首页> 外文期刊>Journal of the American Society for Horticultural Science >Changes in photosynthesis and carbohydrate metabolism in mature apple leaves in response to whole plant source-sink manipulation
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Changes in photosynthesis and carbohydrate metabolism in mature apple leaves in response to whole plant source-sink manipulation

机译:整株源库操作对成熟苹果叶片光合作用和碳水化合物代谢的影响

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Photosynthesis and carbohydrate metabolism in apple [Malus sylvestris (L.) Mill. var. domestica (Borkh.) Mansf.] source leaves were monitored during a 7-day period after source-sink manipulations by girdling or partial defoliation treatments. In the girdling treatment, sorbitol, sucrose, glucose, and starch accumulated in leaves, and net photosynthetic rates (Pn) at 350 muL(.)L(-1) CO2 decreased-during a 7-day period. Pn measured at 1000 muL(.)L(-1) [CO2] was also decreased but the changes were less. Stomatal conductance and intracellular CO2 concentration decreased markedly in leaves of girdled shoots. When shoots were partially defoliated, starch and glucose concentrations in remaining source leaves declined-steadily during the 7-day study period Sorbitol and sucrose concentrations decreased during the first 2 days after defoliation, then increased the following 5 days. Pn of the remaining leaves measured at ambient and elevated CO2 levels were enhanced markedly. Aldose-6-phospliate reductase activity in source leaves increased markedly from 27.5 to 39.2 mumol(.)h(-1.)g(-1) fresh weight. (FW) after partial defoliation but remained unchanged in leaves after girdling. Selective and maximum sucrose phosphate synthase (SPS) activities increased following partial defoliation and decreased following girdling. ADP-glucose pyrophosphorylase activity remained relatively unchanged in the partial defoliation treatments but increased markedly in the girdled-shoot leaves. These results suggested that girdling-induced photosynthetic inhibition is mainly due to stomatal limitation, however, the photosynthesis enhancement by partial defoliation may be due primarily to acceleration of photosynthetic capacity per se. These studies showed that the metabolism of sorbitol, sucrose and starch, three photosynthetic end products in mature apple leaves, was coordinately regulated in source leaves in response to source-sink manipulations.
机译:苹果中的光合作用和碳水化合物代谢[Malus sylvestris(L.)Mill。变种在对源槽进行环剥或部分脱叶处理后的7天内,对原木(Borkh。Mansf。)的源叶进行了监测。在环剥处理中,在7天的时间内,山梨糖醇,蔗糖,葡萄糖和淀粉积累在叶片中,并且350μL(.L)(-1)CO2的净光合速率(Pn)降低。在1000μL(.L)(-1)[CO2]下测得的Pn也降低了,但变化较小。环剥芽的叶片气孔导度和细胞内CO2浓度明显降低。当茎叶部分脱叶时,其余来源叶片中的淀粉和葡萄糖浓度在7天的研究期内稳定下降。山梨醇和蔗糖浓度在脱叶后的前2天下降,然后在接下来的5天上升。在环境和升高的CO2水平下测得的其余叶片的Pn显着提高。源叶中的Aldose-6-磷酸还原酶活性从27.5 mumol(。)h(-1。)g(-1)鲜重显着增加。 (FW)在部分脱叶后,但环剥后在叶片中保持不变。选择性和最大蔗糖磷酸合成酶(SPS)活性在部分脱叶后增加,在环剥后减少。在部分脱叶处理中,ADP-葡萄糖焦磷酸化酶的活性保持相对不变,但在环茎叶中显着增加。这些结果表明,环剥诱导的光合作用抑制主要是由于气孔限制所致,然而,部分脱叶使光合作用增强可能主要归因于光合能力本身的加速。这些研究表明,成熟的苹果叶片中的三种光合作用终产物山梨糖醇,蔗糖和淀粉的代谢受源汇操纵的影响而在源叶片中得到协调调节。

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