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首页> 外文期刊>Aquatic Botany >Effect of NaCl on photosynthesis, salt accumulation and ion compartmentation in two mangrove species, Kandelia candel and Bruguiera gymnorhiza
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Effect of NaCl on photosynthesis, salt accumulation and ion compartmentation in two mangrove species, Kandelia candel and Bruguiera gymnorhiza

机译:NaCl对两种红树植物坎德里亚·坎德尔和布鲁氏裸藻光合作用,盐分累积和离子分隔的影响

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In a 4-week study, we investigated the effects of increasing soil NaCl (100-400 mM) on photosynthesis, salt uptake and transport, and intracellular compartmentation of Na+ and Cl- in 1-year-old seedlings of Kandelia candel (L.) Druce and Bruguiera gymnorhiza (L.) Savigny. Increasing NaCl stress significantly elevated Na+ and Cl- in root and shoot tissues (stem + leaf) of both species, but B. gymnorhiza showed a rapid Na+ accumulation upon the initiation of salt stress and leaves contained 90% more Na+ and 40% more Cl- than K. candel at the end of experiment. Net photosynthetic rate (Pn) declined with increasing salinity, and the most marked reduction occurred after exposure of mangrove seedlings to a severe salinity, 400 mM NaCl. However, the inhibitory effects of severe stress varied with species: Pn decreased by 80% in K. candel whereas in B. gymnorhiza the decline was 60%. The quantum yield (AQY) and carboxylation efficiency (CE) response to severe salinity showed a trend similar to Pn, in which a lesser reduction of AQY and CE was observed in B. gymnorhiza (33-35%), as compared to K. candel (43-52%). X-ray mcroanalysis of leaf mesophyll cells showed evidence of distinct vacuolar compartmentation of Na+ in K. candel but Cl- in B. gymnorhiza after seedlings were subjected to 100 mM NaCl for 7 d. Moreover, Na+ within cell wall, cytoplasm, vacuole and chloroplast remained 23-72% lower in stressed B. gymnorhiza as compared to K. candel. In conclusion, B. gymnorhiza exhibited effective salt exclusion from chloroplasts although increasing salt stress caused a rapid and higher build up of Na+ and Cl- in the leaves. We suggest that the salt-induced Pn reduction in the two mangrove species is correlated with the ability to exclude Na+ and Cl- from the chloroplast, rather than with the bulk leaf salt concentration
机译:在一项为期4周的研究中,我们调查了土壤NaCl(100-400 mM)增加对1岁坎德里亚(Kandelea candel)幼苗中光合作用,盐吸收和运输以及Na +和Cl-的细胞内区室化的影响。 )Druce和Bruguiera Gymnorhiza(L.)Savigny。 NaCl胁迫的增加显着提高了两个物种的根和茎组织(茎+叶)中的Na +和Cl-,但是裸盐芥在盐胁迫开始后表现出快速的Na +积累,并且叶片中的Na +增加90%,Cl增加40% -比实验结束时的坎德尔·坎德尔(K. candel)好。净光合速率(Pn)随着盐度的增加而下降,最显着的下降发生在红树林幼苗暴露于严重盐分(400 mM NaCl)之后。但是,严重胁迫的抑制作用因物种而异:K。candel中的Pn降低了80%,而B. Gymnorhiza中的Pn降低了60%。对重度盐度的量子产率(AQY)和羧化效率(CE)响应显示出与Pn相似的趋势,其中金缕梅(B.gymnorhiza)的AQY和CE降低程度较小(33-35%)。坎德尔(43-52%)。对叶肉细胞的X射线显微分析显示,幼苗在100 mM NaCl处理7 d后,在K. candel中存在明显的液泡分隔,而在B. Gymnorhiza中存在Cl-分隔。此外,与K. candel相比,应激的B. Gymnorhiza中细胞壁,细胞质,液泡和叶绿体中的Na +保持低23-72%。总之,尽管盐胁迫的增加导致叶片中Na +和Cl-的快速和较高积累,但裸子叶杆菌仍显示出有效的盐从叶绿体中的排阻作用。我们建议这两种红树林物种中的盐诱导的Pn减少与从叶绿体中排除Na +和Cl-的能力有关,而不是与叶片总盐浓度有关。

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