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首页> 外文期刊>American Journal of Botany >Amyloplast to chromoplast conversion in developing ornamental tobacco floral nectaries provides sugar for nectar and antioxidants for protection1
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Amyloplast to chromoplast conversion in developing ornamental tobacco floral nectaries provides sugar for nectar and antioxidants for protection1

机译:在发展中的观赏烟草花蜜中,淀粉体向色体的转化为糖蜜提供了糖分,为保护提供了抗氧化剂1

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摘要

Tobacco floral nectaries undergo changes in form and function. As nectaries change from green to orange, a new pigment is expressed. Analysis demonstrated that it is ß-carotene. Plastids undergo dramatic changes. Early in nectary development, they divide and by stage 9 (S9) they are engorged with starch. About S9, nectaries shift from quiescent anabolism to active catabolism resulting in starch breakdown and production of nectar sugars. Starch is replaced by osmiophilic bodies, which contain needle-like carotenoid crystals. Between S9 and S12, amyloplasts are converted to chromoplasts. Changes in carotenoids and ascorbate were assayed and are expressed at low levels early in development; however, following S9 metabolic shift, syntheses of ß-carotene and ascorbate greatly increase in advance of expression of nectar redox cycle. Transcript analysis for carotenoid and ascorbate biosynthetic pathways showed that these genes are significantly expressed at S6, prior to the S9 metabolic shift. Thus, formation of antioxidants ß-carotene and ascorbate after the metabolic shift is independent of transcriptional regulation. We propose that biosynthesis of these antioxidants is governed by availability of substrate molecules that arise from starch breakdown. These processes and events may be amenable to molecular manipulation to provide a better system for insect attraction, cross pollination, and hybridization.
机译:烟草花蜜的形态和功能发生变化。随着蜜腺从绿色变为橙色,新的色素被表达出来。分析表明它是β-胡萝卜素。质体发生巨大变化。在蜜腺发育的早期,它们分裂,并在第9阶段(S9)充满淀粉。关于S9,蜜腺从静止合成代谢转变为活性分解代谢,导致淀粉分解并产生花蜜糖。淀粉被渗透性物质代替,渗透性物质包含针状类胡萝卜素晶体。在S9和S12之间,淀粉状体被转化为色体。分析了类胡萝卜素和抗坏血酸的变化,并在发育早期以低水平表达。然而,在S9代谢转变后,β-胡萝卜素和抗坏血酸的合成在花蜜氧化还原循环表达之前大大增加。对类胡萝卜素和抗坏血酸生物合成途径的转录本分析表明,这些基因在S9代谢转变之前在S6显着表达。因此,代谢转变后抗氧化剂β-胡萝卜素和抗坏血酸的形成与转录调控无关。我们建议这些抗氧化剂的生物合成受淀粉分解产生的底物分子的可用性支配。这些过程和事件可能适合分子操作,从而为昆虫吸引,交叉授粉和杂交提供更好的系统。

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