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在单菌培养中,丛枝菌根(AM)真菌根内球囊霉与野生型或AM缺陷型表型的未转化番茄根之间的相互作用。

Interactions between the arbuscular mycorrhizal (AM) fungus Glomus intraradices and nontransformed tomato roots of either wild-type or AM-defective phenotypes in monoxenic cultures.

作者信息

Bago Alberto, Cano Custodia, Toussaint Jean-Patrick, Smith Sally, Dickson Sandy

机构信息

Estación Experimental del Zaidín (CSIC), calle Profesor Albareda 1, Granada, 18008, Spain.

Soil and Land Systems, School of Earth and Environmental Sciences, Waite Campus, The University of Adelaide, Adelaide, 5005, Australia.

出版信息

Mycorrhiza. 2006 Sep;16(6):429-436. doi: 10.1007/s00572-006-0054-9. Epub 2006 Apr 29.

Abstract

Monoxenic symbioses between the arbuscular mycorrhizal (AM) fungus Glomus intraradices and two nontransformed tomato root organ cultures (ROCs) were established. Wild-type tomato ROC from cultivar "RioGrande 76R" was employed as a control for mycorrhizal colonization and compared with its mutant line (rmc), which exhibits a highly reduced mycorrhizal colonization (rmc) phenotype. Structural features of the two root lines were similar when grown either in soil or under in vitro conditions, indicating that neither monoxenic culturing nor the rmc mutation affected root development or behavior. Colonization by G. intraradices in monoxenic culture of the wild-type line was low (<10%) but supported extensive development of extraradical mycelium, branched absorbing structures, and spores. The reduced colonization of rmc under monoxenic conditions (0.6%) was similar to that observed previously in soil. Extraradical development of runner hyphae was low and proportional to internal colonization. Few spores were produced. These results might suggest that carbon transfer may be modified in the rmc mutant. Our results support the usefulness of monoxenically obtained mycorrhizas for investigation of AM colonization and intraradical symbiotic functioning.

摘要

建立了丛枝菌根(AM)真菌根内球囊霉与两种未转化的番茄根器官培养物(ROC)之间的单菌共生关系。来自“RioGrande 76R”品种的野生型番茄ROC被用作菌根定殖的对照,并与其突变系(rmc)进行比较,该突变系表现出菌根定殖高度降低(rmc)的表型。当在土壤中或体外条件下生长时,两个根系的结构特征相似,这表明单菌培养和rmc突变均未影响根系发育或行为。在野生型品系的单菌培养中,根内球囊霉的定殖率较低(<10%),但支持了根外菌丝体、分支吸收结构和孢子的广泛发育。在单菌条件下rmc的定殖率降低(0.6%)与之前在土壤中观察到的情况相似。匍匐菌丝的根外发育较低,且与内部定殖成比例。产生的孢子很少。这些结果可能表明rmc突变体中的碳转移可能发生了改变。我们的结果支持了通过单菌获得的菌根在研究AM定殖和根内共生功能方面的有用性。

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