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Integrating Low Water Potential Seed Hydration with Other Treatments to Improve Cold Tolerance

机译:将低水势种子水化处理与其他处理方法整合在一起以提高耐寒性

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摘要

Matriconditioning improved the performance of pepper, tomato, sweet corn, snap bean, table beet, sugar beet and watermelon seeds in early field plantings at suboptimal temperatures (averaged over 10 d after planting) ranging from 12 to 18 °C. Reduction in the time to 50% (T50) emergence in conditioned seeds ranged from 0·6 d in watermelon to 3·3 d in pepper and improvement in emergence from 10% in sugar beet to 30% in table beet. Further improvement in emergence occurred by inclusion of pesticides and/or gibberellin during conditioning. A 4 d conditioning of pepper at 25 °C was superior to 7 d conditioning at 15 °C in seeds germinated at 15 °C on filter paper, but 15 °C conditioning was superior in improving percentage emergence in early field plantings. Tomato seeds conditioned at 15 or 25 °C performed equally well in the field. A 2 d conditioning was superior to 1 d conditioning in improving the performance of supersweet sweet corn cultivars grown in a growth chamber at 10/20 °C. The water uptake rate in the presence of Micro-Cel E during matriconditioning of sweet corn seeds was slower than when the seeds were exposed to the same amount of water in absence of the carrier. Electrolyte leakage was greater in supersweet ‘Challenger’ sweet corn seeds carrying the sh2 gene compared to the sugary type sweet corn ‘More’, and in both cases matriconditioning reduced the leakage. Lettuce seeds matriconditioned for 24 h had higher 1-aminocyclopropane-l-carboxylic acid (ACC) content, developed greater ACC oxidase activity and performed better at 10 °C (germinated earlier and had higher percentage germination) than the untreated seeds. Matriconditioning appears to bring about beneficial physical, physiological and biochemical changes that seemingly improve embryo growth potential and tolerance to low temperatures.
机译:在12到18°C的次优温度下(种植后平均10 d以上),在早期田间种植中,基质改良改善了辣椒,番茄,甜玉米,四季豆,食用甜菜,甜菜和西瓜种子的性能。条件种子发芽时间减少到50%(T50)范围从西瓜的0·6 d到胡椒的3·3 d,甜菜的发芽率从10%改善到餐桌甜菜的30%。通过在调理过程中加入农药和/或赤霉素,可进一步改善出苗情况。在15°C的滤纸上萌发的种子在25°C的条件下进行4 d的胡椒处理优于在15°C的条件下7 d的处理,但是15°C的条件在改善早期田间播种中的出苗率方面具有优势。在15或25°C的条件下,番茄种子在田间的表现同样出色。在改善在10/20°C的生长室内生长的超甜甜玉米品种的性能方面,2 d调节优于1 d调节。在甜玉米种子的熟化过程中,存在Micro-Cel E的情况下的吸水速率要慢于在没有载体的情况下将种子暴露于相同量的水。与糖型甜玉米“ More”相比,带有sh2基因的超甜“挑战者”甜玉米种子的电解质泄漏更大,并且在两种情况下,通过基质调节都可以减少泄漏。熟化24小时的生菜种子比未处理的种子具有更高的1-氨基环丙烷-1-羧酸(ACC)含量,具有更高的ACC氧化酶活性,并在10°C下表现更好(发芽更早,发芽率更高)。母体处理似乎带来了有益的物理,生理和生化变化,似乎改善了胚胎的生长潜力和对低温的耐受性。

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