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Cl− 离子在包括和排除柑橘砧木中的稳态:运输机制和候选基因的鉴定。

Cl- homeostasis in includer and excluder citrus rootstocks: transport mechanisms and identification of candidate genes.

机构信息

Instituto Valenciano de Investigaciones Agrarias, Centro de Genómica, Valencia, Spain.

出版信息

Plant Cell Environ. 2010 Dec;33(12):2012-27. doi: 10.1111/j.1365-3040.2010.02202.x.

Abstract

To reveal specific Cl(-) transport activities in the symplastic pathway, uptake, long-distance transport and distribution of Cl(-) have been investigated in the citrus rootstocks Carrizo citrange (CC, Cl(-) includer) and Cleopatra mandarin (CM, Cl(-) excluder). Using an external concentration of 4.5 mm Cl(-) , both species actively transported Cl(-) to levels that exceeded the critical requirement concentration by one and two orders of magnitude in the excluder and the includer rootstocks, respectively. Both CC and CM modulated Cl(-) influx according to the availability of the nutrient as uptake capacity was induced by Cl(-) starvation, but inhibited after Cl(-) resupply. Net Cl(-) uptake was higher in the includer CC, an observation that correlated with a lower root-to-shoot transport capacity in the excluder CM. The patterns of tissue Cl(-) accumulation indicated that chloride exclusion in the salt-tolerant rootstock CM was caused by a reduced net Cl(-) loading into the root xylem. Genes CcCCC1, CcSLAH1 and CcICln1 putatively involved in the regulation of chloride transport were isolated and their expression analysed in response to both changes in the nutritional status of Cl(-) and salt stress. The previously uncharacterized ICln gene exhibited a strong repression to Cl(-) application in the excluder rootstock, suggesting a role in regulating Cl(-) homeostasis in plants.

摘要

为了揭示共质体途径中特定的 Cl(-) 转运活性,研究了甜橙砧木卡里佐克莱门氏橘(CC,Cl(-) 包容体)和克莱门氏血橙(CM,Cl(-) 排斥体)中 Cl(-) 的吸收、长距离运输和分布。在外部 Cl(-) 浓度为 4.5mm 的条件下,两种植物均能主动将 Cl(-) 转运至超过临界需求浓度一个和两个数量级的水平,分别在排斥体和包容体砧木中。CC 和 CM 均根据养分的可用性来调节 Cl(-) 内流,因为在 Cl(-) 饥饿时会诱导吸收能力,但在 Cl(-) 再供应后会受到抑制。在包容体 CC 中,净 Cl(-) 吸收量更高,这一观察结果与排斥体 CM 中较低的根到梢的运输能力相关。组织 Cl(-) 积累的模式表明,耐盐砧木 CM 中的 Cl(-) 排斥是由于净 Cl(-) 加载到根木质部减少所致。分离出了可能参与 Cl(-) 转运调节的 CcCCC1、CcSLAH1 和 CcICln1 基因,并分析了它们对 Cl(-) 营养状况变化和盐胁迫的表达。以前未表征的 ICln 基因在排斥体根中对 Cl(-) 处理表现出强烈的抑制,这表明它在调节植物 Cl(-) 稳态中起作用。

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