Akin D E, Amos H E
Field Crops Utilization and Marketing Research Laboratory, Richard B. Russell Agricultural Research Center, Athens, Georgia 30604.
Appl Microbiol. 1975 May;29(5):692-701. doi: 10.1128/am.29.5.692-701.1975.
The association of rumen bacteria with specific leaf tissues of the forage grass Kentucky-31 tall fescue (Festuca arundinacea Schreb.) during in vitro degradation was investigated by transmission and scanning electron microscopy. Examination of degraded leaf cross-sections revealed differential rates of tissue degradation in that the cell walls of the mesophyll and pholem were degraded prior to those of the outer bundle sheath and epidermis. Rumen bacteria appeared to degrade the mesophyll, in some cases, and phloem without prior attachment to the plant cell walls. The degradation of bundle sheath and epidermal cell walls appeared to be preceded by attachment of bacteria to the plant cell wall. Ultrastructural features apparently involved in the adhesion of large cocci to plant cells were observed by transmission and scanning electron microscopy. The physical association between plant and rumen bacterial cells during degradation apparently varies with tissue types. Bacterial attachment, by extracellular features in some microorganisms, is required prior to degradation of the more resistant tissues.
通过透射电子显微镜和扫描电子显微镜研究了瘤胃细菌与饲草肯塔基31高羊茅(Festuca arundinacea Schreb.)特定叶片组织在体外降解过程中的关联。对降解叶片横截面的检查揭示了不同的组织降解速率,即叶肉和韧皮部的细胞壁在外部维管束鞘和表皮的细胞壁之前被降解。瘤胃细菌在某些情况下似乎在未预先附着于植物细胞壁的情况下就降解了叶肉和韧皮部。维管束鞘和表皮细胞壁的降解似乎是在细菌附着于植物细胞壁之后发生的。通过透射电子显微镜和扫描电子显微镜观察到了显然参与大球菌与植物细胞黏附的超微结构特征。在降解过程中,植物与瘤胃细菌细胞之间的物理关联显然因组织类型而异。在降解更具抗性的组织之前,某些微生物需要通过细胞外特征进行细菌附着。