Publications by authors named "Ai-Xia Ren"

We conducted a 3-year (2017-2020) field experiment in the wheat base of Jinzhong Agricultural Hi-tech Industries Demonstration Zone, aiming to determine the measures of nitrogen topdressing and the regulatory effect of cycocel in spring to increase wheat yield. Four nitrogen topdressing dates were set up under the condition of cycocel spraying and control (CK) during the rising period: 10 days (D10), 20 days (D20), 30 days (D30), and 40 days (D40) after regreening stage, to analyze the impact of different N topdressing dates on winter wheat yield and the regulation effect of cycocel on stem characteristics, lignin content and related synthetase activities. The results showed that compared to other nitrogen topdressing dates, D30 increased spike number by 1.

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  • The project aimed to explore the chemical properties, pharmacological effects, and measurement techniques related to contezolid, an emerging antimicrobial agent.
  • The review included various studies examining contezolid's effectiveness against infections, highlighting its improved efficacy and safety compared to linezolid, particularly in minimizing side effects.
  • Contezolid is approved for treating complicated skin infections and offers a new treatment option against multi-drug resistant Gram-positive bacteria without the need for dose adjustments in patients with mild to moderate organ impairment.
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To explore the effects of long-term tillage on bacterial community structure in different soil layers of dryland wheat fields and its relationship with soil physicochemical properties, a long-term field experiment was conducted from 2016 to 2021 in Wenxi Experimental Demonstration Base of Shanxi Agricultural University, Shanxi Province. We studied the effects of no-tillage (NT), subsoiling-tillage (ST), and deep plowing (DP) on soil physicochemical properties; and diversity of the bacterial community; and dominant and different species of phyla and genera in different soil layers. Additionally, PICRUSt2 was used to predict the metabolic function of soil bacterial community.

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  • * Recent advancements in genomics and sequencing technologies have allowed for the complete mapping of quinoa's genome, leading to insights into key genes and traits important for its growth.
  • * The review identifies five challenges in quinoa breeding and suggests four future directions for genetic improvement, aiming to enhance quinoa's agricultural yield and resilience.
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  • - The study investigated how different sowing techniques—wide space sowing (WSS), furrow sowing (FS), and drill sowing (DS)—affect soil moisture and grain protein levels in dryland wheat fields over two different climate years.
  • - Results showed that FS and WSS methods significantly improved soil water storage and increased grain yield and protein content compared to DS, with FS yielding more substantial benefits, especially in dry years.
  • - The research found correlations between enzyme activities related to protein synthesis and water consumption at different growth stages, indicating that improved sowing techniques enhance both water management and grain quality in varying moisture conditions.
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To understand the effects of deep ploughing during the fallow period and soil moisture-based furrow sowing on the utilization of water and nitrogen in dryland wheat, a field experiment following split-plot design was carried out from 2016 to 2018 in Wenxi County of Shanxi Province, with deep ploughing during the fallow period and no-tillage as main plots and soil moisture-based furrow sowing and drilling sowing as sub-plots. The results showed that, compared with no-tillage treatment, deep ploughing during the fallow period significantly increased soil water storage efficiency (by 38.3%-42.

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  • The study investigated how different rates of phosphorus fertilizer affect dryland wheat's growth, focusing on root characteristics, yields, and phosphate utilization over varied rainfall years from 2012 to 2016.
  • Results showed that phosphorus application significantly improved root surface area and weight density, enhanced soil water consumption, and increased the number of spikes, overall yield, and water use efficiency across all fertilizer rates.
  • Higher phosphorus application rates (150 and 225 kg·hm) especially led to increased root development and water consumption in dryer years, resulting in better phosphate storage in the grain compared to lower rates.
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Soil physical properties are a greatly important part of the soil and indicator of soil quality, which can directly affect soil nutrient turnover and crop yields in dryland. This study was carried out with three tillage practices during the summer fallow season since 2011, including no tillage (NT), plow tillage (PT), and subsoiling (ST) in dryland winter wheat fields of the Loess Plateau. Results showed that soil tillage during the summer fallow had a small effect on soil bulk density (ρ ) in the 0-50-cm soil profile before sowing and after harvesting of winter wheat.

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Field experiments were carried out to study the effects of different mulching times (30 or 60 d after previous wheat harvest) and mulching methods (whole-mulching, half-mulching and no- mulching) on wheat plant N absorption and assimilation after deep plowing in fallow period on dryland. The results showed that mulching improved water storage efficiency in fallow period and soil water storage of 0-300 cm at sowing stage significantly. Mulching in fallow period, especially the whole-mulching, increased the N accumulation amount of each growth stage, N translocation amount and rate before anthesis (NABA) , and N accumulation amount after anthesis (NAAA) and grain N.

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Field test was carried out to study the effect of tillage in fallow period on soil water before sowing and growth stages, and nitrogen (N) absorption, translocation by wheat plant. The current data showed that tillage in fallow period improved the soil water at the depth of 0-300 cm before sowing and growth stages, especially in dry years. Such tillage significantly improved N accumulation in leaf, stem and sheath (SS) at anthesis, grain N accumulation at maturity, N mobilization in SS and the contribution of mobilized N to grain N, amount of mobilized N in leaf, level of N accumulation before anthesis, N transportation from vegetative organs to grains after anthesis, and nitrogen accumulation after anthesis, which in turn enhanced the efficiency of N uptake.

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To provide a new way to increase water storage and retention of dryland wheat, a field study was conducted at Wenxi experimental site of Shanxi Agricultural University. The effect of subsoiling in fallow period on soil water storage, accumulation of proline, and formation of grain protein after anthesis were determined. Our results showed that subsoiling in fallow period could increase water storage in the 0-300 cm soil at pre-sowing stage and at anthesis stage with low or medium N application, especially for the 60-160 cm soil.

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Osteoprotegerin (OPG) plays an important role in the regulation of bone resorption and remodeling. The TNFR domain of OPG, which is involved in the inhibition of formation and activity of osteoclasts, was amplified by PCR and inserted into multiple cloning site of PET-28a. The recombinant plasmid was transferred into E.

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The causative agent of severe acute respiratory syndrome (SARS) is a previously unidentified coronavirus, SARS-CoV. The nucleocapsid (N) protein of SARS-CoV is a major viral protein recognized by acute and early convalescent sera from SARS patients. To facilitate the studies on the function and structure of the N protein, this report describe the expression and purification of recombinant SARS-CoV N protein using the baculovirus expression system.

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