Dembitzer H M
J Cell Biol. 1968 May;37(2):329-44. doi: 10.1083/jcb.37.2.329.
Suspensions of Blepharisma intermedium were fed latex particles for 5 min and then were separated from the particles by filtration. Samples were fixed at intervals after separation and incubated to demonstrate acid phosphatase activity. They were subsequently embedded and sectioned for electron microscopy. During formation of the food vacuole, the vacuolar membrane is acid phosphatase-negative. Within 5 min, dumbbell-shaped acid phosphatase-positive bodies, possibly derived from the the acid phosphatase-positive Golgi apparatus, apparently fuse with the food vacuole and render it acid phosphatase-positive. A larger type of acid phosphatase-positive, vacuolated body may also fuse with the food vacuole at later stages. At about 20 min after formation, acid phosphatase-positive secondary pinocytotic vesicles pinch off from the food vacuoles and approach a separate system of membrane-bounded spaces. By 1 hr after formation, the food vacuole becomes acid phosphatase-negative, and the undigested latex particles are voided into the membrane-bounded spaces. The membrane-bounded spaces are closely associated with the food vacuole at all stages of digestion and are generally acid phosphatase-negative. Within the membrane-bounded spaces, dense, pleomorphic, granular bodies are found, in which are embedded mitochondria, paraglycogen granules, membrane-limited acid phosphatase-containing structures, and Golgi apparatuses. The granular bodies may serve as vehicles for the transport of organelles through the extensive, ramifying membrane-bounded spaces.
给中型喇叭虫悬浮液喂食乳胶颗粒5分钟,然后通过过滤将其与颗粒分离。分离后每隔一段时间固定样本,并进行孵育以显示酸性磷酸酶活性。随后将它们包埋并切片用于电子显微镜观察。在食物泡形成过程中,液泡膜呈酸性磷酸酶阴性。在5分钟内,哑铃状的酸性磷酸酶阳性小体,可能源自酸性磷酸酶阳性的高尔基体,显然与食物泡融合并使其呈酸性磷酸酶阳性。一种更大类型的酸性磷酸酶阳性、有空泡的小体也可能在后期与食物泡融合。在形成后约20分钟,酸性磷酸酶阳性的次级胞饮小泡从食物泡中 pinched off(此处原文有误,推测为pinch off,意为“ pinched off”,即“掐断” ),并靠近一个由膜界定的独立空间系统。到形成后1小时,食物泡变为酸性磷酸酶阴性,未消化的乳胶颗粒被排入由膜界定的空间。在消化的各个阶段,由膜界定的空间都与食物泡紧密相关,且通常呈酸性磷酸酶阴性。在由膜界定的空间内,发现了致密、多形的颗粒状小体,其中包埋有线粒体、副糖原颗粒、含酸性磷酸酶的膜性结构和高尔基体。颗粒状小体可能作为细胞器通过广泛分支的由膜界定的空间进行运输的载体。