分散后的湿度条件改变了赤藓种皮表面和物理休眠种子的比例

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2021-02-10 DOI:10.1017/S0960258520000495
C. R. Magalhães, Q. Garcia, D. M. Oliveira
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引用次数: 1

摘要

摘要:豆科(Papilionoideae, Leguminosae)种种子在传播后会失去水分,增加了不透水种子的比例(物理休眠,PY)。然而,在这一过程中,睾丸结构的变化仍然未知。本文研究了散布后相对湿度(RH)的变化对带PY的赤藓(Erythrina speciosa)种子比例的影响。将两个居群的种子分别保存在干燥(40% RH)和湿润(80% RH)环境中,定期进行生理分析(种子含水量、吸胀和萌发)和果皮结构分析(光镜和扫描电镜)。干燥贮藏导致种子脱水,增加了不透水种子的比例,并使黏液层的裂缝关闭。湿润贮藏导致种子含水量增加,含PY种子比例降低,裂缝形成。由于环境湿度的变化,我们认为种子的黏液层发生了变化,改变了水分流失,从而改变了种子含PY的比例。低湿度环境导致种子含水量降低,黏液层裂缝闭合,不透水种子比例增加。另一方面,高RH环境增加了种子含水量和表面裂缝的形成,水在渗吸过程中通过表面裂缝进入,导致含PY的种子比例降低。
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Post-dispersion humidity condition alters the surface of the testa and the proportion of seeds with physical dormancy in Erythrina speciosa
Abstract Seeds of Papilionoideae (Leguminosae) species lose water after dispersal, increasing the proportion of water-impermeable seeds (physical dormancy, PY). However, changes in testa structure during this process remain unknown. The present study investigated how variation in relative humidity (RH) during the post-dispersion period affects the proportion of seeds of Erythrina speciosa with PY. Seeds from two populations were stored in drier (40% RH) and wetter (80% RH) environments and periodically subjected to physiological analysis (seed water content, imbibition and germination) and structural analysis of the testa (light and scanning electron microscopy). Drier storage resulted in seed dehydration, increasing the proportion of water-impermeable seeds and closure of cracks in the mucilaginous stratum. In contrast, wetter storage led to an increase in seed water content, a decrease in the proportion of seeds with PY, and the formation of cracks. As a result of variation in environmental humidity, we conclude that changes occur in the mucilaginous stratum of seeds, altering water loss and, consequently, the proportion of seeds with PY. Environments with low humidity cause a decrease in seed water content, the closing of cracks in the mucilaginous stratum, and, consequently, an increase in the proportion of water-impermeable seeds. On the other hand, a high RH environment increases the seed water content and the formation of superficial cracks, through which water enters during imbibition, causing a decrease in the proportion of seeds with PY.
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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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