Do Colletotrichum gloeosporioides and Rhizopus stolonifer induce alkaloidal and antifungal responses in Annona muricata seedlings?

IF 1.8 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Christian Anabi Riley-Saldaña, Ivan de-la-Cruz-Chacón, María Del Rocío Cruz-Ortega, Marisol Castro-Moreno, Alma Rosa González-Esquinca
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引用次数: 1

Abstract

The benzylisoquinoline alkaloids of Annona muricata have been isolated, but their physiological or ecological role is unknown. The objective was to explore whether these secondary metabolites are involved in defense against phytopathogenic fungi. To do this, the alkaloidal response of 6-leaf seedlings of A. muricata was analyzed, previously inoculated with Colletotrichum gloeosporioides and Rhizopus stolonifer. Before and after inoculation, alkaloidal extracts of roots, stems, and leaves were obtained, and the antifungal activity was evaluated in vitro. The alkaloids anonaine, reticuline, nornuciferine, assimilobine, and coreximine were identified. C. gloeosporioides caused variable increases in the production of anonaine, reticuline and nornuciferine (10-1200%), while R. stolonifer only stimulated the increase of nornuciferin and anonaine (10%) in the stems and leaves. The alkaloidal extracts of inoculated seedlings increased the antifungal activity, both against the pathogen elicitor and against the second target pathogen. These findings suggest that the alkaloids participate in the antifungal defense mechanism.

黄孢炭疽菌和匍匐茎霉是否能诱导番荔枝幼苗产生生物碱和抗真菌反应?
番荔枝中苯基异喹啉类生物碱已被分离出来,但其生理或生态作用尚不清楚。目的是探讨这些次生代谢物是否参与对植物病原真菌的防御。为此,研究了事先接种炭疽菌和匍匐茎霉的木犀草6叶幼苗的生物碱反应。接种前后分别获得根、茎、叶的生物碱提取物,并对其体外抗真菌活性进行评价。鉴定出了茶碱、网纹碱、去nuciferine、同化碱和coreximine等生物碱。gloeosporioides能引起去花茶碱、网状碱和去花茶碱产量的增加(10 ~ 1200%),而匍匐茎只刺激茎叶中去花茶碱和去花茶碱产量的增加(10%)。接种后的幼苗生物碱提取物对病原菌激发子和第二目标病原菌的抗真菌活性均有提高。这些发现提示生物碱参与了抗真菌的防御机制。
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来源期刊
CiteScore
4.10
自引率
5.00%
发文量
55
期刊介绍: A Journal of Biosciences: Zeitschrift für Naturforschung C (ZNC) is an international scientific journal and a community resource for the emerging field of natural and natural-like products. The journal publishes original research on the isolation (including structure elucidation), bio-chemical synthesis and bioactivities of natural products, their biochemistry, pharmacology, biotechnology, and their biological activity and innovative developed computational methods for predicting the structure and/or function of natural products. A Journal of Biosciences: Zeitschrift für Naturforschung C (ZNC) welcomes research papers in fields on the chemistry-biology boundary which address scientific ideas and approaches to generate and understand natural compounds on a molecular level and/or use them to stimulate and manipulate biological processes.
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