1) Excessive Fe~(2+) stress
高铁胁迫
2) excessive ferrous ion stress
高亚铁离子胁迫
3) Iron deficiency stress
缺铁胁迫
1.
Employing high resolution two dimensional gel electrophoresis(2 DE), the differentially displayed proteins expressed in rice( Oryza sativa ) leaves under iron deficiency stress were separated.
水稻幼苗经缺铁胁迫诱导处理 1、3、5d后 ,用酚法和TCA 丙酮法提取叶的可溶性蛋白 ,进行双向电泳 (2 DE)分析 。
4) iron deficiency
铁胁迫
1.
The results showed that FRO2 gene was over-expressedn under conditions of iron deficiency.
结果显示,FRO2基因在缺铁条件下大量表达;其表达量在根系中最强,其次是果实,叶片中最弱;在正常培养条件下,转基因AFRO2表达高于对照和其它非转基因品种;在缺铁胁迫下转基因AFRO2根系铁还原酶活性增加最多,吸收有效铁也最多。
2.
Studies on enhancing the activation and utilization eficiency of iron,and adaptive and regulatory mechanisms of iron deficiency in plants are becoming one of focuses in plant nutriology currently.
然而有关NO影响缺铁胁迫下植物体内铁代谢的调整及铁、一氧化氮、抗氧化系统三者之间关系的研究还不多,这正是本论文的立论依据和研究重点之所在。
5) iron stress
缺铁胁迫
1.
It has been hypothesized that under iron stress high ferric chelate reductase (FCR) activity of iron efficient plants in the absorptive root will be induced and thus result in subsequent Fe 2+ transport across the plasmalemma.
在田间表现耐缺铁的香橙在缺铁胁迫下 ,三价铁螯合还原酶活性在胁迫 4周时即达到最强 ,增加约 2 0倍 ;而在田间表现极易缺铁的枳在铁胁迫 4周时 ,三价铁螯合还原酶活性仅增加约 3倍。
6) iron-deficiency stress
缺铁胁迫
1.
The results analysed by semiquantitative RT-PCR showed that MxFRO was induced by iron-deficiency stress in roots and leaves.
半定量RT-PCR结果表明MxFRO在小金海棠的根和叶中均受缺铁胁迫诱导。
补充资料:六(氰基-C)高铁酸铁(3+)铵盐(4-)(1:1:1)
CAS:25869-00-5
分子式:C6FeN6·Fe·H4N
分子质量:285.83
中文名称:六(氰基-C)高铁酸铁(3+)铵盐(4-)(1:1:1);染料索引颜料蓝27
英文名称:hexakis(cyano-C)-, ammonium iron(3+) (1:1:1), (OC-6-11)-Ferrate(4-)
hexacyano-ferrate(4 - ammonium iron(3+); afcf
ammonium iron hexacyanoferrate; ammonium-ferric-cyano-ferrate(ii)
ammonium-ferric-ferrocyanide
分子式:C6FeN6·Fe·H4N
分子质量:285.83
中文名称:六(氰基-C)高铁酸铁(3+)铵盐(4-)(1:1:1);染料索引颜料蓝27
英文名称:hexakis(cyano-C)-, ammonium iron(3+) (1:1:1), (OC-6-11)-Ferrate(4-)
hexacyano-ferrate(4 - ammonium iron(3+); afcf
ammonium iron hexacyanoferrate; ammonium-ferric-cyano-ferrate(ii)
ammonium-ferric-ferrocyanide
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条