首页> 外文OA文献 >Cold Acclimation in Genetically Related (Sibling) Deciduous and Evergreen Peach (Prunus persica [L.] Batsch): I. Seasonal Changes in Cold Hardiness and Polypeptides of Bark and Xylem Tissues
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Cold Acclimation in Genetically Related (Sibling) Deciduous and Evergreen Peach (Prunus persica [L.] Batsch): I. Seasonal Changes in Cold Hardiness and Polypeptides of Bark and Xylem Tissues

机译:基因相关(同级)落叶和常绿桃(李子[L.] Batsch)的冷驯化:I.树皮和木质部组织的抗寒性和多肽的季节性变化

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摘要

Seasonal patterns of proteins and of cold hardiness were characterized in bark and xylem tissues of genetically related (sibling) deciduous and evergreen peach (Prunus persica [L.] Batsch). In contrast with deciduous trees, which entered endodormancy and abscised leaves in the fall, evergreen trees retained their leaves and exhibited shoot elongation under favorable environmental conditions. A successive increase in the cold hardiness of bark and xylem was observed during the fall in both genotypes. This was followed by a subsequent decrease from midwinter to spring. Xylem tissue in both genotypes exhibited deep supercooling and a significant correlation (r = 0.99) between the midpoint of the low-temperature exotherm and the subzero temperature at which 50% injury occurred (assessed by electrolyte leakage) was noted. The maximum hardiness level attained in deciduous trees was more than twofold that of evergreens. Seasonal pattern of proteins from bark and xylem of the sibling genotypes was characterized by one-dimensional sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Among other qualitative and quantitative changes, accumulation of a 19-kilodalton polypeptide in the bark of both genotypes was observed during fall followed by a decrease in spring. This polypeptide accumulated to higher levels in the deciduous peach compared with the evergreen. Additionally, a 16-kilodalton protein exhibited the same pattern in deciduous trees but not in the evergreen trees. Both the 19- and a 16-kilodalton bark proteins conform to the criteria of a bark storage protein. The relationship of seasonal changes in protein to cold hardiness and dormancy in these genetically related peach genotypes is discussed.
机译:在与遗传相关的(同级)落叶和常绿桃(Prunus persica [L.] Batsch)的树皮和木质部组织中表征了蛋白质的季节性模式和耐寒性。与落叶乔木相比,落叶乔木在秋天进入了香气,叶子脱落,而常绿乔木则保留了它们的叶子,并在有利的环境条件下表现出枝条伸长。在两种基因型下降期间,观察到树皮和木质部的耐寒性连续增加。随后是从仲冬到春季的下降。两种基因型的木质部组织均表现出过冷度,并且注意到低温放热的中点与发生50%损伤(通过电解质泄漏评估)的低于零温度之间存在显着相关性(r = 0.99)。落叶乔木的最大硬度水平是常绿乔木的两倍以上。通过一维十二烷基硫酸钠-聚丙烯酰胺凝胶电泳表征同胞基因型树皮和木质部蛋白质的季节性变化。在其他定性和定量变化中,在秋季期间观察到两种基因型树皮中19-千达尔顿多肽的积累,随后在春季降低。与常绿植物相比,该多肽在落叶桃中积累的水平更高。另外,一种16公斤的蛋白质在落叶乔木中显示出相同的模式,而在常绿乔木中则没有。 19和16千达尔顿的树皮蛋白均符合树皮贮藏蛋白的标准。讨论了这些遗传相关的桃基因型中蛋白质季节性变化与抗寒性和休眠的关系。

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