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春小麦幼苗
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  spring wheat seedling
     Effect of Treatment at Different Temperature on Peroxidase and Esterase Tsozyme in Spring Wheat Seedling Leaves
     不同温度处理对春小麦幼苗叶内过氧化物酶和酯酶同工酶的影响
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     Effects of Zeatin on Metabolism Respiratory, in spring Wheat seedling
     玉米素对春小麦幼苗呼吸代谢的影响
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     The offects of nutritional elements on protective enzyme system and the content of osmotic matters of spring wheat seedling (SWS) were studied under different water levels by pot experiment.
     在盆栽条件下研究了水分亏缺时 ,氮、磷营养对春小麦幼苗渗透物质及相关保护酶活性的影响 .
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     The amount of different concentration elements absorbed by the spring wheat seedling was different, and distributing in the plant is also different.
     各品种春小麦幼苗植株对3元素的吸收与分布随浓度不同而不同.
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     The paper probed into the relations between nutritional elements (Nitrogen, Phosphorus) and protective enzyme system of spring wheat seedling (SWS) under different water level in potted condition.
     通过盆载试验,研究了氮、磷营养在水分亏缺情况下对春小麦幼苗相关保护酶活性的影响。
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  spring wheat seedlings
     The contents of O -· \-2 and H 2O 2,plasmalemma permeability and CAT activity in 12 d spring wheat seedlings increased during 1 mmol·L -1 and 10 mmol·L -1 H 2O 2 stress hardening,but the Chl content decreased,and SOD activity increased (1 mmol·L -1 H 2O 2 stress) or decreased (10 mmol·L -1 H 2O 2 stress).
     12 d龄的春小麦幼苗在 1 mmol· L- 1及 1 0 mmol· L- 1H2 O2 的胁迫锻炼过程中 ,质膜透性增大 ,O- · 及 H2 O2 含量增多 ,CAT活性升高 ,叶绿素含量降低 ,低浓度 H2 O2 胁迫使SOD活性上升 ,高浓度时却使其活性下降。
短句来源
     Comparison study on osmotic adjustment of accumulation of spring wheat seedlings in water and salt stress
     水分和盐分胁迫下春小麦幼苗渗透调节物质积累的比较研究
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     For spring wheat seedlings grown under 20℃, the level of Ca 2+ ATPase activity in plasmolemma was similar with that of winter wheat seedlings in the same treatment.
     2 0℃下生长的春小麦幼苗 ,其质膜 Ca2 + - ATPase活性水平高于同样条件处理下的冬小麦幼苗的酶活性水平。
短句来源
     2)Spring wheat seedlings grown under 20, the level of Ca2-ATPase activities in plasmolemma are similar with the winter wheat seedlingsunder the same treatment conditions 2 treated for lh and 3h, the enzymeactivities in plasmolemma increased considerably.
     2)20℃下生长的春小麦幼苗,其质膜Ca~(2+)-ATPase活性水平高于同样条件处理下的冬小麦幼苗的酶活性水平。 2℃处理1h、3h,春小麦幼苗质膜上酶活性反应明显增强。
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     The Physiological and Biochemical Effects on Spring Wheat Seedlings by the Monosalt Treatments
     单盐处理对春小麦幼苗的生理生化效应
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  “春小麦幼苗”译为未确定词的双语例句
     Osmotic dehydration of wheat seedlings ( Triticum aestivum L.cv.Miannong No.4) in -0.5 MPa PEG solutions for 24,48 and 72 h,resulted in mild,moderate and severe water stress in leaves,respectively.
     棉农 4号春小麦幼苗 (Triticum aestivum L.cv.Miannong No.4)经 - 0 .5MPa PEG溶液渗透胁迫 2 4、48和 72 h,使叶片分别受到轻度、中度和重度的水分胁迫。
短句来源
     Comparison of Ca~(2+) -ATPase Activity in Seedling Plasmolemma of Cold-resistant Winter Wheat vs. Cold-sensitive Spring Wheat under 2℃ Low Temperature *
     2℃低温下抗寒冬小麦与冷敏感春小麦幼苗细胞质膜Ca~(2+)-ATPase活性比较
短句来源
     The response of endogenous ABA and three enzymes activity of scavenging free radical in wheat seedling of three genotypes treated with -0.61 or -1.56 MPa PEG 4000,and control,was reported.
     3个基因型的春小麦幼苗分别用 PEG作轻度胁迫 (- 0 .6MPa)或中度胁迫 (- 1 .56MPa)的 2个处理 ,不胁迫为对照 ,2 d后分开观察成熟叶和新生叶中内源 ABA和 3个自由基清除酶活力对水胁迫的反应。
短句来源
     The response of endogenous ABA and enzymes activity of scavenging free radical of wheat seedling to water stress
     春小麦幼苗在水胁迫下内源 ABA含量与自由基清除酶活力的变化
短句来源
     Using cerium trichloride precipitation method with electromicroscopic cytochemical assay, the difference of Ca 2+ ATPase activity in plasmolemma between seedlings of cold resistant winter wheat and cold sensitive spring wheat was compared.
     通过氯化铈 (Ce Cl3)沉淀的电镜细胞化学法 ,对比观察了抗寒冬小麦幼苗和冷敏感春小麦幼苗质膜 Ca2 + -ATPase活性的变化 ,结果显示 :2 0℃下生长的冬小麦幼苗 ,Ca2 + - ATPase活性主要定位于质膜上。
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  spring wheat seedlings
Vegetative experiments showed that the population density of antiphytopathogenic bacillar species introduced into the rhizosphere of spring wheat seedlings essentially depended on the soil temperature and not on the soil moisture content.
      
Silicon and copper interaction in the growth of spring wheat seedlings
      
Sixteen-day old spring wheat seedlings were placed in a growth room under precisely controlled root temperatures and soil water potentials.
      


A comparative study on changes in ATPase activity at plasmallemma and tonoplast of winter wheat seedlings and spring wheat seedlings during cold hardening was carried out by use of cytochemical method of lead phosphate precipitation at ultrastructural level.The following experimental results have been obtained: 1.When the tissue slices from unhardened winter wheat seedlings were incubated for 2.5 hr at 22℃,the heavy lead phosphate deposits indic-ating a high activity of ATPase were obviously localized at plasmallemma,and...

A comparative study on changes in ATPase activity at plasmallemma and tonoplast of winter wheat seedlings and spring wheat seedlings during cold hardening was carried out by use of cytochemical method of lead phosphate precipitation at ultrastructural level.The following experimental results have been obtained: 1.When the tissue slices from unhardened winter wheat seedlings were incubated for 2.5 hr at 22℃,the heavy lead phosphate deposits indic-ating a high activity of ATPase were obviously localized at plasmallemma,and plasmodesmata,while they were not found at tonoplast and other organ-elles (Fig.1,2).At 3℃ incubation,the ATPase activity at plasmallemma and plasmodesmata of these tissue slices was inhibited.When the tissue slices from cold hardened winter wheat se-edlings were incubated at 22℃ or 3℃,ATPase activity not only was showed at plasmallemma and plasmodesmata,but also at tonoplast (Fig.3,4). 2.When the tissue slices from non-hardened spring wheat seedlings were incubated at 22℃ or 3℃,the ATPase activity reaction of their plas-mallemma and tonoplast was similar to that of unhardened winter wheat tissues under same incubation conditions.Plasmallemma ATPase activity was ob-served at 22℃ incubation,but not or insignificant at 3℃.The ATPase ac-tivity at tonoplast was absent at either 22℃ or 3℃ incubation (Fig.5,6,7).In cold hardened spring wheat tissue slices,the ATPase activity at plasmal-lemma and tonoplast was significantly different from that of cold hardened winter wheat seedlings,Exept plasmal-lemma ATPase activity was present at 22℃ incubation,ATPase activity was not shown at tonoplast at either 22℃ or 3℃ incubation (Fig.9,10). 3.The above results indicated that during cold hardening of winter ??wheat seedlings,the cold-tolerant char-acter of plasmallemma ATPase activity was developed,and so it is allowed to maintain its high activity under low temperature favouring to hardening;and the high ATPase activity at tono-plast was formed.Under hardening of low temperature the cold resistance of spring wheat seedlings is not developed,and the ATPase activity at plasmallemma and tonoplast does not produce the adaptive changes being similar to those of winter wheat mentioned above.Therefore,it is evident that the adaptive changes in ATPase activity at plasmal-lemma and tonoplast of winter wheat during cold hardening are associated with the development of cold resistance of plants.

采用磷酸铅沉淀的电镜细胞化学方法,对比观察了耐寒的冬小麦幼苗和不耐寒的春小麦幼苗在抗寒锻炼过程中质膜及液泡膜ATP酶活性的变化,结果指出:冬小麦质膜ATP酶在抗寒锻炼过程中获得了耐低温的特性,以致在适于锻炼的低温(3℃)下,能保持高的活性反应;同时液泡膜在锻炼过程中形成高的ATP酶活性。春小麦幼苗在低温锻炼中不能提高抗寒力,其质膜ATP酶在锻炼过程中也不能发展抗寒性能,因而在3℃低温培育下不表现明显的活性;同时液泡膜也不产生ATP酶活性。这些结果进一步证明,在抗寒锻炼中,冬小麦质膜耐低温特性的形成,以及在液泡膜上产生高的ATP酶活性,是与植株抗寒力的提高有密切关系的重要特性。

This paper refers to the physiological efficiency on spring wheat seedings Produced by thirty alkanol treating seeds. It has been proved that soaking seeds with thirty alkanol under suitable concentration results in the following physiological efficiency:1、It can improve the fresh weight and dry weight of single plant, and the growth of spring wheat leaves and roots.2、It can increase the respiratory intension.3、It can enhance starch synthetase activity and quicken starch synthetase transform.4、It can raise nitrate...

This paper refers to the physiological efficiency on spring wheat seedings Produced by thirty alkanol treating seeds. It has been proved that soaking seeds with thirty alkanol under suitable concentration results in the following physiological efficiency:1、It can improve the fresh weight and dry weight of single plant, and the growth of spring wheat leaves and roots.2、It can increase the respiratory intension.3、It can enhance starch synthetase activity and quicken starch synthetase transform.4、It can raise nitrate reductase activity and promote nitrogn metabolism.

本文报导了三十烷醇浸种对春小麦幼苗生长的生理效应。实验证明,用适宜浓度的三十烷醇溶液浸种能促进春小麦幼苗叶片与根的生长,提高单株的鲜重和干重,增加呼吸强度,提高淀粉酶的活性,加速淀粉的转化和可溶性糖的运输。另外,还能提高硝酸还原酶的活力,对氮素代谢可能亦存在增益效应。

Proline content of wheat leave was increa-

Ca植物春小麦幼苗叶片累积脯氨酸的数量随水分胁迫时间和强度递增,累积的数量与品种的抗旱性没有相关性。C_4植物玉米和高粱累积脯氨酸的数量低于小麦,但高粱多于玉米。CAM植物落地生根脯氨酸含量略有变化。旱生植物细枝岩黄芪的同化枝累积脯氨酸的数量高于中生植物钻天杨和槐的叶片,而梭梭的同化校则低于槐而高于钻天杨。表明这些植物累积脯氨酸的数量与它们的抗旱性无夫。因此似不宜用脯氨酸数量的多少作为植物抗旱性的生理指标。

 
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