首页> 外文期刊>Pakistan journal of botany >Modulation in growth, photosynthetic pigments, gas exchange attributes and inorganic ions in sunflower ( Helianthus annuus l.) by strigolactones (GR24) achene priming under saline conditions
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Modulation in growth, photosynthetic pigments, gas exchange attributes and inorganic ions in sunflower ( Helianthus annuus l.) by strigolactones (GR24) achene priming under saline conditions

机译:在盐水条件下,Srigolactones(Gr24)瘦丙酮灌注葵花籽(Helianthus Annuus L.)中生长,光合颜料,气体交换属性和无机离子的调节

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Plants respond to various abiotic stresses in a complex way, depending upon their severity through cellular, morphological and physiological modifications. Phytohormones are signaling molecules which mediate plant growth and development. They modulate plant physiological responses to acclimatize stress like salinity. Phytohormones interact with each other to alleviate abiotic stress. Striglactones are relatively newly discovered phytohormones and are proposed to have their role in stress responses like those of salinity. A synthetic analogue of strigolactones GR24 was used to explore its role to ameliorate adverse effects of salt stress on sunflower plants. Achenes of two sunflower hybrids (FH-593 and FH-596) were primed with four concentrations of GR24 (water (0), 0.001, 0.01 and 0.1 mg L -1 ) and grown under two salt regimes i.e. non-saline and 120 mM NaCl in pots. Salt stress significantly decreased growth attributes while GR24 showed a positive effect to alleviate salt stress. Pre-sowing achene treatment with GR24 significantly enhanced plant biomass and shoot length. Salinity markedly decreased photosynthetic pigments and net CO 2 assimilation, stomatal conductance and transpiration. Chlorophyll contents and gas exchange attributes of both sunflower hybrids showed a non-significant response to GR24 treatment. However, carotenoids contents increased with GR24 pre-sowing achene treatment. Salinity significantly raised the contents of Na + contents but decreased that of Ca 2+ and K + ions in both shoot and root. The GR24 application enhanced the Na + , K + and Ca 2+ in shoots and roots.
机译:植物以复杂的方式对各种非生物胁迫作出反应,这取决于它们通过细胞,形态和生理修饰的严重程度。植物激素是信号传导分子,其介导植物生长和发育。它们调节植物生理反应,以适应盐度等胁迫。植物激素互相相互作用以缓解非生物胁迫。血红蛋白相对新发现植物激素,并提出其在盐度等应力反应中的作用。 STRIGOLACTONE GR24的合成类似物用于探讨其对改善盐胁迫对向日葵植物的不利影响的作用。两个向日葵杂种(FH-593和FH-596)的酸度用四种浓度的GR24(水(0),0.001,0.01和0.1mg L -1)施加,并在两种盐制度下生长,即非盐水和120mm在盆中的nacl。盐胁迫显着降低生长属性,而GR24表现出缓解盐胁迫的阳性效果。用GR24预播种瘦果处理显着增强了植物生物质和枝条长度。盐度明显降低光合色素和净二氧化碳同化,气孔导率和蒸腾。向日葵杂种的叶绿素含量和气体交换属性显示出对GR24治疗的不显着反应。然而,胡萝卜素含量随Gr24预播种瘦果处理而增加。盐度显着提高了Na +含量的含量,但在射击和根部中的Ca 2+和K +离子的含量下降。 GR24施用在芽和根中增强了Na +,K +和Ca+。

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