difficult to identify downstream genes under the control of NIN. The analysis of data from our recent transcriptomics study revealed that some genes with an altered expression of during nodulation are upregulated in mycorrhizal roots. In addition, another study reported the decreased colonization of roots by arbuscular mycorrhiza. We therefore investigated a role for NIN in mycorrhiza formation. Our time course study, using two alleles with differing genetic backgrounds, suggests that that loss of NIN does not affect colonization of roots, either in the presence or absence of rhizobia. This, and recent phylogenetic analyses showing that the loss of NIN is correlated with loss of nodulation in the FaFaCuRo clade, but not with the ability to form mycorrhiza, argue against NIN being required for arbuscular mycorrhization in legumes.
大多数豆科植物能够与被称为根瘤菌的固氮细菌形成共生关系。这种被称为结瘤的共生关系,是从大多数陆地植物与丛枝菌根形成的更为广泛的共生关系进化而来的,这反映在这两种共生关系对某些基因的共同需求上。一个关键的结瘤基因,(),已经得到了深入研究。该基因的突变体无法形成根瘤,这使得难以鉴定受NIN控制的下游基因。对我们最近转录组学研究数据的分析表明,一些在结瘤过程中NIN表达发生改变的基因在菌根根中上调。此外,另一项研究报道了丛枝菌根在()根上的定殖减少。因此,我们研究了NIN在菌根形成中的作用。我们使用具有不同遗传背景的两个NIN等位基因进行的时间进程研究表明,无论有无根瘤菌,NIN的缺失都不会影响()根的定殖。这一点,以及最近的系统发育分析表明,NIN的缺失与FaFaCuRo分支中结瘤的丧失相关,但与形成菌根的能力无关,这表明NIN并非豆科植物丛枝菌根化所必需。