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反枝苋叶片的研究:超微结构、胞间连丝频率与韧皮部装载相关的溶质浓度。

Studies on the leaf of Amaranthus retroflexus (Amaranthaceae): ultrastructure, plasmodesmatal frequency, and solute concentration in relation to phloem loading.

机构信息

Department of Botany, University of Wisconsin, 53706, Madison, WI, USA.

出版信息

Planta. 1982 Sep;155(5):377-87. doi: 10.1007/BF00394465.

DOI:10.1007/BF00394465
PMID:24271968
Abstract

Both the mesophyll and bundle-sheath cells associated with the minor veins in the leaf of Amaranthus retroflexus L. contain abundant tubular endoplasmic reticulum, which is continuous between the two cell types via numerous plasmodesmata in their common walls. In bundle-sheath cells, the tubular endoplasmic reticulum forms an extensive network that permeates the cytoplasm, and is closely associated, if not continuous, with the delimiting membranes of the chloroplasts, mitochondria, and microbodies. Both the number and frequency of plasmodesmata between various cell types decrease markedly from the bundle-sheath - vascular-parenchyma cell interface to the sicve-tube member - companion-cell interface. For plants taken directly from lighted growth chambers, a stronger mannitol solution (1.4 M) was required to plasmolyze the companion cells and sieve-tube members than that (0.6 M) necessary to plasmolyze the mesophyll, bundle-sheath, and vascular-parenchyma cells. Placing plants in the dark for 48 h reduced the solute concentration in all cell types. Judging from the frequency of plasmodesmata between the various cell types of the vascular bundles, and from the solute concentrations of the various cell types, it appears that assimilates are actively accumulated by the sieve-tube - companion-cell complex from the apoplast.

摘要

反枝苋叶片中小脉周围的叶肉细胞和维管束鞘细胞富含管状内质网,这两种类型的细胞通过其共同细胞壁上的大量胞间连丝相连。在维管束鞘细胞中,管状内质网形成一个广泛的网络,渗透细胞质,并与叶绿体、线粒体和微体的限定膜密切相关,如果不是连续的话。从维管束鞘-维管束薄壁细胞界面到筛管分子-伴胞界面,各种细胞类型之间的胞间连丝数量和频率明显减少。对于直接从光照生长室中取出的植物,需要更强的甘露醇溶液(1.4 M)才能使伴胞和筛管分子质壁分离,而使叶肉、维管束鞘和维管束薄壁细胞质壁分离所需的甘露醇溶液(0.6 M)。将植物置于黑暗中 48 小时会降低所有细胞类型的溶质浓度。从维管束各种细胞类型之间胞间连丝的频率以及各种细胞类型的溶质浓度来看,似乎同化物是由筛管-伴胞复合体从质外体主动积累的。

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本文引用的文献

1
Distribution and structure of the plasmodesmata in mesophyll and bundle-sheath cells of Zea mays L.玉米中叶肉细胞和维管束鞘细胞中的胞间连丝的分布和结构。
Planta. 1977 Jan;136(1):77-89. doi: 10.1007/BF00387929.
2
Leaf structure in relation to solute transport and phloem loading in Zea mays L.玉米叶片结构与溶质运输及韧皮部装载的关系
Planta. 1978 Jan;138(3):279-94. doi: 10.1007/BF00386823.
3
The neck constriction in plasmodesmata : Evidence for a peripheral sphincter-like structure revealed by fixation with tannic acid.胞间连丝的颈部缢缩:鞣酸固定揭示的一种周边似括约肌样结构的证据。
微区放射自显影定位两种双子叶 C4 植物诱导性汇叶中输入的(14)C 光合产物与韧皮部卸出的关系。
Planta. 1985 Apr;163(4):439-47. doi: 10.1007/BF00392700.
4
Ultrastructure, plasmodesmatal frequency, and solute concentration in green areas of variegated Coleus blumei Benth. leaves.斑驳叶蔓绿绒叶片绿色部位的超微结构、胞间连丝频率和溶质浓度。
Planta. 1986 Oct;169(2):141-52. doi: 10.1007/BF00392308.
5
Pathway of assimilate transfer between mesophyll cells and minor veins in leaves of Cucumis melo L.甜瓜叶片中叶肉细胞与小维管束间同化产物的转移途径
Planta. 1987 May;171(1):19-29. doi: 10.1007/BF00395064.
6
Plasmodesmatal distribution and frequency in vascular bundles and contiguous tissues of the leaf ofThemeda triandra.三齿稃草叶片维管束和毗邻组织中的胞间连丝分布和频率。
Planta. 1988 Dec;173(4):433-41. doi: 10.1007/BF00958954.
7
A morphometric analysis of the phloem-unloading pathway in developing tobacco leaves.发育烟草叶片韧皮部卸出途径的形态计量分析。
Planta. 1988 Dec;176(3):307-18. doi: 10.1007/BF00395411.
8
Ultrastructural indications for coexistence of symplastic and apoplastic phloem loading in Commelina benghalensis leaves : Differences in ontogenic development, spatial arrangement and symplastic connections of the two sieve tubes in the minor vein.超微结构表明孟加拉菉葹叶片中存在共质体和质外体韧皮部装载共存的现象:两种筛管在小脉中的个体发育、空间排列和共质体连接的差异。
Planta. 1988 Nov;176(2):159-72. doi: 10.1007/BF00392441.
9
Control of photosynthesis by the carbohydrate level in leaves of the C4 plant Amaranthus edulis L.叶片碳水化合物水平对 C4 植物苋菜光合作用的调控
Planta. 1989 Apr;177(4):515-25. doi: 10.1007/BF00392620.
10
Fine structure of plasmodesmata in mature leaves of sugarcane.成熟甘蔗叶片中的胞间连丝的精细结构。
Planta. 1991 Jun;184(3):307-18. doi: 10.1007/BF00195331.
Planta. 1979 Jan;144(4):349-58. doi: 10.1007/BF00391578.
4
Sucrose in the free space of translocating maize leaf bundles.正在运输的玉米叶维管束自由空间中的蔗糖
Plant Physiol. 1978 Oct;62(4):491-4. doi: 10.1104/pp.62.4.491.
5
Phloem loading in squash.南瓜中的韧皮部装载。
Plant Physiol. 1977 Oct;60(4):567-9. doi: 10.1104/pp.60.4.567.
6
Sucrose Hydrolysis in Relation to Phloem Translocation in Beta vulgaris.与糖甜菜韧皮部运输有关的蔗糖水解。
Plant Physiol. 1977 Sep;60(3):339-43. doi: 10.1104/pp.60.3.339.
7
Evidence for Phloem loading from the apoplast: chemical modification of membrane sulfhydryl groups.质外体途径韧皮部装载的证据:膜巯基基团的化学修饰。
Plant Physiol. 1976 Jun;57(6):872-5. doi: 10.1104/pp.57.6.872.
8
Role of free space in translocation in sugar beet.自由空间在甜菜转运中的作用。
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Plant Physiol. 1974 Jun;53(6):912-7. doi: 10.1104/pp.53.6.912.
10
Solute distribution in sugar beet leaves in relation to Phloem loading and translocation.与韧皮部装载和运输有关的甜菜叶中溶质的分布。
Plant Physiol. 1973 Dec;52(6):585-9. doi: 10.1104/pp.52.6.585.