Stuiver C E.E., De Kok L J.
Department of Plant Biology, University of Groningen, PO Box 14, 9750, Haren, The Netherlands
Environ Exp Bot. 2001 Aug;46(1):29-36. doi: 10.1016/s0098-8472(01)00080-6.
The uptake of hydrogen sulfide (H(2)S) by shoots of curly kale (Brassica oleracea) showed saturation kinetics with respect to the atmospheric concentration. The kinetics are largely determined by the rate of metabolism of the absorbed H(2)S into cysteine, catalyzed by O-acetylserine (thiol)lyase, and can be described by the Michaelis-Menten equation. When B. oleracea was grown under sulfate (SO(4)(2-))-deprived conditions, plants developed sulfur (S) deficiency symptoms and H(2)S uptake kinetics were substantially altered. Shoots of SO(4)(2-)-deprived plants had a lower affinity to H(2)S uptake, whereas the maximal H(2)S uptake rate was higher. When SO(4)(2-)-deprived plants were simultaneously exposed to 0.2 &mgr;l l(-1) H(2)S all S deficiency symptoms disappeared and H(2)S uptake kinetics returned rapidly to values observed for S-sufficient shoots. The activity of the H(2)S-fixating enzyme O-acetylserine (thiol)lyase was hardly affected upon either prolonged H(2)S exposure or SO(4)(2-) deprivation. Evidently, the activity of O-acetylserine (thiol)lyase was not the rate-limiting step in the H(2)S uptake by shoots. The significance of the in situ availability and rate of synthesis of the substrate O-acetylserine for O-acetylserine (thiol)lyase as determining factor in the uptake kinetics of H(2)S needs further evaluation.
羽衣甘蓝(Brassica oleracea)嫩枝对硫化氢(H₂S)的吸收相对于大气浓度呈现饱和动力学。该动力学很大程度上由吸收的H₂S代谢为半胱氨酸的速率决定,此过程由O - 乙酰丝氨酸(硫醇)裂解酶催化,并且可用米氏方程描述。当羽衣甘蓝在缺硫酸盐(SO₄²⁻)条件下生长时,植物出现硫(S)缺乏症状,H₂S吸收动力学也发生了显著改变。缺SO₄²⁻植物的嫩枝对H₂S吸收的亲和力较低,而最大H₂S吸收速率较高。当缺SO₄²⁻植物同时暴露于0.2 μl l⁻¹ H₂S时,所有S缺乏症状消失,H₂S吸收动力学迅速恢复到硫充足嫩枝所观察到的值。H₂S固定酶O - 乙酰丝氨酸(硫醇)裂解酶的活性在长时间暴露于H₂S或缺SO₄²⁻情况下几乎不受影响。显然,O - 乙酰丝氨酸(硫醇)裂解酶的活性不是嫩枝吸收H₂S的限速步骤。对于H₂S吸收动力学而言,作为决定因素的底物O - 乙酰丝氨酸的原位可用性和合成速率的重要性需要进一步评估。