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首页> 外文期刊>Journal of Plant Physiology >SPECIFIC DISTRIBUTION OF GIBBERELLINS, CYTOKININS INDOLE-3-ACETIC ACID, AND ABSCISIC ACID IN RADISH PLANTS CLOSELY CORRELATES WITH PHOTOMORPHOGENETIC RESPONSES TO BLUE OR RED LIGHT
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SPECIFIC DISTRIBUTION OF GIBBERELLINS, CYTOKININS INDOLE-3-ACETIC ACID, AND ABSCISIC ACID IN RADISH PLANTS CLOSELY CORRELATES WITH PHOTOMORPHOGENETIC RESPONSES TO BLUE OR RED LIGHT

机译:萝卜中赤霉素,细胞分裂素吲哚-3-乙酸和松香酸的特定分布与光遗传反应对蓝光或红光的响应密切相关

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摘要

Ontogenetic patterns of dry matter accumulation and contents of cytokinins, gibberellins, indole-3-acetic acid (IAA), and abscisic acid (ABA) in shoot and hypocotyl were studied in radish (Raphanus sativus L.) plants grown under blue (BL) or red (RL) light. BL promoted the development of storage organ (swollen hypocotyl), whereas RL favoured petiole and stem growth. RL did not prevent tuber formation, bur: delayed tuberization, which started on days 14 and 20 in BL- and RL-grown plants, respectively, and severalfold reduced tuber weight. About 10-times higher (as compared with BL-grown plants) levels of gibberellins were found in shoots of Ii-day-old RL-grown plants, and the difference between RL and BL-grown plants increased with age. The 2.5-times higher level of IAA. was found in shoots of 11-day-old BL-grown plants compared with RL-grown ones. IAA levels in shoot abruptly decreased with age regardless of light quality. Compared with RL, BL increased the contents of IAA and cytokinins (zeatin plus zeatin riboside and isopentenyladenine plus isopentenyladenosine) severalfold in hypocotyls of 11- and 14-day-old plants. By day 21, IAA content in hypocotyls decreased in BL, while it increased under RL. Unlike IAA, an increase in cytokinins of hypocotyls continued by day 21, which was much more pronounced in RL-grown plants. These findings indicate that both IAA and cytokinins are involved in tuber initiation regardless of light quality, while cytokinins appear ro stimulate the assimilate flow to developing storage tissue. Specific morphogenetic responses of radish plants to BL or RL seem therefore to be closely associated with the specific action of light quality on phytohormones in shoot and hypocotyl: RL enhances sink strength of aboveground organs (petioles and stem) by stimulating gibberellins, whereas BL stimulates assimilate flow to hypocotyls by an increase in IAA, cytokinins, and, probably, ABA. Mechanisms by which BL- or RL-grown plants maintain contrasting levels of different hormones in shoots and hypocotyls are discussed.
机译:研究了在蓝色(BL)下生长的萝卜(Raphanus sativus L.)植物茎和下胚轴中干物质积累的形态特征以及细胞分裂素,赤霉素,吲哚-3-乙酸(IAA)和脱落酸(ABA)的含量。或红色(RL)灯。 BL促进贮藏器官(下胚轴肿胀)的发展,而RL促进叶柄和茎的生长。 RL不能阻止块茎的形成,bur:延迟的块茎,这分别在BL和RL种植的植物中的第14天和20天开始,并且块茎重量减少了数倍。在ii天大的RL种植植物的芽中发现赤霉素的含量高出大约10倍(与BL种植植物相比),并且RL和BL种植植物之间的差异随年龄增长而增加。 IAA的水平提高了2.5倍。相比于RL生长的植物,在11天大的BL生长的植物的芽中发现了这种细菌。无论光线质量如何,芽中的IAA水平都会随着年龄的增长而突然下降。与RL相比,BL在11天和14天龄植物的下胚轴中增加了IAA和细胞分裂素(玉米素加玉米素核糖苷和异戊烯基腺嘌呤加异戊烯基腺苷)的含量。到第21天,BL中下胚轴的IAA含量下降,而RL下则上升。与IAA不同,到21天,下胚轴细胞分裂素的增加仍在继续,这在RL种植的植物中更为明显。这些发现表明,无论光质量如何,IAA和细胞分裂素均参与块茎的萌发,而细胞分裂素的出现则刺激同化流向发育中的存储组织。因此,萝卜对BL或RL的特定形态发生反应似乎与光质量对苗和下胚轴中植物激素的特定作用密切相关:RL通过刺激赤霉素来增强地上器官(叶柄和茎)的下沉强度,而BL刺激同化。 IAA,细胞分裂素以及可能是ABA的增加会流向下胚轴。讨论了BL或RL生长的植物维持芽和下胚轴中不同激素的对比水平的机制。

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