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分泌物激发子和外部 pH 值对维纳斯捕蝇草 trap 裂片吸收 D-丙氨酸动力学的影响。

The influence of secretion elicitors and external pH on the kinetics of D-alanine uptake by the trap lobes of Dionaea muscipula Ellis (Venus's Flytrap).

机构信息

Botany School, University of Oxford, South Parks Road, OX1 3RA, Oxford, UK.

出版信息

Planta. 1983 Aug;158(4):312-9. doi: 10.1007/BF00397333.

Abstract

Simple kinetic techniques were used to examine the mechanism of D-alanine uptake by the adaxial surfaces of the trap lobes of Dionaea muscipula Ellis (Venus's Flytrap.) On the basis of these analyses, the uptake of D-alanine was found to depend on the time during which the trap lobes were inoculated with elicitors of secretion before excision and measurement of uptake. Disks taken from traps that had not been subjected to a preceding period of inoculation with secretion elicitors showed a low basal rate of uptake which was neither pH-dependent nor exhibited saturation with respect to external D-alanine concentration. Disks from preinoculated traps, on the other hand, displayed an enhanced rate of uptake which showed both pH-dependence and saturation with respect to external D-alanine concentration. The capacity for enhanced uptake was lost upon prolonged inoculation or when inoculation was stopped. Of the compounds tested, only elicitors of secretion caused an enhancement of uptake. The enhanced rate of D-alanine uptake is temperature-sensitive with a Q10 characteristic of a mediated process. Uncouplers cause an instantaneous abolition of uptake whereas the effects of terminal-oxidase inhibitors are time-dependent. The pH-dependence of uptake is inferred to result from an increased affinity of the carrier system for D-alanine at low pH values. Although the ionic state of D-alanine is relatively unaffected over the pH range examined, a decrease in the external pH from 6.0 to 3.8 decreases the apparent K m for uptake by four-fold but increases V max by only 30%. It is concluded that the acid secreted by the digestive glands of Dionaea plays a direct role in facilitating the uptake of amino acids from the trap cavity.

摘要

采用简单的动力学技术研究了 D-丙氨酸被维纳斯捕蝇草(Dionaea muscipula Ellis)的捕虫叶腹面吸收的机制。根据这些分析,D-丙氨酸的吸收取决于在切除和测量吸收之前,用分泌诱导剂接种捕虫叶的时间。取自未经过先前分泌诱导剂接种的捕虫器的圆盘显示出低基础吸收率,该吸收率既不受 pH 值影响,也不对外部 D-丙氨酸浓度表现出饱和。另一方面,来自预接种的捕虫器的圆盘显示出增强的吸收率,其表现出对外部 D-丙氨酸浓度的 pH 依赖性和饱和性。延长接种或停止接种会导致增强吸收的能力丧失。在所测试的化合物中,只有分泌诱导剂会引起吸收的增强。增强的 D-丙氨酸吸收速率对温度敏感,具有介导过程的 Q10 特征。解偶联剂会立即消除吸收,而末端氧化酶抑制剂的作用则是时间依赖性的。吸收的 pH 依赖性是由载体系统在低 pH 值下对 D-丙氨酸的亲和力增加引起的。尽管在研究的 pH 范围内 D-丙氨酸的离子状态相对不受影响,但外部 pH 值从 6.0 降低到 3.8 会使吸收的表观 K m 降低四倍,但仅使 V max 增加 30%。因此,可以得出结论,消化腺分泌的酸在促进从捕虫器腔中吸收氨基酸方面发挥直接作用。

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