Glucosinolates in non-Brassicales plant species: Critical literature evaluation and testing of two high chemical quality reports

IF 1.4 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Biochemical Systematics and Ecology Pub Date : 2024-07-04 DOI:10.1016/j.bse.2024.104864
Azra Đulović , Marcus A. Koch , Panumart Thongyoo , David I. Pattison , Ivica Blažević , Patrick Rollin , Niels Agerbirk
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Abstract

Glucosinolates (GSLs) are secondary metabolites mainly found in the plant order Brassicales. We critically evaluate reports of GSLs in other orders of flowering plants, propose standards for future reports and subject two cases to rigorous testing. Reports of GSLs in non-Brassicales species should live up to state-of-the-art scientific standards concerning chemical evidence, botanical evidence and biological replication. Occurrence of GSLs in the family Putranjivaceae, order Malpighiales (genera Putranjiva and Drypetes) was reasonably supported, but state-of-the-art confirmation was required. Hence, the taxonomic identity of Putranjiva roxbughii seeds with the previously known GSL profile was confirmed using DNA-based methods. Similarly, good suggestive evidence exist from the family Violaceae, order Malpighiales, but in need of confirmation. No other report of any GSL in a non-Brassicales species meet the proposed scientific standards, but suggestive evidence exists for the family Phytolaccaceae, order Caryophyllales and to a lesser extent family Celastraceae, order Celastrales. A recent report of a GSL in a tropical plant suggested to be a species in the order Sapindales was subjected to a rigorous testing in terms of chemical analysis, biological replication and botanical identification including DNA sequencing. We confirmed the original report concerning chemical structure and reproducibility but revised the botanical identification to a species from the Brassicales order (family Capparidaceae). Hence this paper also reports myrosinase activity, isothiocyanate-type GSL products from roots and stems, and GSL profile of roots, stems, leaves and fruits of Capparis sepiaria L., dominated by Leu-derived 2-methylpropyl GSL in vegetative parts, Val-derived 1-methylethyl GSL and Ile-derived 1-methylpropyl GSL in fruits, and additionally Trp-derived indol-3-ylmethyl GSL and 4-hydroxyindol-3-ylmethyl GSL in immature fruits. Several other GSLs were searched for and conclusively not found above the limit of detection.

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非十字花科植物物种中的葡萄糖苷酸盐:重要文献评估和两份高化学质量报告的测试
葡萄糖苷酸盐(GSLs)是主要存在于十字花科植物中的次级代谢产物。我们对其他有花植物纲中的 GSLs 报告进行了严格评估,提出了未来报告的标准,并对两个案例进行了严格测试。关于非十字花科物种中 GSLs 的报告应符合最先进的科学标准,包括化学证据、植物学证据和生物学重复。GSLs 在马缨丹目 Putranjivaceae 科(Putranjiva 属和 Drypetes 属)中的出现得到了合理的支持,但还需要最新的证实。因此,利用基于 DNA 的方法确认了 Putranjiva roxbughii 种子的分类学特征与之前已知的 GSL 特征。同样,在堇菜科(Violaceae)马鞭草目(Malpighiales)中也有很好的提示性证据,但需要确认。没有其他关于非芸香科物种中任何 GSL 的报告符合所建议的科学标准,但有提示性证据的有石竹科(Phytolaccaceae)、石竹目(Caryophyllales),其次是天南星科(Celastraceae)、天南星目(Celastrales)。最近有报告称,在一种热带植物中发现了一种被认为是无患子目物种的 GSL,我们对其进行了严格的化学分析、生物复制和植物鉴定(包括 DNA 测序)测试。我们确认了最初报告中有关化学结构和可重复性的内容,但将植物学鉴定结果修改为芸香目(Capparidaceae)中的一个物种。因此,本文还报告了 Capparis sepiaria L.的酪氨酸酶活性、根和茎的异硫氰酸盐型 GSL 产物以及根、茎、叶和果实的 GSL 图谱、在植株中主要是由亮氨酸衍生的 2-甲基丙基 GSL,在果实中主要是由缬氨酸衍生的 1-甲基乙基 GSL 和由 Ile 衍生的 1-甲基丙基 GSL,此外,在未成熟果实中主要是由 Trp 衍生的吲哚-3-基甲基 GSL 和 4-羟基吲哚-3-基甲基 GSL。对其他几种 GSL 进行了搜索,但最终没有发现高于检测限的 GSL。
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来源期刊
Biochemical Systematics and Ecology
Biochemical Systematics and Ecology 生物-进化生物学
CiteScore
3.00
自引率
12.50%
发文量
147
审稿时长
43 days
期刊介绍: Biochemical Systematics and Ecology is devoted to the publication of original papers and reviews, both submitted and invited, in two subject areas: I) the application of biochemistry to problems relating to systematic biology of organisms (biochemical systematics); II) the role of biochemistry in interactions between organisms or between an organism and its environment (biochemical ecology). In the Biochemical Systematics subject area, comparative studies of the distribution of (secondary) metabolites within a wider taxon (e.g. genus or family) are welcome. Comparative studies, encompassing multiple accessions of each of the taxa within their distribution are particularly encouraged. Welcome are also studies combining classical chemosystematic studies (such as comparative HPLC-MS or GC-MS investigations) with (macro-) molecular phylogenetic studies. Studies that involve the comparative use of compounds to help differentiate among species such as adulterants or substitutes that illustrate the applied use of chemosystematics are welcome. In contrast, studies solely employing macromolecular phylogenetic techniques (gene sequences, RAPD studies etc.) will be considered out of scope. Discouraged are manuscripts that report known or new compounds from a single source taxon without addressing a systematic hypothesis. Also considered out of scope are studies using outdated and hard to reproduce macromolecular techniques such as RAPDs in combination with standard chemosystematic techniques such as GC-FID and GC-MS.
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