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RETRACTED ARTICLE: The role of seed appendage in improving the adaptation of a species in definite seasons: a case study of Atriplex centralasiatica

机译:缩回文章:种子阑尾在改善明确季节的改善方面的作用 - 以阿里氏体中枢瘤的案例研究

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As a common accompanying dispersal structure, specialized seed appendages play a critical role in the successful germination and dispersal of many plants, and are regarded as an adaptation character for plants survival in diverse environments. However, little is known about how the appendages modulate the linkage between germination and environmental factors. Here, we tested the responses of germination to seasonal environmental signals (temperature and humidity) via seed appendages using Atriplex centralasiatica, which is widely distributed in salt marshlands with dry-cold winter in northern China. Three types of heteromorphic diaspores that differ in morphology of persistent bracteole and dormancy levels are produced in an individual plant of A. centralasiatica. Except for the nondormant diaspore (type A, with a brown seed enclosed in a persistent bracteole), bracteoles regulated inner seed dormancy of the other two dormant diaspore types, i.e., type B (flat diaspore with a black inner seed) and type C (globular diaspore with a black inner seed). For types B and C, germination of bracteole-free seeds was higher than that of intact diaspores, and was limited severely when incubated in the bracteole-soaking solution. Dormancy was released at a low temperature (?10?°C) and suitable humidity (5–15%) condition. Oppositely, high temperature and unfit humidity induced secondary dormancy via inhibitors released by bracteoles. Type C with deeper dormancy needed more stringent conditions for dormancy release and was easier for dormancy inducement than type B. The germination windows were broadened and the time needed for dormancy release decreased after the bracteole flushing for the two dormant types in the field condition. Bracteoles determine the germination adaptation by bridging seeds and environmental signals and promising seedlings establishment only in proper seasons, which may also restrict species geographical distribution and shift species distributing ranges under the global climate change scenarios.
机译:作为伴随分散结构的共同,专业种子阑尾在许多植物的成功萌发和分散中起重要作用,并且被认为是植物在不同环境中生存的适应性。但是,关于附属物如何调节萌发与环境因素之间的联系很少。在这里,我们通过使用atriplectrastasiatica通过种子阑尾测试发芽对季节性环境信号(温度和湿度)的响应,这些信号在北方北部的干寒冬季广泛分布于盐沼泽。在持续的苞片和休眠水平形貌中不同的三种异统透视,其在A的个体植物中产生。除了Nongormant Diankore(A型,伴有棕色种子封闭在持续的苞片中),苞片调节其他两种休眠尿道类型的内部种子休眠,即B型(具有黑色内部种子的平坦二血,C(球状葡萄酒与黑色内部种子)。对于B和C的类型,无苞片种子的萌发高于完整的缺陷的种子,并且在培养丁醇浸泡溶液中温育时严重受到限制。在低温(<10℃)和合适的湿度(5-15%)条件下释放休眠。通过苞片释放的抑制剂相反,高温和不适合的湿度诱导的继发性休眠。具有深层休眠的C型需要更严格的休眠释放条件,并且比B型更容易休眠诱导。萌发窗较宽,并且在野外条件下的两种休眠类型的Bractole冲洗后休眠释放所需的时间。 Bracteoles通过桥接种子和环境信号以及仅在适当的季节的幼苗建立时确定发芽适应,这也可能限制在全球气候变化方案下分配范围的物种地理分布和移位物种。

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