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Sucrose-Metabolizing Enzymes in Transport Tissues and Adjacent Sink Structures in Developing Citrus Fruit

机译:发育中的柑橘果实中运输组织中蔗糖代谢酶和相邻的水槽结构。

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摘要

Juice tissues of citrus lack phloem; therefore, photosynthates enroute to juice sacs exit the vascular system on the surface of each segment. Areas of extensive phloem unloading and transport (vascular bundles + segment epidermis) can thus be separated from those of assimilate storage (juice sacs) and adjacent tissues where both processes occur (peel). Sugar composition, dry weight accumulation, and activities of four sucrose-metabolizing enzymes (soluble and cell-wall-bound acid invertase, alkaline invertase, sucrose synthase, and sucrose phosphate synthase) were measured in these transport and sink tissues of grapefruit (Citrus paradisi Macf.) to determine more clearly whether a given enzyme appeared to be more directly associated with assimilate transport versus deposition or utilization. Results were compared at three developmental stages. Activity of sucrose (per gram fresh weight and per milligram protein) extracted from zones of extensive phloem unloading and transport was significantly greater than from adjacent sink tissues during the stages (II and III) when juice sacs grow most rapidly. In stage II fruit, activity of sucrose synthase also significantly surpassed that of all other sucrose-metabolizing enzymes in extracts from the transport tissues (vascular bundles + segment epidermis). In contrast, sucrose phosphate synthase and alkaline invertase at this stage of growth were the most active enzymes from adjacent, rapidly growing, phloem-free sink tissues (juice sacs). Activity of these two enzymes in extracts from juice sacs was significantly greater than that form the transport tissues (vascular bundles + segment epidermis). Soluble acid invertase was the most active enzyme in extracts from all tissues of very young fruit (stage I), including nonvascular regions, but nearly disappeared prior to the onset of juice sac sugar accumulation. The physiological function of high sucrose synthase activity in the transport tissues during rapid sucrose import remains to be determined.
机译:柑橘的果汁组织缺乏韧皮部;因此,进入汁囊的光合产物在每个节段的表面离开血管系统。因此,大量韧皮部的卸载和运输区域(血管束+表皮段)可以与同化存储区域(果汁囊)和两个过程均发生的邻近组织(果皮)分开。在葡萄柚的这些运输和吸收组织中测量了糖的组成,干重积累和四种蔗糖代谢酶(可溶性和细胞壁结合的酸性转化酶,碱性转化酶,蔗糖合酶和蔗糖磷酸合酶)的活性。 Macf。),以更明确地确定给定的酶是否与同化物运输相对于沉积或利用更直接相关。在三个发展阶段比较了结果。在汁囊最快速生长的阶段(II和III)期间,从大量韧皮部卸载和运输区域提取的蔗糖(每克鲜重和每毫克蛋白质)的活性显着大于从相邻汇水组织提取的蔗糖。在II期水果中,运输组织(血管束+表皮段)提取物中的蔗糖合酶活性也大大超过了所有其他蔗糖代谢酶。相反,在该生长阶段的蔗糖磷酸合酶和碱性转化酶是来自相邻的,迅速生长的,不含韧皮部的水槽组织(汁囊)中活性最高的酶。汁囊提取物中的这两种酶的活性显着大于形成运输组织(血管束+表皮的表皮)的活性。可溶性酸转化酶是非常幼小的水果(I期)所有组织(包括非血管区域)的提取物中活性最高的酶,但在汁囊糖积累开始之前几乎消失了。在快速导入蔗糖过程中,运输组织中高蔗糖合酶活性的生理功能尚待确定。

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