Vani T., Raghavendra A. S.
Department of Plant Sciences, School of Life Sciences, University of Hyderabad, Hyderabad 500 134, India.
Plant Physiol. 1994 Aug;105(4):1263-1268. doi: 10.1104/pp.105.4.1263.
The respiratory properties of guard cell protoplasts (GCP) were examined in comparison with those of mesophyll protoplasts (MCP) from the same leaves of pea (Pisum sativum L. cv Arkel). The rates of respiratory O2 uptake by GCP were extremely high (280 [mu]mol mg-1 Chl h-1) and were several times greater than those of MCP. On the other hand, the rates of photosynthetic O2 evolution by GCP were similar to those of MCP. Also on the basis of protoplast volume, the respiratory rates of GCP were higher: more than three times those of MCP. The enzymes of the tricarboxylic acid cycle, per unit protein or unit protoplast volume, had a 2- to 5-fold higher activity in GCP than in MCP, indicating an enrichment of mitochondrial activity in GCP relative to that in MCP. Respiratory inhibitors were used to assess the activity of the cytochrome (cyanide-sensitive) and alternative (cyanide-resistant) pathways in GCP and MCP. The inhibition of respiration by KCN or antimycin A was more in GCP than that in MCP. The marked inhibition of respiratory O2 uptake by salicylhydroxamic acid in the presence of KCN showed the presence of the cyanide-resistant pathway in GCP. The activity of the cyanide-resistant electron transport path constituted only one-third of total respiration in GCP but accounted for two-thirds of respiration in MCP. The alternative pathway was not completely engaged in GCP but reached its full capacity in MCP.
以豌豆(Pisum sativum L. cv Arkel)同一叶片的叶肉原生质体(MCP)为对照,对保卫细胞原生质体(GCP)的呼吸特性进行了研究。GCP的呼吸耗氧速率极高(280 μmol mg-1 Chl h-1),是MCP的数倍。另一方面,GCP的光合放氧速率与MCP相似。同样基于原生质体体积,GCP的呼吸速率更高:是MCP的三倍多。三羧酸循环的酶,以每单位蛋白质或单位原生质体体积计算,在GCP中的活性比MCP高2至5倍,这表明相对于MCP,GCP中线粒体活性增强。使用呼吸抑制剂来评估GCP和MCP中细胞色素(对氰化物敏感)和交替(对氰化物不敏感)途径的活性。KCN或抗霉素A对GCP呼吸的抑制作用比对MCP的更强。在KCN存在下,水杨羟肟酸对呼吸耗氧的显著抑制表明GCP中存在对氰化物不敏感的途径。对氰化物不敏感的电子传递途径的活性在GCP中仅占总呼吸的三分之一,但在MCP中占总呼吸的三分之二。交替途径在GCP中未完全发挥作用,但在MCP中达到了其全部能力。