猕猴桃(猕猴桃科)的血清素及其在个体死后种子传播中的作用

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2021-12-01 DOI:10.1017/S0960258521000283
Duniel Barrios, Sandy Toledo, Joaquín Sánchez, L. R. González-Torres
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引用次数: 1

摘要

摘要Seroting是一种将成熟种子保留在亲本结构中的策略,使植物能够应对高温、干旱或火灾等环境变化。尽管这种现象可能在仙人掌科中很常见,尤其是在甜瓜科中,但通常很少得到解决。我们工作的主要目标是调查马坦扎努斯甜瓜的头部是否隐藏着种子,如果存在,确定这些种子是否保持其生存能力。我们还讨论了在个体死亡后,脑作为一水硬铝石可能提供的一些优势。从死亡个体身上采集的头骨被分为四个切片,并对其种子进行计数;我们还通过在25/30°C下使用生长室,以及对未发芽的种子进行切割测试,评估了种子的生存能力和成光反应。我们的研究结果显示,不同年龄的活种子在所有脑片中都保留了下来。种子是成光细胞阳性的,发芽率在11–22%之间,在未发芽的部分,活力超过50%。
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Serotiny in Melocactus matanzanus (Cactaceae) and role of cephalium in dispersal of seeds after the individual's death
Abstract Serotiny is a strategy in which the retention of mature seeds in parent structures allows plants to cope with environmental variability like heat, drought or fire. Although this phenomenon might be common in Cactaceae, and particularly in Melocactus, it has generally been scarcely addressed. The main goal of our work is to investigate if there are seeds hidden in the cephalium of Melocactus matanzanus and if there are, determine whether or not these seeds maintain their viability. We also discuss some advantages the cephalium may offer as diaspore after the death of individuals. Cephalia collected from dead individuals were divided into four slices and their seeds counted; we also assessed the viability and photoblastic response of the seeds by using growth chambers at 25/30°C, and by a cut test on the seeds that did not germinate. Our results showed retention of viable seeds of different ages in all slices of the cephalium. Seeds were photoblastic positive with germination between 11–22% and viability above 50% in the portion of the lots that did not germinate.
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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