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Ethylene Production during Development of Mustard (Brassica juncea) and Canola (Brassica napus) Seed.

机译:芥菜(芥菜)和油菜(甘蓝型油菜)种子发育过程中的乙烯生产。

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摘要

An open, continuous flow system was used to investigate ethylene production during degreening of maturing seed of mustard (Brassica juncea cv Cutlass and cv Lethbridge 22A) and canola (Brassica napus cv Westar and cv Alto). Isolated mustard seed evolved higher amounts of ethylene than those of canola, and this was particularly evident both early in embryogeny and later during the desiccation phase of seed maturation. The silique walls produced negligible amounts of ethylene in both species. The concentrations of ethylene surrounding seed as they matured within siliques were significantly higher in mustard than in canola, and this interspecies difference was greatest during the seed desiccation phase. In mustard, a 4-fold increase in silique internal ethylene levels was apparent during desiccation. In comparison, only a moderate increase in silique-derived ethylene occurred in canola.
机译:使用开放的连续流系统研究芥菜(Brassica juncea cv Cutlass和cv Lethbridge 22A)和双低油菜籽(Brassica napus cv Westar和cv Alto)成熟种子分级期间乙烯的生产。与芥花籽油相比,分离出的芥菜籽可释放出更多的乙烯,这在胚胎发育早期和种子成熟期的干燥阶段尤为明显。角果壁在两种物种中产生的乙烯量均可以忽略不计。芥菜中成熟时种子周围乙烯的浓度在芥末中比菜籽油中显着更高,并且这种种间差异在种子干燥阶段最大。在芥末中,干燥过程中长角果内部乙烯含量明显提高了4倍。相比之下,双低油菜籽中只有少量的源自硅的乙烯。

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