Haupt S, Duncan G H, Holzberg S, Oparka K J
Unit of Cell Biology, Scottish Crop Research Institute, Invergowrie, Dundee DD2 5DA, United Kingdom.
Plant Physiol. 2001 Jan;125(1):209-18. doi: 10.1104/pp.125.1.209.
The pathway of phloem unloading in sink barley (Hordeum vulgare) leaves was studied using a combination of electron microscopy, carboxyfluorescein transport, and systemic movement of barley stripe mosaic virus expressing the green fluorescent protein. Studies of plasmodesmatal frequencies between the phloem and mesophyll indicated a symplastic sieve element- (SE) unloading pathway involving thick-walled and thin-walled SEs. Phloem-translocated carboxyfluorescein was unloaded rapidly from major longitudinal veins and entered the mesophyll cells of sink leaves. Unloading was "patchy" along the length of a vein, indicating that sieve element unloading may be discontinuous along a single vascular bundle. This pattern was mirrored precisely by the unloading of barley stripe mosaic virus expressing the green fluorescent protein. Transverse veins were not utilized in the unloading process. The data collectively indicate a symplastic mechanism of SE unloading in the sink barley leaf.
利用电子显微镜、羧基荧光素转运以及表达绿色荧光蛋白的大麦条纹花叶病毒的系统移动相结合的方法,对大麦(Hordeum vulgare)库叶中韧皮部卸载途径进行了研究。对韧皮部和叶肉之间胞间连丝频率的研究表明,存在一种共质体筛管分子卸载途径,涉及厚壁和薄壁筛管分子。韧皮部转运的羧基荧光素从主要纵向叶脉快速卸载,并进入库叶的叶肉细胞。沿着叶脉长度卸载是“不均匀的”,这表明筛管分子卸载可能沿着单个维管束是不连续的。这种模式与表达绿色荧光蛋白的大麦条纹花叶病毒的卸载情况完全一致。横向叶脉未参与卸载过程。这些数据共同表明了大麦库叶中筛管分子卸载的共质体机制。