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γ-氨基丁酸和氨己烯酸对中国板栗顽拗性种子萌发的影响及其对种子休眠和储存的意义

Effects of GABA and Vigabatrin on the Germination of Chinese Chestnut Recalcitrant Seeds and Its Implications for Seed Dormancy and Storage.

作者信息

Du Changjian, Chen Wei, Wu Yanyan, Wang Guangpeng, Zhao Jiabing, Sun Jiacheng, Ji Jing, Yan Donghui, Jiang Zeping, Shi Shengqing

机构信息

State Key Laboratory of Tree Genetics and Breeding, Key Laboratory of Tree Breeding and Cultivation of State Forestry and Grassland Administration, Research Institute of Forestry, the Chinese Academy of Forestry, 1958 Box, Beijing 100091, China.

Institute for Pomology, Hebei Academy of Agriculture and Forestry Sciences, Changli 066600, China.

出版信息

Plants (Basel). 2020 Apr 3;9(4):449. doi: 10.3390/plants9040449.

Abstract

Recalcitrant chestnut seeds are rich in γ-aminobutyric acid (GABA), which negatively regulates adventitious root development by altering carbon/nitrogen metabolism. However, little is known regarding the role of this metabolite in chestnut seeds. In this study, we investigated the effects of GABA changes on the germination of chestnut seeds treated with exogenous GABA and vigabatrin (VGB, which inhibits GABA degradation). Both treatments significantly inhibited seed germination and primary root growth and resulted in the considerable accumulation of HO, but the endogenous GABA content decreased before germination at 48 h. Soluble sugar levels increased before germination, but subsequently decreased, whereas starch contents were relatively unchanged. Changes to organic acids were observed at 120 h after sowing, including a decrease and increase in citrate and malate levels, respectively. Similarly, soluble protein contents increased at 120 h, but the abundance of most free amino acids decreased at 48 h. Moreover, the total amino acid levels increased only in response to VGB at 0 h. Accordingly, GABA and VGB altered the balance of carbon and nitrogen metabolism, thereby inhibiting chestnut seed germination. These results suggested that changes to GABA levels in chestnut seeds might prevent seed germination. The study data may also help clarify the dormancy and storage of chestnut seeds, as well as other recalcitrant seeds.

摘要

顽拗型板栗种子富含γ-氨基丁酸(GABA),其通过改变碳/氮代谢对不定根发育起负调控作用。然而,关于这种代谢物在板栗种子中的作用知之甚少。在本研究中,我们研究了GABA变化对用外源GABA和氨己烯酸(VGB,抑制GABA降解)处理的板栗种子萌发的影响。两种处理均显著抑制种子萌发和初生根生长,并导致HO大量积累,但内源GABA含量在48小时萌发前下降。可溶性糖水平在萌发前升高,但随后下降,而淀粉含量相对不变。播种后120小时观察到有机酸变化,包括柠檬酸水平下降和苹果酸水平上升。同样,可溶性蛋白质含量在120小时时增加,但大多数游离氨基酸的丰度在48小时时下降。此外,仅在0小时时总氨基酸水平因VGB而增加。因此,GABA和VGB改变了碳和氮代谢的平衡,从而抑制了板栗种子的萌发。这些结果表明,板栗种子中GABA水平的变化可能会阻止种子萌发。该研究数据也可能有助于阐明板栗种子以及其他顽拗型种子的休眠和储存情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d689/7238225/ad2a1efb2dd2/plants-09-00449-g001.jpg

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