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质体类胡萝卜素的遗传控制与南瓜果皮的转化。

Genetic control of plastid carotenoids and transformation in the skin of Cucurbita pepo L. fruit.

机构信息

Department of Citriculture, Faculty of Agriculture, Hebrew University of Jerusalem, 76-100, Rehovot, Israel.

出版信息

Theor Appl Genet. 1984 Oct;68(6):493-501. doi: 10.1007/BF00284996.

Abstract

The influence of allelic state of gene B on skin pigmentation in two cultivars of Cucurbita pepo L. has been studied. Total carotenoids were lower at early stages of fruit development in cultivar (cv.) 'Early Prolific' (EP) BB YY fruit skin, than in EP B (+) B (+) YY fruit skin, but no differences were observed in total skin carotenoids twenty days after anthesis. Total carotenoids were lower in cv. 'Fordhook Zucchini' (FZ) BB yy fruit skin, than in FZ B (+) B (+) yy fruit skin at all developmental stages from anthesis to maturity. Both green and yellow tissues contained typical foliar carotenoids. The carotenoids from yellow fruit skin of both EP genotypes and of FZ BB were characterized by a low carotene: xanthophyll ratio, with a high proportion of the xanthophylls esterified to fatty acids. The xanthophylls of the yellow tissues were esterified with 12∶0, 14∶0, 16∶0 fatty acids. The carotenoids from the green fruit skin of FZ B (+) B (+) had a higher percentage of carotenes (primarily β-carotene) and a lower percentage of esterified xanthophylls. Spectral shapes of carotenoid fractions from all yellow tissues were similar and distinguishable from those of green FZ B (+) B (+) tissue. The results of these studies are discussed in terms of the genetic control of plastid transformation in Cucurbita pepo L.

摘要

研究了基因 B 的等位基因状态对两种南瓜(Cucurbita pepo L.)品种果皮色素形成的影响。在果实发育早期,品种“早生 Prolific”(EP)BBYY 果皮中的总类胡萝卜素低于 EPB(+)B(+)YY 果皮,但在授粉后 20 天,总果皮类胡萝卜素没有差异。在所有发育阶段,从授粉到成熟,品种“Fordhook Zucchini”(FZ)BByy 果皮中的总类胡萝卜素均低于 FZB(+)B(+)yy 果皮。绿色和黄色组织均含有典型的叶片类胡萝卜素。来自 EP 两种基因型和 FZ BB 的黄色果皮的类胡萝卜素具有低的胡萝卜素:叶黄素比值,并且具有高比例的叶黄素酯化脂肪酸。黄色组织的叶黄素与 12∶0、14∶0、16∶0 脂肪酸酯化。FZB(+)B(+)的绿色果皮的类胡萝卜素具有更高比例的类胡萝卜素(主要是β-胡萝卜素)和更低比例的酯化叶黄素。所有黄色组织的类胡萝卜素馏分的光谱形状相似,与绿色 FZB(+)B(+)组织的光谱形状不同。这些研究结果从基因控制的角度讨论了质体转化在南瓜中的遗传控制。

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