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首页> 外文期刊>Mechanisms of Development >Comparison of osmotic adjustment, leaf proline concentration, canopy temperature and root depth for yield of juncea canola under terminal drought
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Comparison of osmotic adjustment, leaf proline concentration, canopy temperature and root depth for yield of juncea canola under terminal drought

机译:末端干旱下juncea Catola产量的渗透调节,叶脯氨酸浓度,冠层温度和根深的比较

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Two glasshouse and two field experiments were conducted in 2013 and 2014 to compare the relative importance of four physiological traits: osmotic adjustment (OA), leaf proline concentration, canopy temperature depression (CTD) and root depth on drought performance of canola quality B.juncea (juncea canola). Glasshouse experiments were conducted at The University of Melbourne, Parkville, and field experiments were conducted at Horsham, Victoria. The experiments used juncea canola hybrids and their parental lines and were laid out in a randomised complete block design with three replications. The glasshouse experiments consisted of two treatments, well watered and water deficit from first open flower to maturity, whereas the field experiments were sown at a site that received 266mm annual rainfall in 2014. In the glasshouse, canopy temperature depression was the only trait to show a positive and consistent association with drought performance of juncea canola. Cooler canopy temperature was also associated with improved yield in field experiments. Root depth was positively correlated with CTD in 2014 in glasshouse, whereas no correlation of root depth with OA and leaf proline was observed. The results indicated that CTD was the only reliable trait among those tested to screen juncea canola for drought tolerance. Root depth of juncea canola hybrids was a constitutive trait and probably was a result of hybrid vigour.
机译:2013年和2014年进行了两个Glasshouse和两个现场实验,以比较四种生理性状的相对重要性:渗透调节(OA),叶脯氨酸浓度,冠层抑郁症(CTD)和根深在Disola品质B.Juncea的干旱性能上(Juncea CatoLa)。 Glasshouse实验是在墨尔本大学进行的,在维多利亚霍恩姆进行的田间实验。实验使用Juncea CatoLa杂交种及其父母线,并以三种复制的随机完整块设计中布局。 GlassHouse实验包括两个治疗,浇水良好的浇水和水资源不足到成熟度,而在2014年在每年降雨量266mm年降雨的场地上播种了田间实验。在玻璃杯中,冠层温度抑郁是唯一的特质与Juncea CatoLa的干旱表现进行正面和一致的关联。冷却器冠层温度也与现场实验中的提高产量相关。根深与2014年在玻璃馆中的CTD呈正相关,而未观察到具有OA和叶脯氨酸的根深度的相关性。结果表明,CTD是对筛查juncea油菜进行干旱耐受的唯一可靠的特征。 juncea油菜杂交种的根深是一个组成性状,可能是混合活力的结果。

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