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Integration of behavioural tests and transcriptome sequencing of C. elegans reveals how the nematode responds to peanut shell biochar amendment

机译:线虫的行为测试和转录组测序的整合揭示了线虫如何响应花生壳生物炭的修饰

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摘要

Biochars have drawn wide attention as adsorbents, carbon sequesters and soil re-mediators. However, these substances are ambiguous regarding their effects on the motility, phenotypic changes and potential adaptative mechanisms of soil organisms. This study investigated how peanut shell biochar (PBC) affects the C. elegans model via a one-choice selection test and RNA-seq analysis. The results showed that C. elegans were able to select either PBC or a water control, and a clear preference for PBC was observed after 48 h of exposure, with the che-motaxis index (CI) reaching approximately 1.0. The nematode preferences for PBC vs sterile PBC/graphite were not significant, which demonstrated that initial microorganisms and appearances were not the reasons for the worms' selection, but the selection behaviour was instead determined by volatile odours. The treatments also showed that biochar amendment significantly decreased the body length, brood size and superoxide dismutase (SOD) activity of C. elegans to 960.20 ± 15.23 μm, 173.22 ± 4.56,165.81 ± 3.82 U/mL SOD, respectively. Then, a possible molecular mechanism of PBC-induced developmental and reproductive effects on C. elegans was explored. Differential gene expression analysis was performed, and 1625 genes (1425 up- and 225 downregulated genes) were regulated in response to PBC treatment The top 20 regulated genes were col genes (col-129; col-81; col-139; col-71), bli-6, perm-4 and his-24, which indicated that cuticle collagen synthesis, eggshell formation and/ or heterochromatin in postembryonic growth may be disrupted following exposure to PBC. Therefore, our study suggested that quality standards be used to test nematode preferences and responses to biochar amendment, with the aim of safe application in soils, seedling substrates or fertilizers.
机译:生物炭作为吸附剂,固碳剂和土壤修复剂已引起广泛关注。但是,这些物质对土壤微生物的运动性,表型变化和潜在的适应机制影响不明确。这项研究通过单选测试和RNA序列分析研究了花生壳生物炭(PBC)如何影响线虫模型。结果表明,秀丽隐杆线虫能够选择PBC或水对照,并且在暴露48小时后观察到对PBC的明显偏爱,趋化指数(CI)达到约1.0。相对于无菌PBC /石墨,线虫对PBC的偏爱并不显着,这表明最初的微生物和外观不是蠕虫选择的原因,而是由挥发性气味决定了选择行为。这些处理还表明,生物炭改良剂显着降低线虫的体长,育雏尺寸和超氧化物歧化酶(SOD)活性,分别降至960.20±15.23μm,173.22±4.56、165.81±3.82 U / mL SOD。然后,探讨了PBC诱导的秀丽隐杆线虫的发育和生殖作用的可能分子机制。进行差异基因表达分析,并响应PBC处理对1625个基因(1425个上调基因和225个下调基因)进行了调节。受调节的前20个基因是col基因(col-129; col-81; col-139; col-71) ),bli-6,perm-4和his-24,这表明暴露于PBC后,胚后生长中的表皮胶原蛋白合成,蛋壳形成和/或异染色质可能被破坏。因此,我们的研究建议使用质量标准来测试线虫的偏好和对生物炭改良的反应,以期安全地应用于土壤,幼苗基质或肥料中。

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