Walsh Kerry B, Sky Russell C, Brown Sharon M
Plant Sciences Group, School of Biological and Environmental Sciences, Central Queensland University, Rockhampton, Qld 4702, Australia.
Funct Plant Biol. 2005 May;32(4):367-374. doi: 10.1071/FP04102.
The physical path of sucrose unloading in the sugarcane stalk is described. About 50% of the vascular bundles in the internodes were located within 3 mm of the outside of the stalk. These bundles were inactive in long distance sucrose transport, as assessed by dye tracers of phloem flow. A sheath of fibres isolates the phloem apoplast from that of the storage parenchyma. In bundles associated with long distance transport (i.e. in the central region), the fibre sheath is narrowest to either side of the phloem fibre cap, and consists of living cells with plasmodesmata within pits in the secondary wall. Plasmodesmata were also arranged into pit fields between cells of the storage parenchyma. Since the vascular apoplast is isolated from the apoplast of the storage parenchyma, sucrose must move through the symplast of the fibre sheath. The calculated flux of sucrose through plasmodesmata of this cell layer was at the low end of reported values in the literature. Sucrose unloading within the storage parenchyma may also follow a symplastic route, with unloading into the apoplast of the storage parenchyma occurring as part of a turgor mechanism to increase sink strength.
本文描述了甘蔗茎中蔗糖卸载的物理途径。节间约50%的维管束位于茎外侧3毫米范围内。通过韧皮部流动的染料示踪剂评估,这些维管束在长距离蔗糖运输中不活跃。一层纤维将韧皮部质外体与贮藏薄壁组织的质外体隔开。在与长距离运输相关的维管束(即中央区域)中,纤维鞘在韧皮部纤维帽两侧最窄,由次生壁具纹孔且有胞间连丝的活细胞组成。贮藏薄壁组织细胞之间的纹孔场也排列有胞间连丝。由于维管束质外体与贮藏薄壁组织质外体隔离,蔗糖必须通过纤维鞘的共质体移动。通过该细胞层胞间连丝的蔗糖计算通量处于文献报道值的下限。贮藏薄壁组织内的蔗糖卸载也可能遵循共质体途径,卸载到贮藏薄壁组织质外体是增加库强度的膨压机制的一部分。