United States Department of Agriculture, Science and Education Administration Federal Research, and the Department of Agronomy and Plant Genetics, The University of Minnesota, 1509 Gortner Avenue, St. Paul, Minnesota 55108.
Plant Physiol. 1979 Jul;64(1):1-8. doi: 10.1104/pp.64.1.1.
Nitrogenase-dependent acetylene reduction, nodule function, and nodule regrowth were studied during vegetative regrowth of harvested (detopped) alfalfa (Medicago sativa L.) seedlings grown in the glasshouse. Compared with controls, harvesting caused an 88% decline in acetylene reduction capacity of detached root systems within 24 hours. Acetylene reduction in harvested plants remained low for 13 days, then increased to a level comparable to the controls by day 18.Protease activity increased in nodules from harvested plants, reached a maximum at day 7 after harvest, and then declined to a level almost equal to the control by day 22 after harvest. Soluble protein and leghemoglobin decreased in nodules from harvested plants in an inverse relationship to protease activity.Nitrate reductase activity of nodules from harvested plants increased significantly within 24 hours and was inversely associated with acetylene reduction. The difference in nitrate reductase between nodules from harvested plants and control plants became less evident as shoot regrowth occurred and as acetylene reduction increased in the harvested plants.No massive loss of nodules occurred after harvest as evidenced by little net change in nodule fresh weight. There was, however, a rapid localized senescence which occurred in nodules of harvested plants. Histology of nodules from harvested plants showed that they degenerated at the proximal end after harvest. Starch in the nodule was depleted by 10 days after harvest. The meristem and vascular bundles of nodules from harvested plants remained intact. The senescent nodules began to regrow and fix nitrogen after shoot growth resumed.
在温室中种植的收获(去顶)苜蓿(Medicago sativa L.)幼苗的营养生长再生期间,研究了固氮酶依赖的乙炔还原、根瘤功能和根瘤再生。与对照相比,收获在 24 小时内导致分离根系的乙炔还原能力下降 88%。收获植物的乙炔还原在 13 天内仍然很低,然后在第 18 天增加到与对照相当的水平。收获植物的根瘤中的蛋白酶活性增加,在收获后第 7 天达到最大值,然后在收获后第 22 天下降到几乎与对照相等的水平。收获植物根瘤中的可溶性蛋白和豆血红蛋白与蛋白酶活性呈反比下降。收获植物根瘤中的硝酸还原酶活性在 24 小时内显著增加,与乙炔还原呈负相关。随着茎的再生和收获植物中乙炔还原的增加,收获植物根瘤和对照植物根瘤之间的硝酸还原酶差异变得不那么明显。收获后并没有大量的根瘤损失,这可以从根瘤鲜重的微小净变化中得到证明。然而,在收获植物的根瘤中发生了快速的局部衰老。收获植物根瘤的组织学显示,它们在收获后在近端端退化。收获后 10 天,根瘤中的淀粉被耗尽。收获植物根瘤的分生组织和维管束保持完整。当茎生长恢复后,衰老的根瘤开始再生并固定氮。