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首页> 外文期刊>Scientia horticulturae >Inhibition of carbohydrate metabolism by thermal fluctuations during endodormancy lead to negative impacts on bud burst and incidence of floral necrosis in 'Housur Japanese pear flower buds
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Inhibition of carbohydrate metabolism by thermal fluctuations during endodormancy lead to negative impacts on bud burst and incidence of floral necrosis in 'Housur Japanese pear flower buds

机译:通过核心间动脉的热波动抑制碳水化合物代谢导致对'Housur日本梨花芽中花坏死的发芽和发病率的负面影响

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Challenges related to bud dormancy release are important limiting factors to commercial fruit production of Japanese pear (Pyrus pyrifolia Nakai) in areas under mild winter conditions. This study aimed to elucidate the effects of thermal fluctuations that occur in areas with mild winters on endodormancy release of Japanese pear flower buds. 'Houseui' Japanese pear trees exposed to thermal fluctuations were left to accumulate 600 chilling hours (CH) in order to simulate mild winter conditions and subsequently moved into a greenhouse to observe bud burst and number of flowers/cluster. During endodormancy progression, the concentration of sugars, starch and alpha-amylase activity were analyzed in lateral flower buds and stems collected at 0, 300 and 600 CH. In addition, necrosis of floral primordia was examined in buds collected over the, same period. Thermal fluctuations during endodormancy caused floral primordia necrosis at 300 CH and 600 CH and tended to decrease bud burst percentages. Low concentrations of soluble sugars were observed in buds and stems subjected to thermal fluctuations during endodormancy. Lower percentage of bud burst and incidence of floral primordia necrosis may be a result of low sucrose observed in buds. Hexoses and sorbitol that are important for energy and carbon supply as well freeze tolerance during endodormancy were lower in buds and stem exposed to thermal fluctuations. Thermal fluctuations inhibited the activity of alpha-amylase in buds and retarded the degradation of starch, leading to low accumulation of soluble sugars during endodormancy. These results suggest that carbohydrate metabolism is inhibited by thermal fluctuations during endodormancy under mild winter conditions, and that low availability of sufficient carbohydrate during winter may lead to floral primordia necrosis and abnormal patterns of endodormancy release in Japanese pear.
机译:与芽休眠发布相关的挑战是日本梨(Pyrus Pyrifolia Nakai)在轻度冬季条件下的地区商业果实生产的重要因素。本研究旨在阐明在日本梨花芽的肺结核释放中产生的热波动发生的热波动的影响。 “房屋”日本梨树暴露在热量波动中储存600小时(CH),以模拟温和的冬季条件,随后进入温室,观察芽爆和鲜花数量和鲜花数量。在核开性进展期间,在0,300和600℃下收集的横向花芽和茎分析糖,淀粉和α-淀粉酶活性的浓度。此外,在同一时期收集的芽中检查了花卉原毛的坏死。核心内的热波动导致300 CH和600 CH的花卉原序,并倾向于降低芽爆百分比。在肺部期间,在芽和茎中观察到低浓度的可溶性糖。芽爆率的较低百分比和花卉原始坏死的发病率可能是在芽中观察到的低蔗糖的结果。对于能量和碳供应很重要的嗜酸剂和碳氟铍在核心内冻结期间冻结耐受性较低,芽和茎干暴露于热波动。热波动抑制芽中α-淀粉酶的活性并延迟了淀粉的降解,导致核心性糖浆的较低积累。这些结果表明,在轻微的冬季条件下,核心温度期间的热波动抑制了碳水化合物代谢,并且在冬季冬季足够的碳水化合物可用性可能导致日本梨的花卉原始坏死和肺结泡释放异常模式。

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