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干旱对白术光合作用、总抗氧化能力、生物活性成分积累和转录组的影响。

Effect of drought on photosynthesis, total antioxidant capacity, bioactive component accumulation, and the transcriptome of Atractylodes lancea.

机构信息

School of Pharmacy, Nanjing University of Chinese Medicine, Nanjing, 210000, China.

College of Hanlin, Nanjing University of Chinese Medicine, Taizhou, 225300, China.

出版信息

BMC Plant Biol. 2021 Jun 25;21(1):293. doi: 10.1186/s12870-021-03048-9.

Abstract

BACKGROUND

Atractylodes lancea (Thunb.) DC, a medicinal herb belonging to the Asteraceae family, often faces severe drought stress during its growth. Until now, there has been no research on the effect of drought stress on the quality formation of A. lancea. Therefore, the present study aimed to study the effects of drought stress on A. lancea through physical and chemical analysis, and to reveal the related molecular mechanisms via transcriptome analysis.

RESULTS

The photosynthesis was markedly inhibited under drought stress. There were alterations to photosynthetic parameters (Pn, Gs, Ci) and chlorophyll fluorescence (Fv/Fm, NPQ), and the chlorophyll content decreased. Twenty genes encoding important regulatory enzymes in light and dark reactions, including the Rubisco gene of the Calvin cycle, were significantly downregulated. After exposure to drought stress for more than 4 days, the activities of four antioxidative enzymes (SOD, POD CAT and APX) began to decrease and continued to decrease with longer stress exposure. Meanwhile, most of the genes encoding antioxidative enzymes were downregulated significantly. The downregulation of 21 genes related to the respiratory electron transport chain indicated that the blocked electron transfer accelerated excessive ROS. The MDA content was significantly elevated. The above data showed that 15 days of drought stress caused serious oxidative damage to A. lancea. Drought stress not only reduced the size and dry weight of A. lancea, but also lowered the amount of total volatile oil and the content of the main bioactive components. The total volatile oil and atractylodin content decreased slightly, whereas the content of atractylon and β-eudesmol decreased significantly. Moreover, ten significantly downregulated genes encoding sesquiterpene synthase were mainly expressed in rhizomes.

CONCLUSIONS

After exposed to drought stress, the process of assimilation was affected by the destruction of photosynthesis; stress tolerance was impaired because of the inhibition of the antioxidative enzyme system; and bioactive component biosynthesis was hindered by the downregulation of sesquiterpene synthase-related gene expression. All these had negative impacts on the quality formation of A. lancea under drought stress.

摘要

背景

苍术(白术),菊科药用植物,在生长过程中常受到严重干旱胁迫。到目前为止,还没有研究干旱胁迫对苍术质量形成的影响。因此,本研究旨在通过理化分析研究干旱胁迫对苍术的影响,并通过转录组分析揭示相关的分子机制。

结果

干旱胁迫显著抑制光合作用。光合参数(Pn、Gs、Ci)和叶绿素荧光(Fv/Fm、NPQ)发生变化,叶绿素含量降低。20 个编码卡尔文循环中Rubisco 等重要光暗反应调节酶的基因显著下调。苍术在遭受干旱胁迫 4 天以上时,4 种抗氧化酶(SOD、POD、CAT 和 APX)的活性开始下降,且随着胁迫时间的延长而持续下降。同时,大多数编码抗氧化酶的基因显著下调。与呼吸电子传递链相关的 21 个基因下调表明,电子传递受阻加速了过量的 ROS。MDA 含量显著升高。以上数据表明,15 天的干旱胁迫对苍术造成了严重的氧化损伤。干旱胁迫不仅使苍术的大小和干重减小,而且使总挥发油和主要生物活性成分的含量降低。总挥发油和白术内酯的含量略有下降,而苍术酮和β-桉叶醇的含量则显著下降。此外,10 个编码倍半萜合酶的显著下调基因主要在根茎中表达。

结论

干旱胁迫后,同化过程受到光合作用破坏的影响;抗氧化酶系统的抑制导致胁迫耐受性受损;倍半萜合酶相关基因表达下调阻碍了生物活性成分的生物合成。所有这些都对干旱胁迫下苍术的质量形成产生了负面影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c59/8228912/026550ccbfce/12870_2021_3048_Fig1_HTML.jpg

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