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   细胞分裂素(zr) 的翻译结果: 查询用时:0.009秒
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细胞分裂素zr
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  “细胞分裂素(zr)”译为未确定词的双语例句
     Mycorrhiza significantly increased ZR contents of leaves and IAA & ZR contents of roots, decreased ABA contents of leaves and roots.
     菌根显著增加轻度和中度胁迫下植株叶片细胞分裂素(ZR)含量以及根部生长素(IAA)和ZR含量,降低叶片和根部脱落酸(ABA)含量;
短句来源
     The effects of ferulic acid (FA) on content of endogenous hormone--indole acetic acid (IAA), gib-berellin (GA), cytokinin (ZR) and abscisic acid (ABA) of wheat seedling are studied.
     研究了化感物质阿魏酸(FA)在0.25mmol/L、2.50mmol/L浓度下对小麦幼苗内源激素——生长素(IAA)、赤霉素(GA)、细胞分裂素(ZR)和脱落酸(ABA)含量的影响,并测定了培养液中剩余阿魏酸量。
短句来源
     The results showed that root activities were decreased, root/shoot ratio and IAA in the root and leaves were high, dry weight and ZR in the root and leaves were low.
     结果表明,低磷胁迫下晒红烟的根系活力活性降低,根冠比及根和叶中生长素(IAA)含量均增加,干物质积累和细胞分裂素(ZR)含量则减少。
短句来源
  相似匹配句对
     s. ,Ti-s.
     ,Zr-S.
短句来源
     Zr.
     Zr.
短句来源
     h, D1666g/g(Zr).
     h,D=1666g/g(Zr).
短句来源
     Cytokinin Activity of Phenyl Urea Derivatives
     苯基脲衍生物的细胞分裂素活性
短句来源
     Review of Bioassy on Cytokinin
     细胞分裂素生物测试法评述
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  cytokinin (zr)
Thus, cytokinin (ZR and Z) flowing up through the xylem from the root system does not readily enter the embryo (though metabolites such as adenosine could), and the seeds clearly do not compete with the leaves for this supply of cytokinin.
      


The effects of ferulic acid (FA) on content of endogenous hormone--indole acetic acid (IAA), gib-berellin (GA), cytokinin (ZR) and abscisic acid (ABA) of wheat seedling are studied. The results show that the residual ferulic acid of culture solution was decreased very fast from day three to day ten. After two weeks up to 98% FA were not found. The contents of four endogenous hormones showed insignificant difference at 0.25mmol/L and a increase at 2.50mmol/L comparing with the contrast. The accumulation of IAA,...

The effects of ferulic acid (FA) on content of endogenous hormone--indole acetic acid (IAA), gib-berellin (GA), cytokinin (ZR) and abscisic acid (ABA) of wheat seedling are studied. The results show that the residual ferulic acid of culture solution was decreased very fast from day three to day ten. After two weeks up to 98% FA were not found. The contents of four endogenous hormones showed insignificant difference at 0.25mmol/L and a increase at 2.50mmol/L comparing with the contrast. The accumulation of IAA, GA and ZR in wheat inhibited the growth of wheat seeding and induced ABA increment.

研究了化感物质阿魏酸(FA)在0.25mmol/L、2.50mmol/L浓度下对小麦幼苗内源激素——生长素(IAA)、赤霉素(GA)、细胞分裂素(ZR)和脱落酸(ABA)含量的影响,并测定了培养液中剩余阿魏酸量。结果表明,在2.50mmol/L处理的培养液中剩余阿魏酸量在3~10d内下降最快,14d后98%以上阿魏酸消失。不同浓度阿魏酸对小麦幼苗中4种内源激素的含量表现为0.25mmol/L与对照差别不大,2.50mmol/L样品中的含量均呈上升趋势,但生长素、赤霉素、细胞分裂素在小麦体内大量积累,反而抑制了小麦幼苗的生长,同时诱导脱落酸含量升高。

By using pot tests, the effect of low-P stress on dark sun-cured tobacco endogenous hormone and root activities were studied during different growth stage. The results showed that root activities were decreased, root/shoot ratio and IAA in the root and leaves were high, dry weight and ZR in the root and leaves were low. The high IAA/ZR under P stress promote the root growth, and root /shoot ratio increased. So it can take in more P from soil in to resist unfavorable environment conditions.

通过盆栽试验和室内分析,研究低磷胁迫对晒红烟内源激素和根系活力的影响。结果表明,低磷胁迫下晒红烟的根系活力活性降低,根冠比及根和叶中生长素(IAA)含量均增加,干物质积累和细胞分裂素(ZR)含量则减少。低磷胁迫下,烟株为适应胁迫环境,IAA/ZR比值增大,促进了根系发育,使根冠比增大,以提高对磷的吸收效率,用来满足烟株对磷素的需求。

Mycorrhizal and non-mycorrhizal Cinnamomum camphora (camphor tree) seedlings were exposed to Al 3+ levels of 0, 0.5, 8 and 15 mmol·L -1 in acid solutions for 10 weeks. We evaluated if arbuscular mycorrhizas (AM) and its host’ growth could be responsible for the tolerance to acid solutions with different Al 3+ level. The results showed that as far as morphology and biomass of aboveground and belowground were concerned, mycorrhizal plants had higher resistance to Al than non-mycorrhizal plants with 0 and 0.5 mmol·L...

Mycorrhizal and non-mycorrhizal Cinnamomum camphora (camphor tree) seedlings were exposed to Al 3+ levels of 0, 0.5, 8 and 15 mmol·L -1 in acid solutions for 10 weeks. We evaluated if arbuscular mycorrhizas (AM) and its host’ growth could be responsible for the tolerance to acid solutions with different Al 3+ level. The results showed that as far as morphology and biomass of aboveground and belowground were concerned, mycorrhizal plants had higher resistance to Al than non-mycorrhizal plants with 0 and 0.5 mmol·L -1 Al 3+ in acid solutions; mycorrhizal plants appear better or similar with non-mycorrhizal plants with 8 and 15 mmol·L -1 Al 3+ in acid solutions. Mycorrhiza significantly increased ZR contents of leaves and IAA & ZR contents of roots, decreased ABA contents of leaves and roots. At the same time, the index of growth, morphology and P content is significantly correlated with phytohormones contents in different organs. Our results indicated the AM fungal consortium confer Al resistance to camphor tree seedlings.

采用不同浓度的铝(Al)溶液胁迫接种和不接种丛枝菌根的香樟幼苗的方法,研究生长10周后的植株幼苗的形态、生物量以及不同器官的磷(P)含量和植物激素水平对环境胁迫的响应。结果表明:在Al3+浓度为0和0·5mmol·L-1的轻度胁迫下,接种植株的形态、生物量、P和植物激素水平等大部分指标要显著好于不接种的植株;而在Al3+浓度为8和15mmol·L-1的中、重度胁迫下,则略好或接近不接种的植株。菌根显著增加轻度和中度胁迫下植株叶片细胞分裂素(ZR)含量以及根部生长素(IAA)和ZR含量,降低叶片和根部脱落酸(ABA)含量;同时,樟树幼苗的形态、生长与P含量和不同器官植物激素含量之间显著相关。接种丛枝菌根给予植株一定的抗Al毒特性。

 
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