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首页> 外文期刊>African Journal of Biotechnology >Evaluation of sugarcane (Saccharum officinarum L.) somaclonal variants tolerance to salinity in vitro and in vivo cultures
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Evaluation of sugarcane (Saccharum officinarum L.) somaclonal variants tolerance to salinity in vitro and in vivo cultures

机译:甘蔗(Saccharum officinarum L.)体细胞克隆变异体在体外和体内培养物中对盐度的耐受性评估

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Tissue culture technique was used to obtain salt tolerant variants from embryogenic calli of sugarcane (Saccharum sp.?Var.?CP48-103) that were cultured on a selective medium containing different levels of NaCl (0, 33, 66, 99 and 132 mM). A total of four plants which regenerated from the tolerant calli were selected but the best in vigor were grown in?in vitro?and hydroponic systems under salinity stress (with the previous levels) as compared to source variety. With increasing supply of NaCl in both systems, root growth was more adversely affected than shoot growth. Chlorophyll contents showed a decreasing trend and dry matter yield of plants reduced but in a slow rate in tolerant somaclone than source variety. The tissues analysis showed that at high salt concentration, Cl-?and Na+?content in shoot and root increased. With rising salt concentration from 0 to 132 mM, content of Cl-?in shoot and root of tolerant variant changed and was lower than the parent. In conclusion, this variant probably had lowest genetic ratio of shoot: root chloride due to minimum transport of Cl-?from the root to shoot. Also this variant had high content of Ca2+?in shoot and high K+/Na+?ratio at all salinity levels. Thus, it probably has genetic potential to avoid harmful ions accumulation.
机译:使用组织培养技术从甘蔗的胚性愈伤组织(Saccharum sp.Var.?CP48-103)获得耐盐变异体,将其在含有不同水平NaCl(0、33、66、99和132 mM的选择性培养基上培养) )。总共选择了四株从耐性愈伤组织再生的植物,但与来源品种相比,在盐分胁迫下(在先前水平下),在体外和水培系统中生长了最好的活力。随着两个系统中NaCl供应的增加,根生长比苗生长受到更大的不利影响。叶绿素含量呈下降趋势,植物干物质产量下降,但耐受性松果糖苷的生长速率低于来源品种。组织分析表明,在高盐浓度下,茎和根中Cl-和Na +的含量增加。随着盐浓度从0升高到132 mM,枝条和耐性变异体的根中Cl-?含量发生变化,并且低于亲本。总之,由于Cl-α从根到芽的最小迁移,该变体可能具有最低的芽遗传比:根氯化物。同样,在所有盐度水平下,该变异株的茎中Ca 2+-含量高,且K + / Na +比例高。因此,它可能具有避免有害离子积累的遗传潜力。

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