School of Life Sciences, University of Warwick, Wellesbourne Campus, Warwickshire, CV35 9EF, UK.
New Phytol. 2014 May;202(3):929-939. doi: 10.1111/nph.12694. Epub 2014 Jan 21.
Seed dormancy cycling plays a crucial role in the lifecycle timing of many plants. Little is known of how the seeds respond to the soil seed bank environment following dispersal in spring into the short-term seed bank before seedling emergence in autumn. Seeds of the winter annual Arabidopsis ecotype Cvi were buried in field soils in spring and recovered monthly until autumn and their molecular eco-physiological responses were recorded. DOG1 expression is initially low and then increases as dormancy increases. MFT expression is negatively correlated with germination potential. Abscisic acid (ABA) and gibberellin (GA) signalling responds rapidly following burial and adjusts to the seasonal change in soil temperature. Collectively these changes align germination potential with the optimum climate space for seedling emergence. Seeds naturally dispersed to the soil in spring enter a shallow dormancy cycle dominated by spatial sensing that adjusts germination potential to the maximum when soil environment is most favourable for germination and seedling emergence upon soil disturbance. This behaviour differs subtly from that of seeds overwintered in the soil seed bank to spread the period of potential germination in the seed population (existing seed bank and newly dispersed). As soil temperature declines in autumn, deep dormancy is re-imposed as seeds become part of the persistent seed bank.
种子休眠循环在许多植物的生命周期定时中起着至关重要的作用。对于种子在春季分散到短期种子库中后如何响应土壤种子库环境,直到秋季幼苗出现,人们知之甚少。冬季一年生拟南芥生态型 Cvi 的种子在春季被埋在田间土壤中,并在秋季前每月回收,记录其分子生态生理反应。DOG1 表达最初较低,然后随着休眠的增加而增加。MFT 表达与萌发潜力呈负相关。脱落酸 (ABA) 和赤霉素 (GA) 信号在埋藏后迅速响应,并根据土壤温度的季节性变化进行调整。这些变化共同使萌发潜力与幼苗出现的最佳气候空间相匹配。春季自然分散到土壤中的种子进入以空间感应为主导的浅层休眠循环,当土壤环境最有利于萌发和幼苗出现时,该循环会调整萌发潜力以达到最大值,从而干扰土壤。这种行为与在土壤种子库中越冬的种子略有不同,它可以延长种子种群(现有种子库和新分散的种子)的潜在萌发期。随着秋季土壤温度的下降,当种子成为持久种子库的一部分时,深度休眠再次被强加。