Photosynthetically active radiation is required for seedling growth promotion by volcanic dacitic tuff breccia (Azomite).

IF 2.3 3区 生物学 Q2 PLANT SCIENCES
Plant Direct Pub Date : 2023-12-01 DOI:10.1002/pld3.537
Kent F McCue, Elijah Mehlferber, Robert Reed, Alexis Ortiz, Jon Ferrel, Rajnish Khanna
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Abstract

A plant's growth and development are shaped by its genome and the capacity to negotiate its environment for access to light, water, and nutrients. There is a vital need to understand the interactions between the plant, its physical environment, and the fertilizers used in agriculture. In this study, a commercially available volcanic ash fertilizer, Azomite®, characterized as dacitic (rhyolitic) tuff breccia, was tested for its effect on promoting early seedling vigor. Early growth and photomorphogenesis processes are well studied in Arabidopsis. Seedling assays under different light conditions were used to dissect the underlying mechanisms involved. These assays are well established and can be translated to agriculturally important crop plants. The volcanic ash fertilizer was tested at different concentrations on seedlings grown on basic media lacking sucrose either in continuous darkness (Dc), continuous Red (Rc), Far-Red (FRc), or White Light (WLc). Micronutrients in the volcanic ash significantly increased seedling growth under Rc and WLc, but not under Dc and FRc, indicating that photosynthetically active radiation was required for the observed growth increase. Furthermore, red-light photoreceptor mutant, phyB-9, lacked the growth response, and higher amount of fertilizer reduced growth in all conditions tested. These data suggest that light triggers the ability of the seedling to utilize micronutrients in volcanic ash in a dose-dependent manner. The methods described here can be used to establish mechanisms of activity of various nutrient inputs and, coupled with whole-genome expression profiling, can lead to better insights into optimizing nutrient field applications to improve crop production.

火山英安质凝灰岩角砾岩(Azomite)促进幼苗生长需要光合有效辐射。
植物的生长和发育是由其基因组和适应环境以获得光、水和营养的能力决定的。迫切需要了解植物、自然环境和农业中使用的肥料之间的相互作用。在本研究中,测试了一种市售的火山灰肥料Azomite®,其特征为英白质(流纹岩)凝灰岩角砾岩,对其促进早期幼苗活力的效果。拟南芥的早期生长和光形态发生过程已经得到了很好的研究。利用不同光照条件下的幼苗试验来剖析所涉及的潜在机制。这些检测方法已经得到很好的建立,并且可以转化为具有重要农业意义的农作物。在无蔗糖的基本培养基上,对连续暗光(Dc)、连续红光(Rc)、远红光(FRc)和白光(WLc)下的幼苗进行了不同浓度的火山灰肥料试验。在Rc和WLc处理下,火山灰微量元素对幼苗生长有显著促进作用,而Dc和FRc处理下则无显著促进作用,说明所观察到的幼苗生长的促进需要光合有效辐射。此外,红色光感受器突变体phyB-9缺乏生长响应,在所有测试条件下,较高的肥料量都降低了生长。这些数据表明,光触发了幼苗以剂量依赖的方式利用火山灰中的微量营养素的能力。本文描述的方法可用于建立各种养分投入的活性机制,并与全基因组表达谱相结合,可以更好地了解优化养分田间应用以提高作物产量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Plant Direct
Plant Direct Environmental Science-Ecology
CiteScore
5.00
自引率
3.30%
发文量
101
审稿时长
14 weeks
期刊介绍: Plant Direct is a monthly, sound science journal for the plant sciences that gives prompt and equal consideration to papers reporting work dealing with a variety of subjects. Topics include but are not limited to genetics, biochemistry, development, cell biology, biotic stress, abiotic stress, genomics, phenomics, bioinformatics, physiology, molecular biology, and evolution. A collaborative journal launched by the American Society of Plant Biologists, the Society for Experimental Biology and Wiley, Plant Direct publishes papers submitted directly to the journal as well as those referred from a select group of the societies’ journals.
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