小黑麦的产量取决于花期光合色素的含量

B. Mazurenko
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摘要

光合色素在干物质积累中起着重要的作用,可以作为胁迫的标志。叶绿素A和叶绿素B比值的变化表明生物体的生理变化和对环境条件变化的适应。播期和氮肥施用是长期因素,因此旗叶叶绿素含量反映了光合系统的长期适应性。花期叶绿素含量与花期干物质积累之间的关系表明了小黑麦品种对施肥和播期的响应。进行了三因素现场试验。研究了两个冬季和一个兼性小黑麦品种、两个秋播期和不同生育期施用不同氮肥量的施肥制度。各品种光合色素含量随播期和施肥制度的不同而变化,以每1 g干物质中叶绿素A、B和A+B的含量为单位。同时,叶绿素A的单位面积总叶绿素质量(g/m2)和A+B的数量在各因子之间及其相互作用的差异不显著,但对叶绿素B而言,肥料系统因子差异显著。这说明胁迫信号以叶绿素B为主,因此叶绿素A与叶绿素B的比值因胁迫因子的不同而有显著差异。最佳播期Cla: Clb比值为5.3 ~ 8.1 / cv。Pidzimok kharkivskiy, 4.8-8.3 in cv。阿穆尔河和5.0-6.7的cv。Obriy mironivskiy。在最优条件下,各品种花期叶绿素含量与花后干物质积累呈较强的正相关,但兼性小黑麦与叶绿素含量增加而不增加干物质积累呈负相关。进一步研究叶绿素含量与主要代谢物和次级代谢物合成的关系,对研究品种对胁迫和农艺因子的响应具有重要意义。
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Productivity of triticale depending on the content of photosynthesizing pigments at anthesis
Photosynthetic pigments play an important role in the accumulation of dry matter and they can be the markers of stress. Change in the ratio of chlorophyll A and B indicates physiological changes and adaptation of the organism to changes of environmental conditions. Sowing terms and application of nitrogen fertilizers are long-term factors, so the content of chlorophylls in the flag leaf indicates long-term adaptation of the photosynthetic system. Establishing a relationship between the chlorophyll content at anthesis and the accumulation of dry matter in posy-anthesis period indicates the varietal response of triticale to fertilization and sowing dates. It was conducted a three-factor field experiment. There are studied two winter and one facultative triticale cultivar, two autumn sowing terms and fertilization system with application the different rates of nitrogen fertilizers in different growth stages. It was found that the content of photosynthetic pigments in each variety varied depending on sowing term and fertilizer system in terms of mg per 1 g of dry matter for chlorophyll A, B and the amount of A+B. At the same time, the difference between the factors and their interactions was insignificant for the total chlorophyll mass per unit area (g/m2) for chlorophyll A and the amount of A+B, but it was significant for chlorophyll B by the fertilizer system factor. This indicates that the main stress signal is chlorophyll B, so the ratio of chlorophyll A and B differed significantly depending on this factor. Cla: Clb ratio in the optimal sowing period is 5.3–8.1 in cv. Pidzimok kharkivskiy, 4.8–8.3 in cv. Amur and 5.0–6.7 in cv. Obriy mironivskiy. All cultivars have a strong positive correlation between the chlorophyll content at anthesis and accumulation of dry matter at post-anthesis perion under optimal conditions, but facultative triticale Pidzimok kharkivskiy has a negative correlation with unfavorable, due to increased chlorophyll, without increasing dry matter accumulation. Further study of the relationship between chlorophyll content and the synthesis of primary and secondary metabolites is promising in the study of varietal response to stress and agronomic factors.
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