引进红树拉关木和两种乡土红树离子平衡及光合作用的比较研究

为了比较引进红树与乡土红树的耐盐性差异,该研究以引进红树植物拉关木(Laguncularia racemosa)和乡土红树植物木榄(Bruguiera gymnorrhiza)与秋茄(Kandelia obovata)幼苗作为实验材料,分析其在不同Na Cl浓度(100、200、300、400 mmol·L^-1)处理下各器官离子浓度(Na^+、Cl^–、K^+、Ca^2+和Mg^2+)和叶光合作用的变化。结果表明:(1)高盐胁迫(400 mmol·L^-1Na Cl,28 d)处理下,拉关木根系Na^+增幅较小,秋茄根、叶Cl^–含量增幅均高于木榄和拉关木,说明拉关木在较高的盐浓度时能限制根...

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Published in广西植物 Vol. 36; no. 4; pp. 387 - 396
Main Author 向敏 刘强 李妮亚 李伟 张云云
Format Journal Article
LanguageChinese
Published 热带动植物生态学省部共建教育部重点实验室,海南师范大学生命科学学院,海口571158 2016
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ISSN1000-3142
DOI10.11931/guihaia.gxzw201508016

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Summary:为了比较引进红树与乡土红树的耐盐性差异,该研究以引进红树植物拉关木(Laguncularia racemosa)和乡土红树植物木榄(Bruguiera gymnorrhiza)与秋茄(Kandelia obovata)幼苗作为实验材料,分析其在不同Na Cl浓度(100、200、300、400 mmol·L^-1)处理下各器官离子浓度(Na^+、Cl^–、K^+、Ca^2+和Mg^2+)和叶光合作用的变化。结果表明:(1)高盐胁迫(400 mmol·L^-1Na Cl,28 d)处理下,拉关木根系Na^+增幅较小,秋茄根、叶Cl^–含量增幅均高于木榄和拉关木,说明拉关木在较高的盐浓度时能限制根系对Na^+、Cl^–的吸收,减少向地上部分运输。(2)高盐胁迫均增加3种红树根、叶的K^+浓度(木榄叶K^+略有降低,差异不显著),表明3种红树均可吸收K^+,来限制Na^+对植物的伤害;同时,降低3种红树根Ca^2+浓度,但拉关木根Ca^2+下降幅度小于秋茄和木榄,说明拉关木具有更强的防止Ca^2+流失的能力。(3)拉关木根维持Na^+/K^+、Na^+/Ca^2+平衡的能力强于秋茄和木榄。(4)高盐胁迫引起秋茄与木榄光合速率均降低,而拉关木光合速率却增加了54.1%。综上所述,拉关木能限制根系对Na Cl的吸收,有效维持Na^+/K^+、Na^+/Ca^2+的平衡,并保持较高的光合速率,这表明拉关木与木榄和秋茄相比具有更高的耐盐性。
Bibliography:To compare the salt resistance difference of the introduced mangrove and the native mangrove,dynamic variation of accumulation of Na^+,Cl^–,K^+,Ca^2+and Mg^2+ in different tissues and photosynthesis were examined in 3-monthold seedlings of the introduced mangrove Laguncularia racemosa and two native species Bruguiera gymnorrhiza and Kandelia obovata under different treatments of Na Cl( 100,200,300 and 400 mmol·L^-1). The results were as follows:( 1)The increase in Na^+concentration in Kandelia obovata and Bruguiera gymnorrhiza roots was greater than Laguncularia racemosa,while the concentration of Cl^–in Kandelia obovata was higher than that of the other two species in leaves and roots. Thus,Laguncularia racemosa could restrict root absorption of Na^+,Cl^–and reduce transportation to aerial parts under salt stress of 400 mmol·L^-1.( 2) K^+concentration in roots and leaves increased in seedlings of all the three mangrove species under high salt stress except that K^+concentration in Bruguiera gymnorrhiza leave
ISSN:1000-3142
DOI:10.11931/guihaia.gxzw201508016