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叶片发育阶段影响甘蓝型油菜在硫缺乏时的硫酸盐消耗和特定硫酸盐转运蛋白的表达。

Leaf developmental stage affects sulfate depletion and specific sulfate transporter expression during sulfur deprivation in Brassica napus L.

作者信息

Parmar S, Buchner P, Hawkesford M J

机构信息

Department of Plant Sciences, Rothamsted Research, West Common, Harpenden, Hertfordshire AL5 2JQ, UK.

出版信息

Plant Biol (Stuttg). 2007 Sep;9(5):647-53. doi: 10.1055/s-2007-965428.

DOI:10.1055/s-2007-965428
PMID:17853364
Abstract

BRASSICA NAPUS was grown under hydroponic conditions and responses to the removal of the external supply of sulfur (S) were analysed in roots and in leaves of different developmental age. The concentrations of sulfate and nitrate were greatest in the older leaves and least in younger leaves, whilst phosphate was greatest in roots and youngest leaves and least in old leaves. S-deprivation resulted in decreases in tissue sulfate concentrations at variable rates in the order: roots and young leaves > middle-aged leaves > oldest leaves. Phosphate concentrations were unaffected and nitrate concentrations were only depleted in the oldest leaves. Expression of representative members of the sulfate transporter gene family was assessed by Northern blotting in the respective tissues. Group 1 transporters (high affinity type) were induced in response to S-deprivation in all tissues except old leaves, where no expression was detected, and to the greatest extent in roots. Groups 2 and 5 (a BRASSICA Group 5 sulfate transporter is reported here, accession number: AJ311389) transporters showed either no or only a small induction by S-deprivation. Group 4 transporters (localised in the tonoplast membrane and thought to be involved in vacuolar sulfate efflux) were induced by S-deprivation with a complex pattern: 4;1 was expressed in root and mature leaves, was strongly induced by sulfur-deprivation in roots, and was also induced in the middle-aged leaves alone; 4;2 was only expressed under S-deprivation in parallel with the observed pattern of tissue sulfate concentrations. Expression patterns indicated that both differences in intracellular sulfate pools and localised aspects of the signal transduction pathway link tissue sulfate-status and sulfur-nutrition regulated gene expression.

摘要

甘蓝型油菜在水培条件下生长,并分析了不同发育阶段根和叶对去除外部硫供应的响应。 older leaves中硫酸盐和硝酸盐的浓度最高,younger leaves中最低,而磷酸盐在根和youngest leaves中含量最高,在old leaves中最低。缺硫导致组织硫酸盐浓度以不同速率下降,顺序为:根和young leaves>中年叶>最老叶。磷酸盐浓度不受影响,硝酸盐浓度仅在最老叶中降低。通过Northern印迹法评估硫酸盐转运蛋白基因家族代表性成员在各自组织中的表达。除old leaves(未检测到表达)外,所有组织中的第1组转运蛋白(高亲和类型)在缺硫时均被诱导,在根中诱导程度最大。第2组和第5组(本文报道了一种甘蓝型第5组硫酸盐转运蛋白,登录号:AJ311389)转运蛋白在缺硫时无诱导或仅轻微诱导。第4组转运蛋白(定位于液泡膜,被认为参与液泡硫酸盐外流)在缺硫时以复杂模式被诱导:4;1在根和成熟叶中表达,在根中强烈受缺硫诱导,也仅在中年叶中诱导;4;2仅在缺硫时与观察到的组织硫酸盐浓度模式平行表达。表达模式表明,细胞内硫酸盐库的差异和信号转导途径中的局部方面都将组织硫酸盐状态与硫营养调节的基因表达联系起来。

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