首页> 外文期刊>Seed Science and Technology >Nonylphenol, an industrial endocrine disrupter chemical, affects root hair growth, shoot length and root length of germinating cos lettuce (Lactuca sativa)
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Nonylphenol, an industrial endocrine disrupter chemical, affects root hair growth, shoot length and root length of germinating cos lettuce (Lactuca sativa)

机译:壬基酚,一种工业内分泌干扰化学物质,会影响根毛的生长,发芽长度和发芽莴苣(莴苣)的根长。

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摘要

Nonylphenol (NP), an industrial plasticiser and surfactant, has caused behavioural and physiological abnormalities in mammals, however few studies have explored its action on plants. Recent studies indicate that NP may reduce crop yield and adversely impact food quality. The aim of this study was to use lettuce as a model plant to evaluate effects of NP on seed germination and seedling growth as well as to determine the locus of activity. A total of 2100 seedlings were examined for their response to NP exposure in a laboratory experiment. A germination efficiency index (GEI) was developed as a complimentary assessment tool to germination percentage, seedling length and mass. Nonylphenol targeted the root maturation zone and impaired seedling growth when applied at 800 mu g L-1 and higher. While shoot lengths were shorter, root lengths were longer compared with control seedlings. The GEI was a valuable tool that should be examined further in similar crop studies. This investigation highlights the importance of understanding the effects of endocrine disrupters on germinating plants. Since NP is still broadly used in developing countries due to increased industrialisation and agricultural intensification, adverse effects on crops may impact negatively on the already compromised food security dilemma of these countries.
机译:壬基酚(NP)是一种工业增塑剂和表面活性剂,已引起哺乳动物的行为和生理异常,但是很少有研究探讨其对植物的作用。最近的研究表明,NP可能会降低作物产量,并对食品质量产生不利影响。这项研究的目的是使用莴苣作为模型植物,以评估NP对种子发芽和幼苗生长的影响,并确定其活动场所。在实验室实验中,共检查了2100株幼苗对NP暴露的反应。发芽效率指数(GEI)被开发为发芽率,幼苗长度和质量的补充评估工具。当以800μg L-1和更高的浓度施用时,壬基酚靶向根部成熟区并损害幼苗生长。与对照幼苗相比,虽然芽的长度较短,但根的长度较长。 GEI是一种有价值的工具,应在类似作物研究中进一步检查。这项研究突出了了解内分泌干扰物对发芽植物的影响的重要性。由于工业化和农业集约化的发展,NP在发展中国家仍被广泛使用,因此对农作物的不利影响可能对这些国家已经妥协的粮食安全困境产生负面影响。

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