首页> 美国卫生研究院文献>Plant Physiology >Differential Effects of Sucrose Abscisic Acid and Benzyladenine on Shoot Growth and Callus Formation in the Abscission Zone of Excised Citrus Buds
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Differential Effects of Sucrose Abscisic Acid and Benzyladenine on Shoot Growth and Callus Formation in the Abscission Zone of Excised Citrus Buds

机译:蔗糖脱落酸和苄基腺嘌呤对脱落柑橘芽脱落区芽生长和愈伤组织形成的差异作用

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摘要

The omission of sucrose from the basal medium stimulated callus formation in bud explants of Citrus sinensis (L.) Osbeck. Moreover, it increased the abscisic acid-induced callus proliferation reported earlier in the presence of 5% sucrose (Altman and Goren, Physiol. Plant. 32: 55, 1974). The inhibition of callus formation by the addition of sucrose was not due to the high osmotic potential of the medium. Benzyladenine induced callus formation slightly, in all sucrose concentrations up to 5%. The high level of sucrose was required, however, for the growth of shoots from buds cultured on both basal and benzyladenine-containing media.The uptake of 14C-sucrose by bud explants was linear for at least 98 hr, and was enhanced significantly by both abscisic acid and benzyladenine during the initial 24-hour period. Abscisic acid enhanced the absorption of 14C-sucrose and the accumulation of sugars in buds cultured at high levels of sucrose. More than 50% of the total label accumulated in the callus of abscisic acid-treated explants whereas only 16 and 23% were observed in the growing shoots of control and cytokinin-treated explants, respectively.Results suggested that while sucrose “starvation” induced initial callus formation, high levels retarded further proliferation of the callus.
机译:从基础培养基中除去蔗糖会刺激柑橘(Osbeck Osbeck)芽外植体中愈伤组织的形成。此外,它增加了早先报道的在5%蔗糖存在下的脱落酸诱导的愈伤组织增殖(Altman和Goren,Physiol.Plant.32:55,1974)。通过添加蔗糖来抑制愈伤组织的形成不是由于培养基的高渗透势。在所有蔗糖浓度高达5%的情况下,苄基腺嘌呤都会轻微诱导愈伤组织形成。但是,在含基础和含苄基腺嘌呤的培养基上培养的芽生长,都需要高水平的蔗糖。芽外植体对 14 C-蔗糖的吸收至少线性达到98 hr,在最初的24小时内,脱落酸和苄基腺嘌呤均显着增强。脱落酸提高了蔗糖高水平培养下芽中 14 C-蔗糖的吸收和糖分的积累。脱落酸处理的外植体愈伤组织中积累的总标记超过50%,而对照和细胞分裂素处理的外植体的生长芽中分别仅观察到16%和23%。结果表明,蔗糖“饥饿”诱导初始愈伤组织的形成,高水平阻碍了愈伤组织的进一步增殖。

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