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首页> 外文期刊>Journal of Agronomy and Crop Science/Zeitschrift fur acker-und pflanzenbau >Photosynthetic Acclimation to Cold as a Potential Physiological Marker of Winter Barley Freezing Tolerance Assessed under Variable Winter Environment
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Photosynthetic Acclimation to Cold as a Potential Physiological Marker of Winter Barley Freezing Tolerance Assessed under Variable Winter Environment

机译:光合作用对寒冷的影响是冬季大麦在可变冬季环境下耐寒性的潜在生理指标

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摘要

Winter-hardiness is a complex trait limiting cultivation of winter barley (Hordeum vulgare ssp. vulgare) with respect to the regions of temperate climate. In the present studies, we verified whether inexpensive and fast physiological markers characterizing photosynthetic acclimation to cold may provide robust characteristics of winter barley genotypes for improved frost resistance. Freezing tolerance of 28 winter barley varieties and advanced breeding lines were tested for three winters in field-laboratory experiment and under fully controlled conditions. To increase the environmental variability of freezing tolerance, a part of the plants were also de-acclimated under semi-controlled conditions and re-acclimated in laboratory before freezing tests. After controlled cold acclimation, apparent quantum yield of photosystem II (Fv/Fm) as well as photochemical (qP) and non-photochemical (NPQ) coefficients of chlorophyll fluorescence quenching were studied. Field-laboratory method assessment of freezing tolerance gives distinct and even opposite results in subsequent years. Also de-acclimation interacted with growth conditions in the field, giving different rankings of genotypes each year. The results obtained suggest that high level of freezing tolerance measured in laboratory, which is connected with photosynthetic acclimation to cold may be not sufficient for the expression of field resistance, especially when winter conditions are not favourable for cold acclimation.
机译:耐寒性是一个复杂的性状,它限制了相对于温带气候地区的冬季大麦(大麦)的栽培。在本研究中,我们验证了表征冷光合作用的廉价而快速的生理标记物是否可以为增强抗冻性提供冬小麦基因型的强大特性。在田间实验室试验和完全控制的条件下,对28个冬季大麦品种和高级育种品系的三个冬季进行了耐寒性测试。为了增加耐寒性的环境变异性,还对部分植物在半控制条件下进行了除草,并在实验室进行冰冻测试之前对其进行了再驯化。在控制冷驯化之后,研究了光系统II的表观量子产率(Fv / Fm)以及叶绿素荧光猝灭的光化学(qP)和非光化学(NPQ)系数。在接下来的几年中,现场实验室方法对冷冻耐受性的评估得出了截然不同甚至相反的结果。此外,去适应与田间生长条件相互作用,每年给出不同的基因型排名。获得的结果表明,在实验室中测得的高水平的耐冻性与光合适应寒冷有关,可能不足以表现出田间抗性,特别是在冬季条件不利于寒冷适应的情况下。

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