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Sulphated Polysaccharide from Acanthophora spicifera Induced Hevea brasiliensis Defense Responses Against Phytophthora palmivora Infection

机译:刺五加的硫酸化多糖诱导巴西橡胶树抗棕榈疫霉菌感染的防御反应

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摘要

Elicitors from seaweeds are considered an alternative stimulant of plant defenses against pathogenic infection. Finding new sources of elicitors and exploring their effects on plant defenses is a significant undertaking. In this study, we extracted crude polysaccharide (CPS) from Acanthophora spicifera (a red alga) and tested the effects of the compound on rubber tree (Hevea brasiliensis) defense responses. Accumulations of salicylic acid (SA) and scopoletin (Scp) were measured by HPLC. The expression of SA- and Jasmonic acid (JA)-responsive genes was analyzed by semi-qRT-PCR. Strong anion exchange chromatography and Fourier-transform infrared (FTIR) spectroscopy were used for purification and functional characterization of CPS, respectively. The extracted CPS enhanced rubber tree defenses against Phytophthora palmivora infection. It induced SA and Scp accumulations and SA-responsive gene expression, but suppressed JA-responsive gene expression. We successfully separated the non-sulphated polysaccharide (F1) from the sulphated polysaccharides (SPS). Both peaks of SPS (F2 and F3) were identified as lambda (λ)-carrageenan. The F3 fraction showed greater elicitor activity on tobacco leaves. It induced SA and Scp accumulations and peroxidase activity but suppressed catalase activity. Furthermore, the purified λ-carrageenan did not cause cell death in tobacco or rubber tree leaves. Therefore, the elicitor from A. spicifera could be an alternative plant stimulant.
机译:海藻引发剂被认为是植物防御病原体感染的另一种刺激物。寻找引发子的新来源并探索其对植物防御的作用是一项重大的工作。在这项研究中,我们从刺五加(红藻)中提取了粗多糖(CPS),并测试了该化合物对橡胶树(巴西橡胶树)防御反应的影响。通过HPLC测量水杨酸(SA)和scopoletin(Scp)的积累。通过半定量RT-PCR分析SA和茉莉酸(JA)响应基因的表达。强阴离子交换色谱和傅立叶变换红外光谱(FTIR)分别用于CPS的纯化和功能表征。提取的CPS增强了橡胶树对棕榈疫霉菌感染的防御能力。它诱导SA和Scp积累以及SA反应基因表达,但抑制JA反应基因表达。我们成功地从硫酸化多糖(SPS)中分离出了非硫酸化多糖(F1)。 SPS的两个峰(F2和F3)均被确定为λ-角叉菜胶。 F3馏分在烟叶上显示出更高的激发子活性。它诱导SA和Scp积累以及过氧化物酶活性,但抑制过氧化氢酶活性。此外,纯化的λ-角叉菜胶不会在烟草或橡胶树叶片中引起细胞死亡。因此,来自A. spicifera的激发子可能是另一种植物兴奋剂。

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