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Effects of Boron on Rhizobium-Legume Cell-Surface Interactions and Nodule Development.

机译:硼对根瘤菌-豆科植物细胞表面相互作用和根瘤发育的影响。

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摘要

Boron (B) is an essential micronutrient for the development of nitrogen-fixing root nodules in pea (Pisum sativum). By using monoclonal antibodies that recognize specific glycoconjugate components implicated in legume root-nodule development, we investigated the effects of low B on the formation of infection threads and the colonization of pea nodules by Rhizobium leguminosarum bv viciae. In B-deficient nodules the proportion of infected host cells was much lower than in nodules from plants supplied with normal quantities of B. Moreover, the host cells often developed enlarged and abnormally shaped infection threads that frequently burst, releasing bacteria into damaged host cells. There was also an over-production of plant matrix material in which the rhizobial cells were embedded during their progression through the infection thread. Furthermore, in a series of in vitro binding studies, we demonstrated that the presence of B can change the affinity with which the bacterial cell surface interacts with the peribacteroid membrane glycocalyx relative to its interaction with intercellular plant matrix glycoprotein. From these observations we suggest that B plays an important role in mediating cell-surface interactions that lead to endocytosis of rhizobia by host cells and hence to the correct establishment of the symbiosis between pea and Rhizobium.
机译:硼(B)是豌豆(Pisum sativum)固氮根瘤发育的必需微量营养素。通过使用识别豆科植物根瘤发育过程中涉及的特定糖缀合物成分的单克隆抗体,我们研究了低B对豆根瘤菌根瘤菌感染线的形成和豌豆根瘤定植的影响。在缺乏B的根瘤中,被感染的宿主细胞的比例要比正常供应B的植物中的根瘤低得多。而且,宿主细胞通常会形成扩大且形状异常的感染线,并经常破裂,从而将细菌释放到受损的宿主细胞中。还存在植物基质材料的过量生产,其中根瘤菌细胞在其通过感染线的进程中被嵌入其中。此外,在一系列的体外结合研究中,我们证明了B的存在相对于其与细胞间植物基质糖蛋白的相互作用,可以改变细菌细胞表面与类细菌膜糖萼相互作用的亲和力。根据这些观察结果,我们认为B在介导细胞表面相互作用中起重要作用,该相互作用导致宿主细胞内生根瘤菌内吞,从而正确建立豌豆和根瘤菌之间的共生关系。

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