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首页> 外文期刊>Journal of the American Society for Horticultural Science >Metabolic contributors to drought-enhanced accumulation of sugars andacids in oranges
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Metabolic contributors to drought-enhanced accumulation of sugars andacids in oranges

机译:干旱导致桔子中糖和酸积累的代谢原因

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摘要

The nature of sink strength in orange fruit and changes occurring during drought stress were investigated. Potted trees of 'Hamlin' orange [Citrus sinensis (L.) Osbeck] grafted on Troyer citrange [Citrus sinensis x Poncirus trifoliata (L.) Raf.] were irrigated using a microsprinkler system creating either well-watered or water-stressed conditions, as determined by stem water potentials. Fruit were harvested every other week from trees of both well-watered and drought-stressed treatments during the final stage of fruit development when sugars accumulate rapidly. Fruit quality indices and activities of sucrose synthase (SuSy), invertase, sucrose-P synthase, sucrose-P phosphatase, V-ATPase, and V-PPase were measured. Acids and soluble sugar concentrations were elevated in drought-stressed fruit, whereas juice pH decreased in those same fruit. Results indicate that increased sink strength in fruit from stressed trees was accompanied by an increase in SuSy activity and lowered juice pH. The remaining enzymes examined in this experiment showed no changes in activity between control and treated fruit, as was the case for plasmalemma and tonoplast sucrose carriers. Based on the present data, we conclude that SuSy and vacuolar pH are the predominant factors controlling photoassimilate accumulation in orange fruit under enhanced sink conditions brought about by imposition of a mild drought stress.
机译:研究了橙色果实下沉强度的性质以及干旱胁迫期间发生的变化。使用微喷头系统灌溉嫁接在Troyer citrange [Citrus sinensis x Poncirus trifoliata(L.)Raf。]上的'Hamlin'橙[Citrus sinensis(L.)Osbeck]的盆栽树,使用创造良好水分或水分胁迫的条件进行灌溉,由茎水势确定。在糖生长迅速的最后阶段,每两周从经过良好灌溉和干旱处理的树木中收获水果。测量了果实品质指标和蔗糖合酶(SuSy),转化酶,蔗糖-P合酶,蔗糖-P磷酸酶,V-ATPase和V-PPase的活性。干旱胁迫的果实中的酸和可溶性糖浓度升高,而那些果实中的汁液pH降低。结果表明,受压树木的果实的下沉强度增加,同时SuSy活性增加,汁液pH降低。在该实验中检查的其余酶没有显示出对照和处理过的果实之间的活性变化,质膜和液泡塑料蔗糖载体也是如此。根据目前的数据,我们得出结论,SuSy和液泡pH是控制橙色水果在施加轻度干旱胁迫而增强的下沉条件下光同化物积累的主要因素。

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