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Nitrogen Reserves Spring Regrowth and Winter Survival of Field-grown Alfalfa (Medicago sativa) Defoliated in the Autumn

机译:秋季落叶的苜蓿(苜蓿)的氮储量春季再生和冬季存活

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摘要

• Aims The objective of the study was to characterize variations in proline, arginine, histidine, vegetative storage proteins, and cold-inducible gene expression in overwintering roots of field-grown alfalfa, in response to autumn defoliation, and in relation to spring regrowth and winter survival.• Methods Field trials, established in 1996 in eastern Canada, consisted of two alfalfa cultivars (‘AC Caribou’ and ‘WL 225’) defoliated in 1997 and 1998 either only twice during the summer or three times with the third defoliation taken 400, 500 or 600 growing degree days (basis 5 °C) after the second summer defoliation.• Key Results The root accumulation of proline, arginine, histidine and soluble proteins of 32, 19 and 15 kDa, characterized as alfalfa vegetative storage proteins, was reduced the following spring by an early autumn defoliation at 400 or 500 growing degree days in both cultivars; the 600-growing-degree-days defoliation treatment had less or no effect. Transcript levels of the cold-inducible gene msaCIA, encoding a glycine-rich protein, were markedly reduced by autumn defoliation in ‘WL 225’, but remained unaffected in the more winter-hardy cultivar ‘AC Caribou’. The expression of another cold-inducible gene, the dehydrin homologue msaCIG, was not consistently affected by autumn defoliation. Principal component analyses, including components of root organic reserves at the onset of winter, along with yield and plant density in the following spring, revealed that (a) amino acids and soluble proteins are positively related to the vigour of spring regrowth but poorly related to winter survival and (b) winter survival, as indicated by plant density in the spring, is associated with higher concentrations of cryoprotective sugars in alfalfa roots the previous autumn.• Conclusions An untimely autumn defoliation of alfalfa reduces root accumulation of specific N reserves such as proline, arginine, histidine and vegetative storage proteins that are positively related to the vigour of spring regrowth but poorly related to winter survival.
机译:•目的本研究的目的是表征田间生长的紫花苜蓿越冬根中脯氨酸,精氨酸,组氨酸,营养贮藏蛋白和冷诱导基因表达的变化,以响应秋季的落叶,春季回生和方法:1996年在加拿大东部建立的田间试验由两个苜蓿品种(“ AC Caribou”和“ WL 225”)在1997年和1998年进行脱叶,夏季仅进行两次脱叶,第三次进行三次脱叶第二次夏季脱叶后400、500或600个生长度日(以5 C为基础)。•主要结果脯氨酸,精氨酸,组氨酸和32、19和15 kDa可溶性蛋白的根积累,被称为苜蓿营养贮藏蛋白,在两个春季后的400或500个生长度日中,由于早秋的落叶而在第二年春季减少; 600度生长日的落叶处理效果很小或没有效果。 “ WL 225”的秋季脱叶显着降低了冷诱导基因msaCIA的编码水平,该基因编码富含甘氨酸的蛋白,但在较耐寒的品种“ AC Caribou”中并未受到影响。另一个低温诱导基因,脱水蛋白同源物msaCIG的表达并不受秋季落叶的影响。主成分分析,包括冬季开始时根系有机储量的成分,以及次年春季的产量和植物密度,都表明(a)氨基酸和可溶性蛋白与春季再生长的活力呈正相关,但与春季回生的活力却不相关。冬季存活率和(b)春季存活率,如春季的植物密度所指示,与去年秋天紫花苜蓿根中的冷冻保护糖浓度较高相关。•结论苜蓿的秋季秋叶不合时宜减少了特定N储备的根积累,例如脯氨酸,精氨酸,组氨酸和植物营养贮藏蛋白与春季再生能力正相关,而与冬季生存能力较弱。

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