期刊论文详细信息
Japanese Journal of Crop Science
Studies on the Mechanism of Salt Tolerance in Salicornia europaea L. : III. Salt accumulation and ACh function
Suguru OGURI1  Hideo KAMIMURA1  Yoshie S. MOMONOKI1  Shigeru KATO1 
关键词: Accumulation of NaCl;    アセチルコリン作用;    AChE activity;    アセチルコリン分解酵素;    ACh function;    アッケシソウ;    Halophyte;    塩化ナトリウムの蓄積;    Salicornia;    塩生植物;    Salt tolerance;    耐塩性;   
DOI  :  10.1626/jcs.65.693
学科分类:农业科学(综合)
来源: Nihon Sakumotsu Gakkai / Crop Science Society of Japan
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【 摘 要 】

A basic understanding of the mechanism of salt stress tolerance in plants is crucial to the utilization of salt tolerant crop varieties. The present work was an investigation of NaCl accumulation at the organ level in Salicornia plants. Acetylcholinesterase (AChE) activity in various different organs was also determined, by chemical and histochemical methods, in order to determine the possibility that acetylcholine (ACh) functions in Na+ and Cl- transport between organelles. High NaCl accumulation occurred in roots and in lower stems. At 5 months after germination, Salicornia plants had accumulated approximately 160 nmol and 320 nmol/100 g fresh weight of Na+ and Cl- respectively in roots. High AChE activity was also observed in roots and in lower stems. The enzyme activity in stems was higher at nodes than internodes. Histochemically, AChE activity in roots was detected in the cortex, including endodermal cells around the vascular system, and strongly in endodermis, cortex and epidermis at the parting portion of lateral root from the main root. In stems, AChE activity was detected in endodermal cells around the vascular system and concentratively at the node connected with the branch in the stem. These results suggest the possibility that ion transport at the node connected with the branch in the stem, and thc parting portion of the lateral root from the main root is facilitated by ACh function. Furthermore, excessive NaCl may be excreted through the epidermal cells of roots.

【 授权许可】

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