Heard J, Caspi M, Dunn K
Department of Biology, Boston College, Chestnut Hill, MA 02167, USA.
Mol Plant Microbe Interact. 1997 Jul;10(5):665-76. doi: 10.1094/MPMI.1997.10.5.665.
Unique organs called nodules form on legume roots in response to intracellular infection by soil bacteria in the genus Rhizobium. This study describes a new MADS box gene, nmhC5, which along with nmh7 (J. Heard and K. Dunn, Proc. Natl. Acad. Sci. USA 92:5273-5277, 1995), is expressed in alfalfa (Medicago sativa) root nodules. Together, these genes represent the first putative transcription factors identified in nodules. Expression in a root-derived structure supports the growing sentiment that MADS box proteins have diverse roles in plant development. Comparison of the putative translation product of nmhC5 with those of other reported members of the MADS box family suggests that the overall structure of nmhC5 is conserved. Evolutionary analysis among the MADS box family showed that nmhC5 is orthologous to a root-expressed clone in Arabidopsis thaliana, agl17, and that nmh7 is similar to the floral subfamily with AP3 (DefA)/PI (Glo). Consistent with a prediction of homodimer formation, NMHC5 was shown to bind a CArG consensus sequence in vitro. In contrast, NMH7, which shows structural similarity to MADS box proteins that form heterodimers, did not bind the CArG element in an in vitro DNA-binding assay, suggesting the existence of an unknown dimer partner. The root-derived MADS box genes constitute a novel subfamily of vegetatively expressed MADS box genes. The evolutionary diversity between nmh7 and nmhC5 could represent an overall mechanistic conservation between plant developmental processes or could mean that nmh7 and nmhC5 make fundamentally different contributions to the development of the nodule.
作为对根瘤菌属土壤细菌细胞内感染的响应,豆科植物根上会形成一种名为根瘤的独特器官。本研究描述了一个新的MADS盒基因nmhC5,它与nmh7(J. 赫德和K. 邓恩,《美国国家科学院院刊》92:5273 - 5277,1995年)一起在苜蓿(紫花苜蓿)根瘤中表达。这些基因共同代表了在根瘤中鉴定出的首批假定转录因子。在根衍生结构中的表达支持了一种越来越强烈的观点,即MADS盒蛋白在植物发育中具有多种作用。将nmhC5的假定翻译产物与MADS盒家族其他已报道成员的产物进行比较表明,nmhC5的整体结构是保守的。MADS盒家族的进化分析表明,nmhC5与拟南芥中一个根表达克隆agl17是直系同源的,并且nmh7与具有AP3(DefA)/PI(Glo)的花亚家族相似。与同二聚体形成的预测一致,NMH C5在体外被证明能结合CArG共有序列。相比之下,与形成异二聚体的MADS盒蛋白结构相似的NMH7,在体外DNA结合试验中不结合CArG元件,这表明存在一个未知的二聚体伙伴。根衍生的MADS盒基因构成了一个营养体表达的MADS盒基因的新亚家族。nmh7和nmhC5之间的进化差异可能代表植物发育过程之间的整体机制保守性,或者可能意味着nmh7和nmhC5对根瘤发育做出了根本不同的贡献。