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首页> 外文期刊>Journal of environmental biology >Impact of osmotic stress on seed germination and seedling growth in black gram (Phaseolus mungo)
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Impact of osmotic stress on seed germination and seedling growth in black gram (Phaseolus mungo)

机译:渗透胁迫对黑豆种子萌发和幼苗生长的影响

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摘要

An experiment was conducted to see the impact of osmotic stress as it is one of the main cause in various soil and water disorders in agricultural field crops, specially the seed germination and seedling growth. The osmotic stress was generated using PEG-6000 and the seed germination, seedling growth were evaluated including the status of pigments i. e. chlorophyll (a, b and total), total carotenoids, pheophytin (a, b and total) and different enzymes like amylase, peroxidase, catalase and superoxide dismutase. The various osmotic potentials generated (-2,-5 and-10 bars) showed significant decrease in germination percentage as at the osmotic potential of-10 bars it was observed 70 in comparison to 90% of control. All the seedling growth parameter also showed inhibition with increase in osmotic potential. Increase in osmotic stress decreased Chlorophyll 'a', while Chlorophyll 'b' was increased in -5 bars while total chlorophyll showed decrease in -5 bars osmotic potential. Total carotenoids and pheophytin (a, b and total) were highly increased in -5 bars and decreased in-10 bars osmotic concentration. Enzymatic activity was found to be decreased in amylase while peroixidase, catalase and SOD were increased at different osmotic gradients in comparison to control. The data observed in the experiment can be helpful to assess the impact of any kind of osmotic stress on plant growth and development in crops.
机译:进行了一项实验,以了解渗透压的影响,因为渗透压是导致农作物尤其是种子发芽和幼苗生长的各种土壤和水分失调的主要原因之一。使用PEG-6000产生渗透胁迫,并萌发种子,评估幼苗生长,包括色素i的状态。 e。叶绿素(a,b和总量),类胡萝卜素总量,脱镁叶绿素(a,b和总量)以及不同的酶,例如淀粉酶,过氧化物酶,过氧化氢酶和超氧化物歧化酶。所产生的各种渗透势(-2,-5和-10 bar)显示发芽率显着降低,因为在10 bar的渗透势下,与对照组的90%相比,观察到70。所有幼苗的生长参数也显示出随着渗透势的增加而被抑制。渗透胁迫的增加降低了叶绿素'a'的含量,而叶绿素'b'在-5 bar的含量上增加了,而总叶绿素的渗透压却在-5 bar上降低了。总类胡萝卜素和脱镁叶绿素(a,b和总量)在-5 bar中高度增加,而在10 bar中渗透浓度降低。与对照相比,发现淀粉酶的酶活性降低,而过氧化物酶,过氧化氢酶和SOD在不同的渗透梯度下增加。实验中观察到的数据可有助于评估任何类型的渗透胁迫对作物生长和发育的影响。

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