keyword
https://read.qxmd.com/read/38145641/factors-controlling-accumulation-and-bioavailability-of-selenium-in-paddy-soils-a-case-study-in-luxi-county-china
#21
JOURNAL ARTICLE
Zhangqian Xu, Weijun Zhou, Yuzhou Zhou, Haojie Cui, Rui Liu, Guiduo Shang
Selenium (Se) accumulation in rice (Oryza sativa L.) has become a major global concern. Se offers multiple health benefits in humans; however, its inadequate or excessive intake can be harmful. Therefore, determining the factors driving Se abundance and bioavailability in paddy soils is essential to ensure the safety of human Se intake. This study investigated the accumulation, bioavailability, and distribution of Se in 820 paddy soil and rice grain samples from Luxi County, China to assess how soil properties (soil organic matter [SOM], cation exchange capacity [CEC], and pH), geographical factors (parent materials, elevation, and mean annual precipitation [MAP] and temperature [MAT]), and essential micronutrients (copper [Cu], zinc [Zn], and manganese [Mn]) govern Se accumulation and bioavailability in paddy soils...
December 23, 2023: Environmental Pollution
https://read.qxmd.com/read/38040254/rice-straw-biochar-and-lime-regulate-the-availability-of-heavy-metals-by-managing-colloid-associated-but-dissolved-heavy-metals
#22
JOURNAL ARTICLE
Hui Huang, Liang Ge, Xiaowei Zhang, Hangyu Chen, Yu Shen, Jian Xiao, Haiying Lu, Yongli Zhu, Jiangang Han, Ronghua Li
Heavy metal (HM) pollution has extensively spread in agricultural soils, posing potential threats to food safety and human health. Biochar and lime are two amendments used to remediate the soils contaminated with HMs. However, colloids have been shown to increase the mobility of HMs in paddy soils. Nevertheless, limited investigations have been made into the impact of biochar and lime on the formation of colloid-associated (colloidal) HMs in paddy soils. In this study, column and microcosm incubation experiments were conducted to examine how biochar and lime affected the availability of HMs (arsenic, cadmium, copper, iron, manganese, lead, and zinc) in different layers of paddy soil...
November 29, 2023: Chemosphere
https://read.qxmd.com/read/37987940/bactericidal-bissulfone-b-7-targets-bacterial-pyruvate-kinase-to-impair-bacterial-biology-and-pathogenicity-in-plants
#23
JOURNAL ARTICLE
Awei Zhang, Haizhen Zhang, Ronghua Wang, Hongfu He, Baoan Song, Runjiang Song
The prevention and control of rice bacterial leaf blight (BLB) disease has not yet been achieved due to the lack of effective agrochemicals and available targets. Herein, we develop a series of novel bissulfones and a novel target with a unique mechanism to address this challenge. The developed bissulfones can control Xanthomonas oryzae pv. oryzae (Xoo), and 2-(bis(methylsulfonyl)methylene)-N-(4-chlorophenyl) hydrazine-1-carboxamide (B7 ) is more effective than the commercial drugs thiodiazole copper (TC) and bismerthiazol (BT)...
November 17, 2023: Science China. Life Sciences
https://read.qxmd.com/read/37980985/adsorption-of-trace-heavy-metals-through-organic-compounds-enriched-biochar-using-isotherm-adsorption-and-kinetic-models
#24
JOURNAL ARTICLE
Fiza Pir Dad, Waqas-Ud-Din Khan, Faiza Sharif, Abdul Sattar Nizami
Trace heavy metals such as copper and nickel, when exceeds a certain level, cause detrimental effects on the ecosystem. The current study examined the potential of organic compounds enriched rice husk biochar (OCEB's) to remove the trace heavy metals from an aqueous solution in four steps. In 1st step, biochar' physical and chemical properties were analyzed through scanning electron microscope (SEM) and Fourier transforms infrared spectroscopy (FTIR). In the 2nd step, two biochar vis-a-vis glycine, alanine enriched biochar (GBC, ABC) was selected based on their adsorption capacity of four different metals Cr, Cu, Ni and Pb (chromium, copper, nickel, and lead)...
November 17, 2023: Environmental Research
https://read.qxmd.com/read/37943812/impact-of-manures-and-fertilizers-on-yield-and-soil-properties-in-a-rice-wheat-cropping-system
#25
JOURNAL ARTICLE
Salwinder Singh Dhaliwal, Vivek Sharma, Vibha Verma, Manmeet Kaur, Prabhjot Singh, Ahmed Gaber, Alison M Laing, Akbar Hossain
The use of chemical fertilizers under a rice-wheat cropping system (RWCS) has led to the emergence of micronutrient deficiency and decreased crop productivity. Thus, the experiment was conducted with the aim that the use of organic amendments would sustain productivity and improve the soil nutrient status under RWCS. A three-year experiment was conducted with different organic manures i.e. no manure (M0), farmyard manure @ 15 t ha-1 (M1), poultry manure @ 6 t ha-1(M2), press mud @ 15 t ha-1(M3), rice straw compost @ 6 t ha-1(M4) along with different levels of the recommended dose of fertilizer (RDF) i...
2023: PloS One
https://read.qxmd.com/read/37935444/role-of-osbhlh156-osiro2-transcription-factor-complex-in-regulating-manganese-copper-and-zinc-transporters-in-rice
#26
JOURNAL ARTICLE
Jiamei Zhu, Jie Li, Xiaoying Hu, Jin Wang, Jing Fang, Shoudong Wang, Huixia Shou
Iron (Fe), manganese (Mn), copper (Cu) and zinc (Zn) are essential micronutrients that are necessary for plant growth and development, but can be toxic at supra-optimal levels. Plants have evolved a complex homeostasis network that includes uptake, transport, and storage of these metals. It was shown that the transcription factor (TF) complex OsbHLH156/OsIRO2 is activated under Fe deficient condition and acts as the central regulators on Strategy II Fe acquisition. In this study, the role of the TF complex on Mn, Cu and Zn uptake was evaluated...
November 3, 2023: Journal of Experimental Botany
https://read.qxmd.com/read/37906428/engineering-phenothiazine-based-functional-mimics-of-host-defense-peptides-as-new-agrochemical-candidates-design-synthesis-and-antibacterial-evaluation
#27
JOURNAL ARTICLE
Wu-Bin Shao, Rong-Shuang Luo, Jiao Meng, Xiao-Kang Lv, Hong-Mei Xiang, Wan-Lin Xiao, Xiang Zhou, Li-Wei Liu, Zhi-Bing Wu, Song Yang
In the protracted "arms race" between host and plant pathogenic bacteria, host organisms have evolved powerful weapons known as host defense peptides (HDPs). However, natural HDPs are not suitable for large-scale applications; therefore, researchers have chosen to develop bespoke small-molecule functional mimics. Phenothiazine derivatives were developed as functional HDPs mimics, owing to their broad biological activity and high lipophilicity. The phenothiazine analogues designed in this study exhibited excellent in vitro bioactivity against the three Gram-negative bacteria Xanthomonas oryzae pv oryzae , Xanthomonas axonopodis pv citri , and Pseudomonas syringae pv actinidiae , with optimal EC50 values of 0...
October 31, 2023: Journal of Agricultural and Food Chemistry
https://read.qxmd.com/read/37902589/mitochondrial-targeting-effector-rsia_ctag-cox11-in-rhizoctonia-solani-ag-1-ia-has-two-functions-plant-immunity-suppression-and-cell-death-induction-mediated-by-a-rice-cytochrome-c-oxidase-subunit
#28
JOURNAL ARTICLE
Danhua Zhang, Runmao Lin, Naoki Yamamoto, Zhaoyilin Wang, Hui Lin, Kazunori Okada, Yao Liu, Xing Xiang, Tengda Zheng, Haoxi Zheng, Xiaoqun Yi, Yoshiteru Noutoshi, Aiping Zheng
Rhizoctonia solani AG-1 IA causes a necrotrophic rice disease and is a serious threat to rice production. To date, only a few effectors have been characterized in AG-1 IA. We previously identified RsIA_CtaG/Cox11 and showed that infiltration of the recombinant protein into rice leaves caused disease-like symptoms. In the present study, we further characterized the functionality of RsIA_CtaG/Cox11. RsIA_CtaG/Cox11 is an alternative transcript of cytochrome c oxidase copper chaperone Cox11 that starts from the second AUG codon, but contains a functional secretion signal peptide...
October 30, 2023: Molecular Plant Pathology
https://read.qxmd.com/read/37897827/a-sensitive-bimetallic-copper-bismuth-metal-organic-frameworks-based-aptasensors-for-zearalenone-detection-in-foodstuffs
#29
JOURNAL ARTICLE
Mengmeng Kang, Yu Yao, Beibei Yuan, Shuai Zhang, Olayinka Oderinde, Zhihong Zhang
Electrochemical aptasensors have emerged as promising platforms for effectivelydetection of various target analytes. Here, we developed a sensitive and selective electrochemical aptasensor for zearalenone (ZEN) determination based on a bimetallic organic framework (CuBi-BPDC). The results of HR-TEM, FE-SEM, XPS, etc. indicate the CuBi-BPDC possessing mixed nodes of Cu(II) and Bi(III) and multilayered nanosheets bearing nanoparticles. Due to its improved electrochemical activity and strong affinity for aptamers, the CuBi-BPDC-based aptasensor obtains a low limit of detection of 0...
October 21, 2023: Food Chemistry
https://read.qxmd.com/read/37897195/copper-oxide-nanoparticles-an-effective-suppression-tool-against-bacterial-leaf-blight-of-rice-and-its-impacts-on-plants
#30
JOURNAL ARTICLE
Solabomi Olaitan Ogunyemi, Jinyan Luo, Yasmine Abdallah, Shanghong Yu, Xiao Wang, Dalal Hussien M Alkhalifah, Wael N Hozzein, Fang Wang, Ji'an Bi, Chengqi Yan, Bin Li
BACKGROUND: In order to address the challenges of food security for the ever-increasing population, the emergent of nanotechnology is an alternate technology of choice which recently accounts for the production of safer pesticides and as a substitute for conventional fertilizer. The antidrug resistance of Xanthomonas oryzae pv. oryzae (Xoo) and build-up of chemicals in the environment has made it necessary to find alternate safe measures that are effective in diseases management. Hence, in this study, copper oxide nanoparticles (CuONPs) was green synthesized by Hibiscus rosa-sinensis L...
October 28, 2023: Pest Management Science
https://read.qxmd.com/read/37865758/comprehensive-in-silico-analysis-of-the-underutilized-crop-tef-eragrostis-tef-zucc-trotter-genome-reveals-drought-tolerance-signatures
#31
JOURNAL ARTICLE
Abreham Bekele-Alemu, Ayalew Ligaba-Osena
BACKGROUND: Tef (Eragrostis tef) is a C4 plant known for its tiny, nutritious, and gluten-free grains. It contains higher levels of protein, vitamins, and essential minerals like calcium (Ca), iron (Fe), copper (Cu), and zinc (Zn) than common cereals. Tef is cultivated in diverse ecological zones under diverse climatic conditions. Studies have shown that tef has great diversity in withstanding environmental challenges such as drought. Drought is a major abiotic stress severely affecting crop productivity and becoming a bottleneck to global food security...
October 21, 2023: BMC Plant Biology
https://read.qxmd.com/read/37856457/variations-in-elemental-composition-of-rice-oryza-sativa-l-with-different-cultivation-areas-of-ethiopia
#32
JOURNAL ARTICLE
Abebe Desalew, Bewketu Mehari
Variations in the elemental composition of rice (Oryza sativa L.) grains, and the link with the growing soil, were investigated across the major production areas of Ethiopia (Fogera, Metema and Pawe). The elements (Ca, Mg, Fe, Zn, Mn, Cu, Ni, Cr, Cd and Pb) were determined by using flame atomic absorption spectroscopy (FAAS), after digesting samples through an optimized procedure with respect to volumes of reagents (HNO3, HClO4 and H2O2), temperature and time. The accuracy of the FAAS method was in the range of 87‒113%...
2023: PloS One
https://read.qxmd.com/read/37809877/phenotypic-and-genetic-dissection-of-the-contents-of-important-metallic-elements-in-hybrid-rice-grown-in-cadmium-contaminated-paddy-fields
#33
JOURNAL ARTICLE
Tengfei Liu, Wenbin Hu, Lvshui Weng, Lihua Deng, Jinjiang Li, Jianghui Yu, Zheng Zhou, Ye Liu, Caiyan Chen, Teng Sheng, Zhenghong Zhao, Guoying Xiao
Rice ( Oryza sativa L.) is a staple food that feeds over half of the world's population, and the contents of metallic elements in rice grain play important roles in human nutrition. In this study, the contents of important metallic elements were determined by ICP-OES, and included cadmium (Cd), zinc (Zn), manganese (Mn), copper (Cu), iron (Fe), nickel (Ni), calcium (Ca), and magnesium (Mg) in brown rice, in the first node from the top (Node 1), in the second node from the top (Node 2), and in roots of 55 hybrids and their parental lines...
September 2023: Heliyon
https://read.qxmd.com/read/37799552/arbuscular-mycorrhizal-fungi-improve-selenium-uptake-by-modulating-root-transcriptome-of-rice-oryza-sativa-l
#34
JOURNAL ARTICLE
Yan Qin, Qiuliang Cai, Yiting Ling, Xue Chen, Jingmao Xu, Guirong Huang, Shanhe Liang, Xiu Yuan, Xiao Mu Yang, Dan Lu, Xueli Wang, Yanyan Wei
Although selenium (Se) is an essential trace element in humans, the intake of Se from food is still generally inadequate throughout the world. Inoculation with arbuscular mycorrhizal fungi (AMF) improves the uptake of Se in rice ( Oryza sativa L.). However, the mechanism by which AMF improves the uptake of Se in rice at the transcriptome level is unknown. Only a few studies have evaluated the effects of uptake of other elements in rice under the combined effects of Se and AMF. In this study, Se combined with the AMF Funneliformis mosseae (Fm) increased the biomass and Se concentration of rice plants, altered the pattern of ionomics of the rice roots and shoots, and reduced the antagonistic uptake of Se with nickel, molybdenum, phosphorus, and copper compared with the treatment of Se alone, indicating that Fm can enhance the effect of fertilizers rich in Se...
2023: Frontiers in Plant Science
https://read.qxmd.com/read/37755070/repurposing-salicylamides-to-combat-phytopathogenic-bacteria-and-induce-plant-defense-responses
#35
JOURNAL ARTICLE
Yue Ma, Ying-Hui He, Peng Deng, Shao-Yong Zhang, Yan-Yan Ding, Zhi-Jun Zhang, Bao-Qi Zhang, Jun-Xia An, Yi-Rong Wang, Ying-Qian Liu
Based on the research strategy of "drug repurposing", a series of derivatives and marketed drugs that containing salicylic acid skeleton were tested for their antibacterial activities against phytopathogens. Salicylic acid can not only regulate some important growth metabolism of plants, but also induce plant disease resistance. The bioassay results showed that the salicylamides exhibited excellent antibacterial activity. Especially, oxyclozanide showed the best antibacterial effect against Xanthomonas oryzae, Xanthomonas axonopodis pv...
September 26, 2023: Chemistry & Biodiversity
https://read.qxmd.com/read/37663519/comparative-surface-study-of-ru-cu-and-ag-cu-doped-rhs-catalysts-from-waste-biomass-for-biofuel-application
#36
JOURNAL ARTICLE
Jothi Ramalingam Rajabathar, Hamad A Al-Lohedan, Daifallah M Aldhayan, Jimmy Nelson Appaturi, Yaseen Mowlana Musthafa
The present study compares the surface, textural, and catalytic properties of porous silica doped with bimetallic metal ions that was made from rice husk (RH) biomass. Due to the use of a surfactant during the synthesis process, porous RH-silica (RHS) was derived. In situ doping of silver/copper and ruthenium/copper has been achieved via the xerogel and hydrogel formation methods. The prepared catalysts have been analyzed by various methods, such as surface area and narrow pore size distribution, to confirm their porosity...
August 29, 2023: ACS Omega
https://read.qxmd.com/read/37615739/rice-husk-coated-with-copper-oxide-nanoparticles-for-17%C3%AE-ethinylestradiol-removal-from-an-aqueous-solution-adsorption-mechanisms-and-kinetics
#37
JOURNAL ARTICLE
Hasanain Saad Alhares, Qahtan Adnan Ali, Mohammed Ali A Shaban, Mohanad J M-Ridha, Hawraa R Bohan, Sabah J Mohammed, Khalid M Abed, Hassimi Abu Hasan
The 17 α-ethinylestradiol (EE2) adsorption from aqueous solution was examined using a novel adsorbent made from rice husk powder coated with CuO nanoparticles (CRH). Advanced analyses of FTIR, XRD, SEM, and EDSwere used to identify the classification parameters of a CRH-like surface morphology, configuration, and functional groups. The rice husk was coated with CuO nanoparticles, allowing it to create large surface area materials with significantly improved textural qualities with regard to functional use and adsorption performance, according to a detailed characterization of the synthesized materials...
August 24, 2023: Environmental Monitoring and Assessment
https://read.qxmd.com/read/37600465/evaluation-of-nutritional-value-bioactivity-and-mineral-content-of-quinoa-bran-in-china-and-its-potential-use-in-the-food-industry
#38
JOURNAL ARTICLE
Xueyong Zhou, Ting Yue, Zuofu Wei, Liyan Yang, Lihong Zhang, Baomei Wu
Quinoa bran is a by-product during quinoa processing, which is not well used due to its high content of antinutritional factors. The nutritional, antinutritional, antioxidative and mineral content were analyzed in quinoa bran from five producing areas (Hebei, Shanxi, Qinghai, Inner Mongolia and Gansu Province) in China. The results showed that the mean values of protein, starch, fat, fiber, reducing sugar, ash, moisture and energy in quinoa bran were 9.35%, 47.37%, 8.26%, 10.74%, 3.68%, 6.25%, 9.29% and 360...
2023: Current research in food science
https://read.qxmd.com/read/37595063/a-ph-responsive-mof-functionalized-hollow-mesoporous-silica-controlled-herbicide-delivery-system-exhibits-enhanced-activity-against-accase-herbicide-resistant-weeds
#39
JOURNAL ARTICLE
Xi-le Deng, Jia-Qing Li, Ji-Ming Yi, Ren-Jie Lian, Zhao-Yang Zhang, Jian-Hong Li, Shun He, Lian-Yang Bai
BACKGROUND: Weeds grow aggressively in agricultural fields, leading to reduced crop yields and an inability to meet the growing demand for food. Herbicides are currently the most effective method for weed control. However, the overuse of herbicides has resulted in the evolution of resistance mutants and has caused environmental pollution. Therefore, new technologies are urgently required to address this global challenge. RESULTS: We report a copper-benzene-1,4-dicarboxylate metal organic framework (Cu-BDC MOF)-functionalized carboxyl hollow mesoporous silica (HMS-COOH) delivery system for the pH-controlled release of the acetyl-CoA carboxylase (ACCase)-inhibiting herbicide quizalofop-p-ethyl (QE)...
August 18, 2023: Pest Management Science
https://read.qxmd.com/read/37555766/synthesis-of-copper-nanoclusters-from-bacopa-monnieri-leaves-for-fluorescence-sensing-of-dichlorvos
#40
JOURNAL ARTICLE
Vibhuti Atulbhai Sadhu, Sanjay Jha, Tae Jung Park, Suresh Kumar Kailasa
In this work, a facile one-step green synthesis is developed for the fabrication of blue fluorescent copper nanocluster (Brahmi-CuNCs) from the extract of Bacopa monnieri (common name is Brahmi) via microwave method. The as-prepared Brahmi-CuNCs emit blue fluorescence at 452 nm when excited at 352 nm and show a quantum yield of 31.32%. Brahmi-derived blue fluorescent CuNCs acted as a probe for fluorescence sensing of dichlorvos. Upon the addition of dichlorvos, blue emission of Brahmi-CuNCs is gradually turned-off, favoring to establish calibration graph in the range of 0...
August 9, 2023: Luminescence: the Journal of Biological and Chemical Luminescence
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