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本文引用的文献

1
Control of photosynthetic sucrose synthesis in barley primary leaves: role of fructose 2,6-bisphosphate.大麦幼叶光合作用蔗糖合成的调控:果糖 2,6-二磷酸的作用。
Plant Physiol. 1986 Sep;82(1):15-8. doi: 10.1104/pp.82.1.15.
2
A Rapid Increase in Spinach Leaf Fructose 2,6-Bisphosphate Occurs during a Light to Dark Transition.菠菜叶片果糖 2,6-二磷酸在光暗转换过程中迅速增加。
Plant Physiol. 1985 Nov;79(3):911-3. doi: 10.1104/pp.79.3.911.
3
Sucrose and Starch Synthesis in Spinach Plants Grown under Long and Short Photosynthetic Periods.长、短光合期下生长的菠菜植株中的蔗糖和淀粉合成。
Plant Physiol. 1985 Nov;79(3):838-42. doi: 10.1104/pp.79.3.838.
4
Control of Photosynthetic Sucrose Synthesis by Fructose 2,6-Bisphosphate : VI. Regulation of the Cytosolic Fructose 1,6-Bisphosphatase in Spinach Leaves by an Interaction between Metabolic Intermediates and Fructose 2,6-Bisphosphate.果糖 2,6-二磷酸对光合作用蔗糖合成的控制:VI. 代谢中间产物与果糖 2,6-二磷酸相互作用对菠菜叶片细胞质果糖 1,6-二磷酸酶的调节。
Plant Physiol. 1985 Nov;79(3):599-608. doi: 10.1104/pp.79.3.599.
5
Alterations in Growth, Photosynthesis, and Respiration in a Starchless Mutant of Arabidopsis thaliana (L.) Deficient in Chloroplast Phosphoglucomutase Activity.叶绿体磷酸葡萄糖变位酶活性缺失的拟南芥淀粉缺陷突变体生长、光合作用和呼吸作用的改变。
Plant Physiol. 1985 Sep;79(1):11-7. doi: 10.1104/pp.79.1.11.
6
Diurnal carbohydrate metabolism of barley primary leaves.大麦幼叶的日碳水化合物代谢。
Plant Physiol. 1984 Sep;76(1):165-9. doi: 10.1104/pp.76.1.165.
7
Control of Photosynthetic Sucrose Synthesis by Fructose 2,6-Bisphosphate : III. Properties of the Cytosolic Fructose 1,6-Bisphosphatase.果糖2,6 -二磷酸对光合蔗糖合成的调控:III. 胞质果糖1,6 -二磷酸酶的特性
Plant Physiol. 1984 Jul;75(3):561-5. doi: 10.1104/pp.75.3.561.
8
A role for fructose 2,6-bisphosphate in the regulation of sucrose synthesis in spinach leaves.果糖 2,6-二磷酸在调节菠菜叶片蔗糖合成中的作用。
Plant Physiol. 1983 Aug;72(4):1139-41. doi: 10.1104/pp.72.4.1139.
9
Biochemical Basis for Partitioning of Photosynthetically Fixed Carbon between Starch and Sucrose in Soybean (Glycine max Merr.) Leaves.大豆叶片中光合作用固定碳在淀粉和蔗糖之间分配的生化基础。
Plant Physiol. 1982 Mar;69(3):691-6. doi: 10.1104/pp.69.3.691.
10
Enzymic assay of 10 to 10 moles of sucrose in plant tissues.植物组织中 10 到 10 摩尔蔗糖的酶法测定。
Plant Physiol. 1977 Sep;60(3):379-83. doi: 10.1104/pp.60.3.379.

一些具有重要农艺价值的作物品种叶片中果糖-2,6-二磷酸水平与光合产物分配的比较分析

A comparative analysis of fructose 2,6-bisphosphate levels and photosynthate partitioning in the leaves of some agronomically important crop species.

作者信息

Sicher R C, Baysdorfer C, Kremer D F

机构信息

United States Department of Agriculture, Agricultural Research Service, Beltsville, Maryland 20705.

出版信息

Plant Physiol. 1987 Apr;83(4):768-71. doi: 10.1104/pp.83.4.768.

DOI:10.1104/pp.83.4.768
PMID:16665336
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1056447/
Abstract

Starch, sucrose, and fructose 2,6-bisphosphate (F2, 6BP) levels were measured in pea (Pisum sativum L.), maize (Zea mays L.), onion (Allium cepa L.) and soybean (Glycine max L.) leaves throughout a light/dark cycle. Leaf starch accumulated in pea, maize, and soybean but not in onion. Sucrose was a major leaf storage reserve in pea, maize, and onion but was only found at low levels in soybean. In all species examined, the most dramatic changes in F2,6BP concentration coincided with light/dark transitions. During the light period F2,6BP levels were about 0.1 nanomole/milligram chlorophyll in soybean source leaves and there was a small increase in effector concentration in the dark. Levels of F2,6BP were also low in pea and maize leaves during the light period but then increased 10- or 20-fold in the dark. Dark onion leaf F2,6BP levels were about 1.1 to 1.3 nanomole/milligram chlorophyll and these values decreased by 20 to 30% in the light. Thus, three different patterns were identified that describe diurnal F2,6BP levels in source leaves. These results support the suggestion that F2,6BP is involved in the regulation of sucrose biosynthesis. However, it was not possible to demonstrate that high levels of F2,6BP are essential for starch synthesis in the chloroplast.

摘要

在整个光/暗周期中,对豌豆(Pisum sativum L.)、玉米(Zea mays L.)、洋葱(Allium cepa L.)和大豆(Glycine max L.)叶片中的淀粉、蔗糖和果糖2,6 - 二磷酸(F2,6BP)水平进行了测定。豌豆、玉米和大豆叶片中积累了淀粉,但洋葱叶片中没有。蔗糖是豌豆、玉米和洋葱叶片中的主要储存储备,但在大豆中仅以低水平存在。在所有检测的物种中,F2,6BP浓度的最显著变化与光/暗转换一致。在光照期间,大豆源叶中F2,6BP水平约为0.1纳摩尔/毫克叶绿素,在黑暗中效应物浓度略有增加。在光照期间,豌豆和玉米叶片中的F2,6BP水平也较低,但在黑暗中增加了10倍或20倍。黑暗中洋葱叶F2,6BP水平约为1.1至1.3纳摩尔/毫克叶绿素,在光照下这些值下降了20%至30%。因此,确定了三种不同的模式来描述源叶中F2,6BP的昼夜水平。这些结果支持了F2,6BP参与蔗糖生物合成调节的观点。然而,无法证明高水平的F2,6BP对叶绿体中的淀粉合成至关重要。