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Response of Transpira tion and Na+ Intake of Seedlingto Cutting Root and NaCl Trea tments

  • There were no report on whether cutting root influence salinity intake in afforestation in saline-alkali soils.To further examine the response of transp iration and Na+ intake of seedling to cutting root and NaCl treatment, itwastested to leaf damage rate, transp iration rate and Na+ content in the root, branches and leaves, by cutting absorption root of the seedling of Cyclobalanopsis m y rsinaefolia and Osm anthus fragrans var. auran tiacus under the condition of 150 mmol NaCl treatment. The results showed: (1) Cutting root treatments of both C. m yrsinaefolia and O.fragrans var. auran tiacus resulted in the increase ofNa+ content and its content ratio, which leaded to the increasement of leaf damage rate. (2) If NaCl treatmentswere immediately done after cutting root, itwas significant to increase Na+ up take, caused serious salinity p roblems, and largest range of decrease of transp iration rate. In contrast,if NaCl treatmentswere done on 3 days after cutting root, Na+ intake and salinity p roblems were obviously inhibi2ted. (3) Na+ up take increased with the increase of transp iration rate in C. m y rsinaefolia and O. frag rans, and therewas a significant positive correlation ( r = 0. 613**, n = 18) between Na+ up take and transp iration rate for O. fragrans. All these suggested that it was not feasible for afforestation in saline2alkali soils to cutting root of seedling,however, if itmust be cut, it was necessary to heeling-in for a few days in the garden to p revent salinity p roblem from the rap id up take of salinity.
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    [3] 土屋幹夫. 塩分? ¨ ì ?下の作物の生理[J]. 遺伝, 1993, 47:82 - 87

    [4] 重永英年, 石田厚, 上村章,等. NaCl処理を行ったˉ ??? 苗木の塩集積特性[M]. 第107回日林講要, 1996: 126

    [5] 土屋幹夫,内藤整,江原宏,等. 塩分濃度に対する? - の生理反応に関する研究—第一報. 蒸散とNaの吸収移行の関係について[J]. 日作紀, 1992, 61: 16 - 21

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    Dalton F N, Raats P A C, GardnerW R. Simultaneous up take ofwater and solutes by palnt roots[J]. Agronomy Journal, 1975, 67:334 - 339
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    Naito H, TsuchiyaM, Kumano S. Physiological response to salinityin rice p lant II. Relationship of sodium exclusion to transp iration androot-resp iration rate in NaCl-stress conditions [J]. Jpn J Crop Sci,1994, 63: 320 - 325
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    TsuchiyaM, MiyakeM, Naito H. Physiological response to salinityin rice p lant III. A possiblemechanism forNa+ exclusion in rice rootunderNaCl-stress conditions[J]. Jpn J Crop Sci, 1994, 63: 326 -332
    [10] 内藤整, 土屋幹夫, 熊野誠一. 高NaCl濃度下における? - のNa吸収と蒸散速度および根部呼吸速度との関係[J]. 日本作物記事, 1993, 62: 138 - 139

    [11] 姜国斌,矢幡久. 樹木の耐塩性のá ? ?? à に関する研究-苗木の塩吸収量に及ぼす蒸散の影響

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    沈阳化工大学材料科学与工程学院 沈阳 110142

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Response of Transpira tion and Na+ Intake of Seedlingto Cutting Root and NaCl Trea tments

  • 1. Dalian NationalitiesUniversity, Dalian 116600, Liaoning, China
  • 2. Beijing Forestry University, Beijing 100083, China
  • 3. Kyushyu University, Fukuoka , Fukuoka 812, Japan

Abstract: There were no report on whether cutting root influence salinity intake in afforestation in saline-alkali soils.To further examine the response of transp iration and Na+ intake of seedling to cutting root and NaCl treatment, itwastested to leaf damage rate, transp iration rate and Na+ content in the root, branches and leaves, by cutting absorption root of the seedling of Cyclobalanopsis m y rsinaefolia and Osm anthus fragrans var. auran tiacus under the condition of 150 mmol NaCl treatment. The results showed: (1) Cutting root treatments of both C. m yrsinaefolia and O.fragrans var. auran tiacus resulted in the increase ofNa+ content and its content ratio, which leaded to the increasement of leaf damage rate. (2) If NaCl treatmentswere immediately done after cutting root, itwas significant to increase Na+ up take, caused serious salinity p roblems, and largest range of decrease of transp iration rate. In contrast,if NaCl treatmentswere done on 3 days after cutting root, Na+ intake and salinity p roblems were obviously inhibi2ted. (3) Na+ up take increased with the increase of transp iration rate in C. m y rsinaefolia and O. frag rans, and therewas a significant positive correlation ( r = 0. 613**, n = 18) between Na+ up take and transp iration rate for O. fragrans. All these suggested that it was not feasible for afforestation in saline2alkali soils to cutting root of seedling,however, if itmust be cut, it was necessary to heeling-in for a few days in the garden to p revent salinity p roblem from the rap id up take of salinity.

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