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Identification of Quantitative Trait Loci and a candidate locus for freezing tolerance in controlled and outdoor environments in the overwintering crucifer Boechera stricta

机译:在冬季十字花科严格控制的条件和室外环境中确定数量性状位点和耐寒性候选位点

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摘要

Development of chilling and freezing tolerance is complex and can be affected by photoperiod, temperature and photosynthetic performance; however, there has been limited research on the interaction of these three factors. We evaluated 108 recombinant inbred lines of Boechera stricta, derived from a cross between lines originating from Idaho and Colorado, under controlled Long-Day (LD), Short-Day (SD) and in an Outdoor Environment (OE). We measured maximum quantum yield of photosystem II, lethal temperature for 50% survival and electrolyte leakage of leaves. Our results revealed significant variation for chilling and freezing tolerance and photosynthetic performance in different environments. Using both single and multi-trait analyses, three main-effect Quantitative Trait Loci (QTL) were identified. QTL on LG3 were SD-specific, whereas QTL on LG4 were found under both LD and SD. Under all conditions, QTL on LG7 were identified, but were particularly predictive for the Outdoor Experiment. The co-localization of photosynthetic performance and freezing tolerance effects supports these traits being co-regulated. Finally, the major QTL on LG7 is syntenic to the Arabidopsis CBF locus, known regulators of chilling and freezing responses in A. thaliana and other species.
机译:耐寒性和耐冰冻性的发展是复杂的,并且会受到光周期,温度和光合性能的影响;但是,关于这三个因素的相互作用的研究很少。我们在受控的长日(LD),短日(SD)和室外环境(OE)下,评估了源自爱达荷州和科罗拉多州的品系之间的杂交获得的108株Boechera stricta重组自交系。我们测量了光系统II的最大量子产率,50%存活率的致死温度和叶片的电解质泄漏。我们的结果表明,在不同环境下的耐寒性和耐寒性以及光合作用性能存在显着差异。使用单性状和多性状分析,确定了三个主要影响定量性状位点(QTL)。 LG3上的QTL是SD特有的,而LG4上的QTL在LD和SD下均存在。在所有条件下,均可确定LG7的QTL,但对于户外实验尤其具有预测性。光合性能和抗冻性效应的共同定位支持这些性状被共同调节。最后,LG7上的主要QTL与拟南芥CBF基因座同义,拟南芥CBF基因座是拟南芥和其他物种中冷和冰冻反应的已知调节剂。

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