首页> 外文期刊>Bulletin of Environmental Contamination and Toxicology >Phytotoxicity of Arsenate and Salinity on Early Seedling Growth of Rice (Oryza sativa L.): A Threat to Sustainable Rice Cultivation in South and South-East Asia
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Phytotoxicity of Arsenate and Salinity on Early Seedling Growth of Rice (Oryza sativa L.): A Threat to Sustainable Rice Cultivation in South and South-East Asia

机译:砷和盐分对水稻(Oryza sativa L.)幼苗早期生长的植物毒性:对南亚和东南亚稻米可持续种植的威胁

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Arsenic (As) contamination is an important environmental consequence in some parts of salinity-affected South (S) and South-East (SE) Asia. In this study, we investigated the individual and combined phytotoxicity of arsenic (As) [arsenate; As(V)] and salinity (NaCl) on early seedling growth (ESG) of saline-tolerant and non-tolerant rice varieties. Germination percentage (GP), germination speed (GS) and vigor index (VI) of both saline-tolerant and non-tolerant rice varieties decreased significantly (p > 0.01) with increasing As(V) and NaCl concentrations. The highest GP (91%) was observed for saline non-tolerant BRRI dhan28 and BRRI dhan49, while the lowest (62%) was for saline-tolerant BRRI dhan47. The ESG parameters, such as weights and relative lengths of plumule and radicle, also decreased significantly (p < 0.01) with increasing As(V) and NaCl concentrations. Relative radicle length was more affected than plumule length by As(V) and NaCl. Although VI of saline-tolerant and non-tolerant rice seedlings showed significant variation (p < 0.05), weights and lengths of plumule and radicle of different rice varieties did not show significant variation for As(V) and NaCl treatments. Results reveal that the combined phytotoxicity of As(V) and NaCl on rice seed germination and ESG are greater than their individual toxicities, and some saline-tolerant rice varieties are more resistant to the combined phytotoxicity of As(V) and NaCl than the saline non-tolerant varieties.
机译:在受盐碱化影响的亚洲南部和东南亚的某些地区,砷污染是重要的环境后果。在这项研究中,我们调查了砷(砷)的单独和综合的植物毒性。 As(V)]和盐度(NaCl)对耐盐和不耐盐水稻品种早期幼苗生长(ESG)的影响。耐盐性和非耐性水稻品种的发芽率(GP),发芽速度(GS)和活力指数(VI)随As(V)和NaCl浓度的增加而显着降低(p> 0.01)。耐盐耐性BRRI dhan28和BRRI dhan49的GP最高(91%),而耐盐性BRRI dhan47的GP最低(62%)。随着As(V)和NaCl浓度的增加,ESG参数(例如,重量和胚泡和胚根的相对长度)也显着降低(p <0.01)。相对胚根长度比胚芽长度受As(V)和NaCl影响更大。尽管耐盐和不耐盐的水稻幼苗的VI表现出显着差异(p <0.05),但是不同水稻品种的籽粒和胚根的重量和长度以及胚芽的胚根长度对于As(V)和NaCl处理均没有显着差异。结果表明,As(V)和NaCl对水稻种子发芽和ESG的综合植物毒性大于其单独的毒性,并且一些耐盐水稻品种对As(V)和NaCl的综合植物毒性的抗性高于生理盐水。非耐性品种。

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