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苯嗪草酮和夜间高温对苹果生理和落果的影响
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作者 周洲(摘译) 《中国果业信息》 2021年第10期60-61,共2页
据《Scientia Horticulturae》报道(https://doi.org/10.1016/j.scienta.2021.110610),来自葡萄牙里斯本大学高等农学研究所(ISA)的研究人员研究了苯嗪草酮和夜间高温对苹果生理和落果的影响。夜间高温可能会通过增加暗呼吸导致碳水化... 据《Scientia Horticulturae》报道(https://doi.org/10.1016/j.scienta.2021.110610),来自葡萄牙里斯本大学高等农学研究所(ISA)的研究人员研究了苯嗪草酮和夜间高温对苹果生理和落果的影响。夜间高温可能会通过增加暗呼吸导致碳水化合物短缺。苯嗪草酮(MET)是一种稀释剂,可抑制光合作用,由此引起碳水化合物合成减少而增加落果。 展开更多
关键词 苹果生理 碳水化合物 落果 暗呼吸 光合作用 稀释剂 葡萄牙
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不同矮化中间砧对苹果苗光合特性的影响 被引量:18
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作者 罗静 易盼盼 +3 位作者 王飞 韩明玉 吴维芳 王荣花 《西北农林科技大学学报(自然科学版)》 CSCD 北大核心 2016年第4期177-184,共8页
【目的】对2种矮化中间砧盆栽嫁接苹果苗的光合指标和叶绿素荧光参数变化进行研究,揭示苹果中间砧对嫁接植株光合机理的影响。【方法】以八棱海棠为基砧,M9和M26为矮化中间砧,2年生"长富2号"为嫁接材料,设八棱海棠同龄砧嫁接&... 【目的】对2种矮化中间砧盆栽嫁接苹果苗的光合指标和叶绿素荧光参数变化进行研究,揭示苹果中间砧对嫁接植株光合机理的影响。【方法】以八棱海棠为基砧,M9和M26为矮化中间砧,2年生"长富2号"为嫁接材料,设八棱海棠同龄砧嫁接"长富2号"为对照,分析M9和M26矮化中间砧对嫁接苗比叶重、叶绿素和类胡萝卜素含量、光合指标(净光合速率、胞间CO2浓度、气孔导度、蒸腾速率)及日变化、叶绿素荧光参数和其日变化的影响。【结果】M9和M26矮化中间砧嫁接苗的净光合速率显著高于对照嫁接苗,而气孔导度、胞间CO2浓度和蒸腾速率较低。M9和M26矮化中间砧嫁接苗的Fm、Fv/Fm和Fv/Fo显著低于对照嫁接苗,但qN、ETR、NPQ却高于对照嫁接苗。经过中午的强光和高温后,M9和M26矮化中间砧嫁接苗的Fo显著下降,NPQ和ETR明显升高,而对照嫁接苗的Fo显著上升,NPQ和ETR升高不明显,Fo的升高表明对照嫁接苗的PSⅡ反应中心由于强光破坏而明显失活。【结论】矮化中间砧影响下的苹果苗防御强光破坏的机制与对照嫁接苗不同,矮化苗的光能调节能力更强,其因具有较高的净光合速率而早产。 展开更多
关键词 苹果生理 矮化中间砧 光合指标 荧光参数
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不同环丙烯类乙烯抑制剂对苹果常温贮藏保鲜效果的影响 被引量:33
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作者 程顺昌 冷俊颖 +3 位作者 任小林 魏宝东 付琳 冯叙桥 《农业工程学报》 EI CAS CSCD 北大核心 2012年第6期269-273,共5页
为了研究不同支链长度的3种环丙烯类乙烯抑制剂处理对寒富苹果常温贮藏效果的影响,分别采用0.75μL/L1-MCP(1-甲基环丙烯),2μL/L1-PentCP(1-pentylcclopropene,1-戊基环丙烯)和0.5μL/L1-OCP(1-octylcyclopropene,1-辛基环丙烯)在常温... 为了研究不同支链长度的3种环丙烯类乙烯抑制剂处理对寒富苹果常温贮藏效果的影响,分别采用0.75μL/L1-MCP(1-甲基环丙烯),2μL/L1-PentCP(1-pentylcclopropene,1-戊基环丙烯)和0.5μL/L1-OCP(1-octylcyclopropene,1-辛基环丙烯)在常温条件下,熏蒸处理寒富苹果20h,以不处理为对照,处理后装入厚度0.02mm保鲜袋于常温下贮藏(20℃)。结果表明:1-MCP和1-PentCP处理能较好地抑制寒富苹果贮藏过程中的呼吸强度和乙烯释放量,各处理呼吸高峰时间较对照晚出现了4d,各处理对乙烯释放高峰出现的时间延迟了8d,较好地保持了果实贮藏期间的硬度,延缓了果实固形物含量和丙二醛含量的上升速度。这2个处理还在一定程度上延缓了细胞膜保护酶过氧化物酶、超氧化物歧化酶和过氧化氢酶的活性变化。而1-OCP处理却促进了寒富苹果果实贮藏期间的丙二醛含量的上升,进而导致在贮藏后期出现了一定的伤害作用。研究结果表明,1-MCP和1-PentCP处理可以抑制寒富苹果的生理代谢,保持果实品质和降低膜脂伤害程度,从而延缓寒富苹果采后的成熟衰老进程。 展开更多
关键词 水果 贮藏 生理 苹果 1-MCP 结构类似物
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Structure Parameters and Physiological Indices Research of High-quality and High-yield Apple Orchards 被引量:1
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作者 薛晓敏 王翠玲 +2 位作者 王金政 孟海凤 聂佩显 《Agricultural Science & Technology》 CAS 2014年第11期1953-1956,1959,共5页
In order to research environment parameters and physiological indices of high-quality and high-yield apple trees, two orchards with young and mature apples trees were investigated to explore structural parameter of ap... In order to research environment parameters and physiological indices of high-quality and high-yield apple trees, two orchards with young and mature apples trees were investigated to explore structural parameter of apple tree and community, and some physiological indices in fields and by room measurements. The results showed that tree height of high-quality orchard was in the range of 260 to 290 cm, branch angle in 70°-75°, and orchard coverage rate in 75%-94%, and the connec-tion rates between rows and trees were lower. Furthermore, the total branches of mature orchard reached 1.04 ×106 per hm2, while the young orchard was 8.79 ×105 per hm2; the leaves were thick and chlorophyl content was high, with SPAD value at 58.22. Additional y, the photosynthesis of the orchard was strong, and net photo-synthetic rate was 17.48-21.8 μmolCO2/(m2·s). The proportions of lateral shoot of bearing part were 81% and 75% respectively. 展开更多
关键词 High-quality and high-yield Apple orchard Structure parameters Physio-logical index
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Research Progress and Identification Method of Apple Stress Resistance
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作者 王贵平 王金政 +2 位作者 薛晓敏 路超 聂佩显 《Agricultural Science & Technology》 CAS 2013年第10期1413-1416,共4页
In the research, changes of apple chemistry, and molecule, under stresses, are n terms of morphology, physiology, bio- illustrated and research and identifica- tion methods of apple resistance are explored involving ... In the research, changes of apple chemistry, and molecule, under stresses, are n terms of morphology, physiology, bio- illustrated and research and identifica- tion methods of apple resistance are explored involving drought-resistance, flood-re- sistance, salt-stress resistance, cold-hardiness and heat-resistance. In addition prospects of apple resistance research are proposed, as well. 展开更多
关键词 APPLE Adverse stress Stress resistance Research progress Identifica- tion method
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Effects of Adaptation to Elevated Salinity on Some Enzymes' Salt_tolerance in Vitro and Physiological Changes of Eelgrass 被引量:20
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作者 叶春江 赵可夫 《Acta Botanica Sinica》 CSCD 2002年第7期788-794,共7页
The eelgrass ( Zostera marina L.) was treated with artificial seawater (ASW) of different salinities ( 100%, 150% and 200% seawater) for 5 d. The activities of two enzymes extracted from the plant leaves were determin... The eelgrass ( Zostera marina L.) was treated with artificial seawater (ASW) of different salinities ( 100%, 150% and 200% seawater) for 5 d. The activities of two enzymes extracted from the plant leaves were determined under a salinity grade in vitro So were the photosynthesis rates of the plants from the three treatments in the media with different salinities 100%, 150%, 200%, 300% ASW) and Some physiological data. The data showed that under increased salinities (concentrated seawater), Na+, Cl-, MDA (malon dialdehyde) and glucose contents and the osmotic potentials ( absolute value) in the leaves increased with the salinity elevation in the medium (ASW), but both K+ and free amino acid (mainly proline) contents decreased. Malate dehydrogenase (MDH) from the plant leaves under a salinity grade showed its activities (A) as follows: A(100%) (ASW) > A(150%) (ASW) > A(200%) (ASW). Phosphoenolpyruvate carboxylase (PEPC) extracted from the 100% ASW- and 200% ASW-treated plants showed similar activities (both insensitive to salinities) under the salinity grade in vitro, but the activities of PEPC from plants treated with 150% ASW were dependent oil salinity. Whether the plant is stressed at 150% ASW and can stand higher salinity than seawater needs to be studied further. Meantime, die data do not agree with the opinion that the adaptation of the eelgrass to seawater salinity is partly fulfilled by its insensitiveness to salinities in Some metabolic enzymes. It can be inferred that the lack of transpiration may be an important aspect of tire plant's tolerance to seawater salinity. 展开更多
关键词 EELGRASS salinity adaptation enzyme salt tolerance PEPC MDHI MDA
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