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吸胀期是菜豆种子萌发的关键温度敏感阶段。

Imbibition period as the critical temperature sensitive stage in germination of lima bean seeds.

机构信息

Crops Research Division, Agricultural Research Service, United States Department of Agriculture, Beltsville, Maryland.

出版信息

Plant Physiol. 1966 Feb;41(2):221-9. doi: 10.1104/pp.41.2.221.

Abstract

Lima bean seeds (Phaseolus lunatus L.) and excised embryonic axes can be injured during imbibition at temperatures below 25 degrees . The early imbibitional stage is critical; imbibition at 25 degrees followed by low temperature exposure does not cause injury. Sensitivity to chilling injury is conditioned by the pre-harvest seed history. Low vigor (bleached) seeds are most sensitive to injury, the effects of which can be intensified by restricted oxygen supply during early axis growth. The seed coat, by preventing water uptake, can permit the seed to avoid injury. This protective mechanism is most effective at low temperature and high moisture stress. Immediately following low temperature imbibition, injured axes lose organic materials, probably nucleotides. This organic leachate is a potential influence on soil microorganisms and, together with the temperature sensitivity, vigor, and seed coat effect undoubtedly is important in controlling the potential variability in germination shown by a seed population.

摘要

利马豆种子(菜豆)和切离的胚轴在低于 25℃的吸胀温度下可能会受伤。早期的吸胀阶段是关键的;25℃下吸胀后再进行低温处理不会造成伤害。对冷害的敏感性取决于采前种子历史。活力低(漂白)的种子对伤害最敏感,而在早期胚轴生长过程中供氧受限会加剧这种伤害。种皮通过阻止吸水,可以使种子免受伤害。这种保护机制在低温和高水分胁迫下最为有效。在低温吸胀后立即,受伤的胚轴失去有机物质,可能是核苷酸。这种有机浸出液可能对土壤微生物有潜在影响,再加上温度敏感性、活力和种皮效应,无疑对控制种子群体表现出的潜在变异性的发芽能力有重要影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/549f/1086323/8e1cc1e582de/plntphys00507-0026-a.jpg

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