John Innes Institute, Colney Lane, NR4 7UH, Norwich, UK.
Planta. 1988 Oct;175(4):452-9. doi: 10.1007/BF00393064.
Immunogold labelling has been used to determine the cellular distribution of glycine decarboxylase in leaves of C3, C3-C4 intermediate and C4 species in the genera Moricandia, Panicum, Flaveria and Mollugo. In the C3 species Moricandia foleyi and Panicum laxum, glycine decarboxylase was present in the mitochondria of both mesophyll and bundle-sheath cells. However, in all the C3-C4 intermediate (M. arvensis var. garamatum, M. nitens, M. sinaica, M. spinosa, M. suffruticosa, P. milioides, Flaveria floridana, F. linearis, Mollugo verticillata) and C4 (P. prionitis, F. trinervia) species studied glycine decarboxylase was present in the mitochondria of only the bundle-sheath cells. The bundle-sheath cells of all the C3-C4 intermediate species have on their centripetal faces numerous mitochondria which are larger in profile area than those in mesophyll cells and are in close association with chloroplasts and peroxisomes. Confinement of glycine decarboxylase to the bundle-sheath cells is likely to improve the potential for recapture of photorespired CO2 via the Calvin cycle and could account for the low rate of photorespiration in all C3-C4 intermediate species.
免疫金标技术已被用于确定 C3、C3-C4 中间型和 C4 属的 Moricandia、Panicum、Flaveria 和 Mollugo 等植物叶片中甘氨酸脱羧酶的细胞分布。在 C3 物种 Moricandia foleyi 和 Panicum laxum 中,甘氨酸脱羧酶存在于叶肉细胞和束鞘细胞的线粒体中。然而,在所研究的所有 C3-C4 中间型(Moricandia arvensis var. garamatum、Moricandia nitens、Moricandia sinaica、Moricandia spinosa、Moricandia suffruticosa、Panicum milioides、Flaveria floridana、Flaveria linearis、Mollugo verticillata)和 C4(Panicum prionitis、Flaveria trinervia)物种中,甘氨酸脱羧酶仅存在于束鞘细胞的线粒体中。所有 C3-C4 中间型物种的束鞘细胞在其向心面上具有许多线粒体,这些线粒体的面积比叶肉细胞中的线粒体大,并且与叶绿体和过氧化物酶体密切相关。将甘氨酸脱羧酶局限于束鞘细胞中可能会提高通过卡尔文循环再捕获光呼吸 CO2 的潜力,并可以解释所有 C3-C4 中间型物种中光呼吸率低的原因。