Germination and Some Morphophysiological Traits of Convolvulus arvensis in Response to Salinity Stress

Azam Jamshidizadeh, Masoumeh Farzaneh, A. R. Ghahfarokhi, F. Nasernakhaei
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Abstract

Introduction: because the most and Binweed Convolvulus arvensis L.) is the ten widespread noxious in the that it is reproduced by seed, horizontal lateral root, and rhizome. Because of the extensive underground root system of the bindweed with abundant buds and established root reserves, binweed competes more tolerant than crops under salinity and drought stress. More information on morphophysiological traits of binweed under salinity conditions and comparison of salinity tolerance index between germination and seedling can also be contributed to the most effective management. In order to investigate the germination and seedling growth characteristics of binweed two experiments were conducted separately under salinity stress. Materials and Methods : Germination experiment was done in a completely randomized design with 9 levels of salinity stresses (control), 5, 20, 25, 30, 35, and dS.m -1 four the The seedling experiment was performed in a random complete block design consisted of five levels of salinity (tap water, 10, 20, 30, and 40 dS.m -1 ) with three replications as the pot in a non-shade greenhouse of Agricultural College of Shahid Chamran University of Ahvaz. Results: The results showed that with raising salinity, percentage germination and vigure index of seed declined, but Radicle/ Plumule ratio rose. After two weeks, in response to salinity a decrease in root and shoot characteristics of the seedling was observed. Salinity stress data were fitted to a three-parameter logistic for seedling stage showed that the salinity levels higher than 7.86 dS.m -1 led to 50 percent reduction in tolerance index. It was found that 19.84 dS.m -1 caused 50% decrease in the tolerance index at germination stage. Sufficient tolerance index growth stage variation in response to salinity was found which suggests that bindweed tolerance to salinity at germination stage is about 3 times more than that of seedling stage. Conclusions: Radicle/ plumule ratio at germination stage and root lateral branches at seedling stage increased in concentrations of up to 25 and 20 dS.m -1 , respectively. It seems the maintenance of root area and branches in response to increased salinity provide an acceptable mechanism of salinity tolerance for binweed. According to the three-parameter logistic model, the salinity tolerance of bindweed at germination and seedling stages was estimated at 20 and 8 dS.m -1 , respectively.
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盐胁迫下旋花萌发及一些形态生理特性的研究
导语:由于联花(Convolvulus arvensis L.)以种子、横侧根和根茎繁殖,是分布最广的有害植物。由于联缕草地下根系广泛,芽量丰富,根系储备已建立,在盐胁迫和干旱胁迫下,联缕草比其他作物更具耐受性。更多地了解双叶草在盐度条件下的形态生理特征,以及萌发和幼苗耐盐指数的比较,也有助于最有效的管理。为了研究盐胁迫下联缕草的萌发和幼苗生长特性,分别进行了两个试验。材料和方法:采用完全随机设计,在5、20、25、30、35和dS 9个盐度胁迫水平(对照)下进行萌发试验。幼苗试验采用完全随机区组设计,采用5种盐度水平(自来水、10、20、30和40 d)。m -1),并在阿瓦士沙希德·查姆兰大学农学院的无荫温室中复制了三个盆栽。结果:随着盐度的升高,种子发芽率和发芽指数下降,胚根/子蕊比上升。2周后,幼苗的根、梢特征随盐度的变化而下降。苗期盐度胁迫数据拟合为三参数logistic回归,盐度水平高于7.86 dS。M -1导致公差指数降低50%。结果表明:19.84 d。M -1使萌发期耐药指数降低50%。耐盐指数在生育期有充分的变化,萌发期对盐的耐受性是苗期的3倍左右。结论:在25和20 dS浓度下,发芽期胚根/子芽比和幼苗期根侧枝比均显著增加。分别是M -1。在盐度增加的情况下,根面积和枝条的维持似乎是联花耐盐的一种可接受的机制。根据三参数logistic模型,估计花栗草在萌发期和幼苗期的耐盐性分别为20和8 d。分别是M -1。
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