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首页> 外文期刊>MicrobiologyOpen >Seed phytochemicals shape the community structures of cultivable actinobacteria‐inhabiting plant interiors of Thai pigmented rice
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Seed phytochemicals shape the community structures of cultivable actinobacteria‐inhabiting plant interiors of Thai pigmented rice

机译:种子植物化学物质影响着泰国有色水稻中可培养的放线菌居住植物内部的群落结构

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摘要

We examined abundance, bioactivity, and endophytism of cultivable actinobacteria isolated from plant interiors of two Thai pigmented rice cultivars: Hom Nin (HN) rice and Luem Pua (LP) glutinous rice. Both rice cultivars housed the same amount of endophytic actinobacteria (33 isolates each). Microbispora (76%) and Streptomyces (73%) were the predominant endophytic actinobacteria of LP glutinous rice and HN rice, respectively. Sphaerisporangium (9%) was found only in LP glutinous rice. Twelve percent of endophytic actinobacteria was the possibility of discovering novel species from both rice cultivars. Most endophytic actinobacteria exhibited plant growth‐promoting potentials, including antimicrobial activity against test bacteria and phytopathogenic fungi, solubilization of phosphate, and production of biostimulants (i.e., ammonia, indole‐3‐acetic acid, and siderophore) and biocatalysts (i.e., amylase, cellulase, chitinase, lipase, and protease). Our findings revealed that seed phytochemicals of pigmented rice (e.g., anthocyanin, γ‐oryzanol, phytate, antioxidants, and content of amylose) were effectors, shaping the community structures and biofunctions of endophytic actinobacteria. We conclude that pigmented rice is yet a challenging source for discovery of bioactive and novel actinobacteria. This study also provides new insights into the plant‐endophyte interactions by which seed phytochemicals act as a primary checkpoint in the natural selection for establishing unique plant endophytomes.
机译:我们检查了从两个泰国有色水稻品种:洪宁(HN)水稻和卢姆普亚(LP)糯米的植物内部分离出的可培养放线菌的丰度,生物活性和内生性。两个水稻品种都容纳相同数量的内生放线菌(每个菌株33个)。微双孢菌(76%)和链霉菌(73%)分别是LP糯米和HN水稻的主要内生放线菌。球孢子囊菌(9%)仅在LP糯米中发现。百分之十二的内生放线菌是从两个水稻品种中发现新物种的可能性。大多数内生放线菌都具有促进植物生长的潜力,包括对测试细菌和植物致病真菌的抗菌活性,磷酸盐的增溶作用以及生物刺激物(即氨,吲哚-3-乙酸和铁载体)和生物催化剂(即淀粉酶,纤维素酶,几丁质酶,脂肪酶和蛋白酶)。我们的发现表明,有色大米的种子植物化学物质(例如花色苷,γ-谷维素,肌醇六磷酸,抗氧化剂和直链淀粉的含量)是影响植物内生放线菌的群落结构和生物功能的效应物。我们得出结论,有色大米仍然是发现生物活性和新型放线菌的具有挑战性的来源。这项研究还为植物与植物与植物之间的相互作用提供了新见解,种子植物化学物质通过这种作用成为建立独特植物内生菌的自然选择的主要检查点。

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