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Cold acclimation of winter and spring peas: carbon partitioning as affected by light intensity

机译:冬豌豆和春豌豆的冷驯化:受光强度影响的碳分配

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Like most plants, pea (Pisum sativum L.) becomes tolerant to frost if it is first exposed to low non-freezing temperatures, a process known as cold acclimation. Cold acclimation is a complex process involving many physiological and metabolic changes. Two spring dry peas, two winter dry peas and one winter forage line were exposed to cold temperature in a controlled environment in two experiments, one using low light intensity and the other regular light intensity. Plants were harvested throughout the experiment and dry matter accumulation, water content, soluble and insoluble sugar concentrations were determined from shoot and root samples. Cold acclimation did not occur when temperatures were low if light intensity was low, even in winter peas. In contrast, with regular light intensity, the winter peas acquired more freezing tolerance than spring peas and a close relationship was found between the soluble sugar concentration of leaves just before the frost and the degree of freezing tolerance obtained by the different genotypes. Relationships between freezing tolerance and carbon partitioning between shoot and roots are discussed.
机译:像大多数植物一样,豌豆(Pisum sativum L.)如果首先暴露于较低的非冻结温度下,就会变得耐霜冻,这一过程称为冷驯化。冷驯化是一个复杂的过程,涉及许多生理和代谢变化。在两个实验中,两个春季干豌豆,两个冬季干豌豆和一个冬季饲草品系在受控环境中暴露于低温下,一个使用低光照强度,另一个使用常规光照强度。在整个实验过程中收获植物,并从枝条和根部样品中测定干物质积累,水分含量,可溶性和不溶性糖浓度。即使光照强度低,即使温度低,即使在冬季豌豆中,也不会发生冷驯化。相反,在常规光照下,豌豆比豌豆具有更高的抗冻性,并且在霜冻前叶子的可溶性糖浓度与不同基因型获得的抗冻性之间存在密切的关系。讨论了耐寒性和芽与根之间碳分配之间的关系。

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