Nap J P, van de Wiel C, Spaink H P, Moerman M, van den Heuvel M, Djordjevic M A, van Lammeren A A, van Kammen A, Bisseling T
Department of Molecular Biology, Agricultural University, Wageningen, The Netherlands.
Mol Plant Microbe Interact. 1989 Mar-Apr;2(2):53-63. doi: 10.1094/mpmi-2-053.
The role of the Rhizobium nod genes in the induction of nodulin gene expression was examined by analyzing nodules formed on vetch roots by bacterial strains containing only the nod region. Introduction of an 11-kb cloned nod region of the R. leguminosarum sym plasmid pRL1JI into sym plasmid-cured rhizobia conferred on the recipient strains the ability to induce nodules in which all nodulin genes were expressed. This proves that from the sym plasmid only the nod region is involved in the induction of nodulin gene expression. A transconjugant of Agrobacterium carrying the same nod region induces nodules in which only early nodulin gene expression is detected. Thus, the nod region is essential for the induction of early nodulin gene expression. In this case, nodule cytology may indicate that a defense response of the plant interferes with the induction of late nodulin gene expression. Indirect evidence is presented that indeed the Rhizobium nod genes are also in some way involved in the induction of the expression of late noduling genes. The combination between histological data and pattern of nodulin gene expression furthermore reveals a correlation between nodule structure and nodulin gene expression. This correlation may aid in speculations about the functions of nodulins.
通过分析仅含有结瘤区域的细菌菌株在巢菜根上形成的根瘤,研究了根瘤菌结瘤基因在诱导根瘤素基因表达中的作用。将豌豆根瘤菌共生质粒pRL1JI的一个11kb克隆结瘤区域导入共生质粒缺失的根瘤菌中,使受体菌株具有诱导根瘤的能力,在这些根瘤中所有根瘤素基因均表达。这证明从共生质粒来看,只有结瘤区域参与根瘤素基因表达的诱导。携带相同结瘤区域的农杆菌转接合子诱导的根瘤中,仅检测到早期根瘤素基因的表达。因此,结瘤区域对于早期根瘤素基因表达的诱导至关重要。在这种情况下,根瘤细胞学可能表明植物的防御反应干扰了晚期根瘤素基因表达的诱导。有间接证据表明,根瘤菌结瘤基因确实也在某种程度上参与了晚期结瘤基因表达的诱导。组织学数据与根瘤素基因表达模式之间的结合进一步揭示了根瘤结构与根瘤素基因表达之间的相关性。这种相关性可能有助于推测根瘤素的功能。