首页> 美国卫生研究院文献>Annals of Botany >Contrasting Effects of Submergence in Light and Dark on Pyruvate Decarboxylase Activity in Roots of Rice Lines Differing in Submergence Tolerance
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Contrasting Effects of Submergence in Light and Dark on Pyruvate Decarboxylase Activity in Roots of Rice Lines Differing in Submergence Tolerance

机译:淹没耐受性不同的水稻系根系光和暗浸对丙酮酸脱羧酶活性的对比影响

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摘要

Submergence tolerance of 13 doubled haploid lines of rice and their parents (submergence tolerant FR13A and submergence intolerant CT6241) was assessed using 2‐week‐old seedlings. Plants were scored for leaf senescence and percentage of seedlings that survived up to 15 d submergence, followed by a 12 d recovery period. Seven lines proved to be submergence tolerant, and six relatively intolerant. In all lines, activity of pyruvate decarboxylase (PDC), extracted from the apical 3–5 cm of root axes, decreased by 46–96 % and 38–76 %, respectively, during 5 or 10 d submergence under natural dayight conditions, compared with pre‐submergence values (100 %). However, when the enzyme was extracted at night, submergence increased PDC activity of all rice lines (approx. 112 % on average), compared with pre‐submergence values (100 %). The stimulating effect of the dark period on PDC activity was reproduced and amplified by submerging rice seedlings for up to 5 d in continuous darkness in water containing sub‐ambient concentrations of oxygen (2·3 mg l–1). Such increased PDC activity was also observed in seedlings exposed to anoxia for 6 h (approx. 6–175 % higher than pre‐submergence values). Irrespective of tolerance class, submergence decreased soluble protein concentrations under all conditions and sampling times. No positive correlation was found between PDC activity and tolerance of the various rice lines to submergence. However, PDC activity was slightly higher in submergence intolerant lines, compared with tolerant lines, under both dark submergence and anoxia. Such differences in PDC activity between the two groups of rice lines were not observed when they were submerged under the natural diurnal cycle. Increased PDC activity in roots at night demonstrated a probable incidence of tissue hypoxia or anoxia during submergence during each dark period.
机译:使用两周大的幼苗评估了水稻及其亲本的13个双倍单倍体系的耐淹性(耐淹性FR13A和耐淹性CT6241)。对植物的叶片衰老和存活至15天淹没的幼苗百分比进行评分,然后恢复12天。七个品系被证明是耐浸水的,而六个品系则被相对不耐。在所有昼夜条件下,在淹没5或10天后,从根部根尖3-5厘米的根中提取的丙酮酸脱羧酶(PDC)的活性分别降低了46-96%和38-76%与淹没前的值(100%)进行比较。但是,当在夜间提取酶时,与淹没前的值(100%)相比,淹没增加了所有水稻品系的PDC活性(平均约112%)。在含氧量低于环境浓度(2·3 mg l –1 )的水中连续连续黑暗5分钟,将水稻幼苗浸没达5 d,从而再现并放大了黑暗期对PDC活性的刺激作用。 )。在缺氧持续6小时的幼苗中也观察到了这种PDC活性的增加(比淹没前的值高大约6–175%)。无论耐受性等级如何,在所有条件和采样时间下,浸没都会降低可溶性蛋白浓度。在PDC活性与各种水稻株系对淹没的耐受性之间未发现正相关。然而,在黑暗的浸水和缺氧条件下,与耐水的品系相比,PDC活性在耐水的品系中略高。当两组稻系在自然昼夜循环中淹没时,未观察到PDC活性的这种差异。夜间根部PDC活性增加表明在每个黑暗时期的浸水过程中,组织缺氧或缺氧的发生率可能较高。

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