Department of Soils and Plant Nutrition, University of California, Berkeley, California 94720.
Plant Physiol. 1973 Jun;51(6):1099-101. doi: 10.1104/pp.51.6.1099.
Sugar beet plants (Beta vulgaris L. cv. F58-554H1) were germinated and cultured under standardized environmental conditions. The effects of K deficiency on photosynthetic and respiratory CO(2) exchange rates of attached leaves were studied under conditions of low Na supply by withholding both Na and K from the culture medium at cut-off (28 days after planting). Potassium and Na concentrations in the leaf blade and petiole decreased rapidly during the 8 days after cut-off, then more slowly.Photosynthetic CO(2) uptake per unit leaf area decreased rapidly with time after cut-off to 23% of the control rate in 17 days. Mesophyll resistance to CO(2) (r(m)) increased sharply after cut-off, r(m) eventually attaining 8.3 sec cm(-1). Leaf (mainly stomatal) diffusion resistance, r(1)', also increased rapidly from 4 days after cut-off, reaching 1.9 sec cm(-1) 13 days later. The photorespiratory evolution of CO(2) into CO(2)-free air decreased progressively after cut-off, but the rate of dark respiratory CO(2) evolution increased. It was concluded that withholding Na as well as K at cut-off increased the deleterious effects of K deficiency on photosynthesis and stomatal opening.
糖甜菜植株(Beta vulgaris L. cv. F58-554H1)在标准化的环境条件下发芽和培养。在低钠供应条件下,通过在培养基中同时去除钠和钾来研究钾缺乏对附着叶片光合和呼吸 CO 2 交换率的影响。在截止(种植后 28 天)后 8 天内,叶片和叶柄中的钾和 Na 浓度迅速下降,然后下降速度较慢。单位叶面积的光合 CO 2 摄取量随截止后时间的推移迅速下降,17 天内降至对照率的 23%。截止后,叶肉对 CO 2 的阻力(r(m))急剧增加,r(m)最终达到 8.3 sec cm(-1)。叶片(主要是气孔)扩散阻力 r(1)'也从截止后 4 天开始迅速增加,13 天后达到 1.9 sec cm(-1)。截止后,CO 2 向 CO 2 自由空气的光呼吸演化逐渐减少,但黑暗呼吸 CO 2 演化的速度增加。因此,可以得出结论,在截止时同时去除钠和钾会增加钾缺乏对光合作用和气孔开放的有害影响。