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Evaluation of dormancy breaking methods for enhanced germination in four biotypes of Brassica tournefortii

机译:打破休眠方法对四种生物型甘蓝型油菜增强发芽的评价

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摘要

Brassica tournefortii is an important broadleaf weed of the winter season in the northern grain region of Australia. Knowledge of germination ecology of this weed would help in implementing effective weed control programs. A series of experiments were conducted to study the germination and dormancy behavior of four biotypes of B. tournefortii seeds, biotypes A (collected from barley crop), B (barley fence lines), C (chickpea crop), and D (chickpea fence lines), collected from the St George region of Queensland. The aim of this research was to determine the effectiveness of various methods on the seed dormancy release of B. tournefortii. Water, potassium nitrate and a soil extract did not release dormancy in B. tournefortii seeds (biotype A) at 20/10 °C in the light/dark regime. Cold stratification (5 °C) also did not improve germination. However, gibberellic acid (GA3; 100–300 mg kg−1) stimulated germination (>88%). Germination also improved when seeds were immersed in sodium hypochlorite (NaOCl; 42 g L−1) for 10 minutes and the effect was more pronounced under the complete dark environment (89% germination at a dayight temperature of 20/10 °C). The NaOCl treatment makes seeds more porous and decreases sensitivity to light. Another experiment in light/dark conducted at 25/15 °C with two biotypes (A and D) showed that, without NaOCl treatment, biotype A was more sensitive to light (29% germination) as compared to biotype D (92% germination). Our results suggest that dormancy in B. tournefortii seeds can be broken by the combination of NaOCl (10 min) and a dark environment. A dayight temperature of 25/15 °C was found best for optimum germination (>87%) for all the biotypes (A-D) when incubated in dark after treating with NaOCl. This research indicated a high degree of variability in germination responses for various biotypes of B. tournefortii seeds to various sets of conditions, which may be due to metabolic changes in response to maternal environments or genetically controlled mechanisms. Information gained from this study will be important in developing a better understanding of the dormancy behavior of B. tournefortii seeds in response to tillage systems or maternal environments that could influence the weed seed bank in the soil and therefore help in designing suitable weed management programs.
机译:芸苔属芸苔属是澳大利亚北部粮食区冬季的一种重要阔叶杂草。该杂草的萌发生态学知识将有助于实施有效的杂草控制计划。进行了一系列实验,研究了四种生物型B. Tournefortii种子,A型(从大麦作物中采集),B型(大麦篱笆系),C型(鹰嘴豆作物)和D型(鹰嘴豆篱笆)的发芽和休眠行为。 ),收集自昆士兰州的圣乔治地区。这项研究的目的是确定各种方法对B.tournefortii种子休眠释放的有效性。在明/暗条件下,水,硝酸钾和土壤提取物在20/10°C时不会在B.tournefortii种子(生物型A)中释放休眠。冷分层(5℃)也不能改善发芽。然而,赤霉素(GA3; 100–300 mg kg -1 )刺激发芽(> 88%)。将种子浸入次氯酸钠(NaOCl; 42 g L −1 )10分钟后,发芽也得到改善,在完全黑暗的环境下(昼夜温度下发芽率为89%),效果更加明显。 (20/10°C)。 NaOCl处理使种子更加多孔,并降低了对光的敏感性。在25/15°C下对两种生物型(A和D)进行的明/暗实验表明,未经NaOCl处理,与生物型D(92%萌发)相比,生物型A对光更敏感(29%萌发)。 。我们的结果表明,NaOCl(10分钟)和黑暗环境的结合可能会破坏B.tournefortii种子的休眠。在NaOCl处理后于黑暗中孵育时,发现25/15°C的昼/夜温度最适合所有生物型(A-D)的最佳发芽(> 87%)。这项研究表明,各种生物类型的B.tournefortii种子对各种条件的萌发反应具有高度的变异性,这可能是由于对母体环境或遗传控制机制的代谢变化所致。从这项研究中获得的信息对于更好地了解风铃芽孢杆菌种子对可能影响土壤杂草种子库的耕作系统或母体环境的响应行为具有重要意义,因此有助于设计合适的杂草管理计划。

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