Li Chun-Yao, Weiss David, Goldschmidt Eliezer E
The Institute of Plant Sciences and Genetics in Agriculture, Faculty of Agricultural, Food, and Environmental Quality Sciences, The Hebrew University of Jerusalem, Rehovot 76100, Israel.
Ann Bot. 2003 Jul;92(1):137-43. doi: 10.1093/aob/mcg108. Epub 2003 May 21.
Effects of girdling on carbohydrate status and carbohydrate-related gene expression in citrus trees were investigated. Alternate-bearing 'Murcott' (a Citrus reticulata hybrid of unknown origin) trees were girdled during autumn (25 Sep. 2001) and examined 10 weeks later. Girdling brought about carbohydrate (soluble sugar and starch) accumulation in leaves and shoot bark above the girdle, in trees during their fruitless, 'off' year. Trees during their heavy fruit load, 'on' year did not accumulate carbohydrates above the girdle due to the high demand for carbohydrates by the developing fruit. Girdling caused a strong decline in soluble sugar and starch concentrations in organs below the girdle (roots), in both 'on' and 'off' trees. Expression of STPH-L and STPH-H (two isoforms of starch phosphorylase), Agps (ADP-glucose pyrophosphorylase, small subunit), AATP (plastidic ADP/ATP transporter), PGM-C (phosphoglucomutase) and CitSuS1 (sucrose synthase), all of which are associated with starch accumulation, was studied. It was found that gene expression is related to starch accumulation in all 'off' tree organs. RNA levels of all the genes examined were high in leaves and bark that accumulated high concentrations of starch, and low in roots with declining starch concentrations. It may be hypothesized that changes in specific sugars signal the up- and down-regulation of genes involved in starch synthesis.
研究了环剥对柑橘树碳水化合物状态及与碳水化合物相关基因表达的影响。在秋季(2001年9月25日)对隔年结果的‘默科特’(一种来源不明的柑橘杂交品种)树进行环剥,并在10周后进行检测。在果树无结果的“小年”期间,环剥导致环剥上方叶片和茎干树皮中碳水化合物(可溶性糖和淀粉)积累。在果树结果量大的“大年”期间,由于发育中的果实对碳水化合物的高需求,环剥上方未积累碳水化合物。环剥导致“大年”和“小年”树中环剥下方器官(根)中的可溶性糖和淀粉浓度大幅下降。研究了STPH-L和STPH-H(淀粉磷酸化酶的两种同工型)、Agps(ADP-葡萄糖焦磷酸化酶,小亚基)、AATP(质体ADP/ATP转运体)、PGM-C(磷酸葡萄糖变位酶)和CitSuS1(蔗糖合酶)的表达,所有这些都与淀粉积累有关。结果发现,基因表达与所有“小年”树器官中的淀粉积累有关。在所检测的所有基因中,RNA水平在积累高浓度淀粉的叶片和树皮中较高,而在淀粉浓度下降的根中较低。可以推测,特定糖类的变化会信号调节参与淀粉合成的基因的上调和下调。