首页> 外文期刊>Journal of soil science and plant nutrition >Exogenous indole-3-acetic acid could reduce the accumulation of aluminum in root apex of wheat (Triticum aestivum L.) under Al stress
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Exogenous indole-3-acetic acid could reduce the accumulation of aluminum in root apex of wheat (Triticum aestivum L.) under Al stress

机译:外源吲哚-3-乙酸可减少铝胁迫下小麦根尖中铝的积累

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Indole-3-acetic acid (IAA) is hormones in higher plants and participates in plant growth regulation and stress resistance including Al stress. The reduction of root apex aluminum (Al) content by exogenous IAA treatment was hypothesized to be effective in alleviating the adverse effect of high Al concentration in wheat root growth. To investigate the role of IAA in lowering root apex Al content, Al-tolerant wheat (ET8) was studied in Al solution (50 μM), co-treated with IAA (25 μM) and anion channel inhibitors (5 μM NIF or A9C) or IAA transport inhibitors (5 μM TIBA or NPA) under acidic condition for 24 h. Treatments were as fellows: control (0.5 μM CaCl2), Al (50 μM), Al (50 μM) + IAA (25 μM), Al (50 μM) + IAA (25 μM) + NIF (or A9C, 5 mM), Al (50 μM) + NPA (or TIBA, 5 μM). Al content in root apex, rhizosphere pH and PM H+-ATPase activity were studied. The results showed that co-treatment with IAA reduced root apex Al content by 42% compared to Al treatment. Anion channel inhibitors enhanced the accumulation of Al in root apex by 27% (or 32%) (NIF or A9C), while addition of IAA neutralized its promoting effect. The co-treatment with IAA increased rhizosphere pH by alleviating the decrease of plasma membrane H+-ATPase activity, while IAA transport inhibitors (NPA or TIBA) suppressed the elevation of rhizosphere pH. The current results suggested that IAA could be effective in alleviating Al toxicity through reducing Al accumulation in wheat root apex.
机译:吲哚-3-乙酸(IAA)是高等植物中的激素,并参与植物的生长调节和抗逆性,包括铝胁迫。据推测,通过外源IAA处理降低根尖铝(Al)含量可有效缓解高Al浓度对小麦根系生长的不利影响。为了研究IAA在降低根尖Al含量中的作用,研究了在Al溶液(50μM)中与IAA(25μM)和阴离子通道抑制剂(5μMNIF或A9C)共同处理的耐铝小麦(ET8)或IAA转运抑制剂(5μMTIBA或NPA)在酸性条件下放置24小时。进行治疗:对照组(0.5μMCaCl2),铝(50μM),铝(50μM)+ IAA(25μM),铝(50μM)+ IAA(25μM)+ NIF(或A9C,5 mM) ,Al(50μM)+ NPA(或TIBA,5μM)。研究了根尖中的铝含量,根际pH和PM H + -ATPase活性。结果表明,与Al处理相比,IAA联合处理将根尖Al含量降低了42%。阴离子通道抑制剂使Al在根尖的积累增加了27%(或32%)(NIF或A9C),而添加IAA则中和了其促进作用。与IAA共同处理通过减轻质膜H + -ATPase活性降低而增加了根际pH,而IAA转运抑制剂(NPA或TIBA)抑制了根际pH的升高。目前的结果表明,IAA可以通过减少小麦在根尖中的铝积累来减轻铝的毒性。

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