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首页> 外文期刊>Plant Growth Regulation: An International Journal on Natural and Synthetic Regulators >Different pathways are involved in the enhancement of photosynthetic rate by sodium bisulfite and benzyladenine, a case study with strawberry (Fragaria x ananassa Duch) plants.
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Different pathways are involved in the enhancement of photosynthetic rate by sodium bisulfite and benzyladenine, a case study with strawberry (Fragaria x ananassa Duch) plants.

机译:亚硫酸氢钠和苄基腺嘌呤提高光合速率的途径不同,这是草莓(Fragaria x ananassa Duch)植物的案例研究。

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In order to understand the pathway involved in the chemical enhancement of photosynthetic rate, sodium bisulfite (NaHSO3) and benzyladenine (BA), a growth regulator, were applied to strawberry plants. The influence of these compounds on gas exchange and millisecond delayed light emission (ms-DLE) was investigated using 2-month-old plants. Results showed the net photosynthetic rate (A) in leaves was promoted by both NaHSO3 and BA. Stomatal conductance (g) and transpiration rate (E) were significantly increased only by BA, while intercellular CO2 concentration (Ci) was significantly decreased by NaHSO3. The enhancement of A by NaHSO3 and BA was only a short-term effect, lasting approximately 5 days for NaHSO3 and 30 h for BA. Plants treated with NaHSO3, BA or NaHSO3+BA, showed no significant fluctuations in carboxylation efficiency (CE), photorespiration (RP) or dark respiration (RD). These results suggest that the influences of NaHSO3 and BA on gas exchange particularly A, could be via different mechanisms: the enhancement of A by the application of low concentrations of NaHSO3 appears to be associated with increased cyclic electron flow, while BA enhancement of A is at least partially due to increased g and/or E..
机译:为了了解光合作用速率化学增强的途径,将亚硫酸氢钠(NaHSO3)和生长调节剂苄基腺嘌呤(BA)应用于草莓植株。使用2个月大的植物研究了这些化合物对气体交换和毫秒延迟发光(ms-DLE)的影响。结果表明,NaHSO3和BA均可促进叶片的净光合速率(A)。仅BA显着提高了气孔导度(g)和蒸腾速率(E),而NaHSO3显着降低了细胞间CO2浓度(Ci)。 NaHSO3和BA增强A只是一种短期效应,NaHSO3持续约5天,BA持续30小时。用NaHSO3,BA或NaHSO3 + BA处理的植物在羧化效率(CE),光呼吸(RP)或暗呼吸(RD)上均无明显波动。这些结果表明,NaHSO3和BA对气体交换,尤其是A的影响可能是通过不同的机制:通过应用低浓度的NaHSO3增强A似乎与循环电子流增加有关,而BA对A的增强是至少部分归因于g和/或E.的增加。

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