Biology Department UMC 45, Utah State University, Logan, Utah 84322.
Plant Physiol. 1983 Dec;73(4):1020-3. doi: 10.1104/pp.73.4.1020.
Macromolecules present in low concentrations in xylem fluid of Medicago sativa L. var DuPuits will increase the resistance to xylem liquid flow. This increase in resistance was found to be reversible by backflushing the xylem. Autoradiography showed that very large molecules do not pass through pit membrane pores. A comparison of pit membrane pore sizes to molecule sizes suggests that increased resistance to xylem flow is a result of plugging pit membrane pores. It was also found that pit membranes located in two parts of the plant differ in the apparent diameter of their pores and, thus, in their susceptibility to plugging by macromolecules. Macromolecules in xylem fluid may result from hostparasite interactions and may play a significant role in the outcome of the interaction.
在紫花苜蓿 DuPuits 变种木质部液中低浓度存在的大分子会增加木质部液流的阻力。通过反向冲洗木质部,发现这种阻力增加是可逆的。放射自显影显示,非常大的分子不能通过纹孔膜孔。将纹孔膜孔的大小与分子大小进行比较表明,对木质部流的阻力增加是纹孔膜孔堵塞的结果。还发现,位于植物两个部位的纹孔膜在其孔的表观直径以及因此对大分子堵塞的敏感性方面存在差异。木质部液中的大分子可能是宿主-寄生虫相互作用的结果,并可能在相互作用的结果中发挥重要作用。