keyword
https://read.qxmd.com/read/38635460/jointless-maintains-inflorescence-meristem-identity-in-tomato
#21
JOURNAL ARTICLE
Samuel Huerga-Fernández, Nathalie Detry, Beata Orman-Ligeza, Frédéric Bouché, Marc Hanikenne, Claire Périlleux
JOINTLESS (J) was isolated in tomato (Solanum lycopersicum) from mutants lacking a flower pedicel abscission zone (AZ), and encodes a MADS-box protein of the SVP/AGL24 sub-family. The loss of J function also causes the return to leaf initiation in the inflorescences, indicating a pivotal role in inflorescence meristem identity. Here, we compared j mutants in different accessions that exhibit either an indeterminate shoot growth, producing regular sympodial segments, or a determinate shoot growth, due to the reduction of sympodial segments and causal mutation of the SELF PRUNING (SP) gene...
April 18, 2024: Plant & Cell Physiology
https://read.qxmd.com/read/38634973/insights-into-plant-regeneration-cellular-pathways-and-dna-methylation-dynamics
#22
REVIEW
Seunga Lee, Young Seo Park, Ji Hoon Rhee, Hyojeong Chu, Jennifer M Frost, Yeonhee Choi
Plants, known for their immobility, employ various mechanisms against stress and damage. A prominent feature is the formation of callus tissue-a cellular growth phenomenon that remains insufficiently explored, despite its distinctive cellular plasticity compared to vertebrates. Callus formation involves dedifferentiated cells, with a subset attaining pluripotency. Calluses exhibit an extraordinary capacity to reinitiate cellular division and undergo structural transformations, generating de novo shoots and roots, thereby developing into regenerated plants-a testament to the heightened developmental plasticity inherent in plants...
April 18, 2024: Plant Cell Reports
https://read.qxmd.com/read/38634646/scaling-of-leaf-area-with-biomass-in-trees-reconsidered-constant-metabolically-active-sapwood-volume-per-unit-leaf-area-with-height-growth
#23
JOURNAL ARTICLE
Eapsa Berry, Tommaso Anfodillo, Matiss Castorena, Alberto Echeverría, Mark E Olson
Hypoallometric (slope<1) scaling between metabolic rate and body mass is often regarded as near-universal across organisms. However, there are compelling reasons to question hypoallometric scaling in woody plants, where metabolic rate=leaf area. This leaf area must provide carbon to the metabolically active sapwood volume (VMASW). Within populations of a species, variants in which VMASW increases per unit leaf area with height growth (e.g. ⅔ or ¾ scaling) would have proportionally less carbon for growth and reproduction as they grow taller...
April 18, 2024: Journal of Experimental Botany
https://read.qxmd.com/read/38633457/glutamine-as-sole-nitrogen-source-prevents-induction-of-nitrate-transporter-gene-nrt2-4-and-affects-amino-acid-metabolism-in-arabidopsis
#24
JOURNAL ARTICLE
Nataliia Svietlova, Liza Zhyr, Michael Reichelt, Veit Grabe, Axel Mithöfer
Plants assimilate inorganic nitrogen (N) to glutamine. Glutamine is the most abundant amino acid in most plant species, the N-supplying precursor of all N-containing compounds in the cell and the first organic nitrogen molecule formed from inorganic nitrogen taken up by the roots. In addition to its role in plant nutrition, glutamine most likely also has a function as a signaling molecule in the regulation of nitrogen metabolism. We investigated whether glutamine influences the high-affinity transporter system for nitrate uptake...
2024: Frontiers in Plant Science
https://read.qxmd.com/read/38632708/validation-of-the-lead-in-method-in-a-practical-shooting-scenario
#25
JOURNAL ARTICLE
Maddie Keldson, Eugene Liscio
The ability to determine bullet trajectories after a shooting incident can allow investigators to reconstruct the locations of individuals and the sequence of events that took place. By using trajectory rods, investigators can be provided with an immediate visual estimate as to what the path of the projectile may have been. In certain instances, the use of the probing method with trajectory rods is not appropriate due to their being a single, thin target material, or no secondary bullet impact site. In these cases, other methods such as the lead-in or the ellipse method may be useful...
April 17, 2024: Journal of Forensic Sciences
https://read.qxmd.com/read/38632193/exploring-bacillus-mycoides-pm35-efficacy-in-enhancing-rice-oryza-sativa-l-response-to-different-types-of-microplastics-through-gene-regulation-and-cellular-fractionation
#26
JOURNAL ARTICLE
Dalal Nasser Binjawhar, Rana M Alshegaihi, Aishah Alatawi, Muneefah Abdullah Alenezi, Abida Parveen, Muhammad Adnan, Baber Ali, Khalid Ali Khan, Shah Fahad, Eman Fayad
Soil contamination with microplastics (MPs) is a persistent threat to crop production worldwide. With a wide range of MP types, including polystyrene (PS), polyvinyl chloride (PVC) and polyethylene (PE), contaminating our environment, it is important to understand their impact on agricultural productivity. The present study was conducted to investigate the effects of different types of MPs (PS, PVC and PE) on various aspects of plant growth. Specifically, we examined growth and biomass, photosynthetic pigments, gas exchange attributes, oxidative stress responses, antioxidant compound activity (both enzymatic and non-enzymatic), gene expression, proline metabolism, the AsA-GSH cycle and cellular fractionation and nutritional status, in different parts of rice (Oryza sativa L...
April 17, 2024: Environmental Science and Pollution Research International
https://read.qxmd.com/read/38631646/water-reuse-of-treated-domestic-wastewater-in-agriculture-effects-on-tomato-plants-soil-nutrient-availability-and-microbial-community-structure
#27
JOURNAL ARTICLE
Sofia Maria Muscarella, Rosa Alduina, Luigi Badalucco, Fanny Claire Capri, Ylenia Di Leto, Giuseppe Gallo, Vito Armando Laudicina, Sara Paliaga, Giorgio Mannina
The reuse of treated wastewater (TWW) in agriculture for crop irrigation is desirable. Crop responses to irrigation with TWW depend on the characteristics of TWW and on intrinsic and extrinsic soil properties. The aim of this study was to assess the response of tomato (Solanum lycopersicum L.) cultivated in five different soils to irrigation with TWW, compared to tap water (TAP) and an inorganic NPK solution (IFW). In addition, since soil microbiota play many important roles in plant growth, a metataxonomic analysis was performed to reveal the prokaryotic community structures of TAP, TWW and IFW treated soil, respectively...
April 15, 2024: Science of the Total Environment
https://read.qxmd.com/read/38631627/cu-ii-directed-self-assembly-of-fullerenols-to-ameliorate-copper-stress-in-maize-seedlings
#28
JOURNAL ARTICLE
Chenjie Fan, Qingyuan Liang, Yan Wang, Peimei Chen, Jiakai Wu, Qingnan Wu, Shijun Jiang, Yang Zhou, Rui He, Fuju Tai
Widespread use of copper-based agrochemical may cause copper excessive accumulation in agricultural soil to seriously threaten crop production. Recently, fullerenols are playing important roles in helping crops build resistance to abiotic stresses by giving ingenious and successful resolutions. However, there is a lack of knowledge on their beneficial effects in crops under stresses induced by heavy metals. Herein, the visual observation of Cu2+ -mediated assembly of fullerenols via electrostatic and coordination actions was carried out in vitro, showing that water-soluble nanocomplexes and water-insoluble cross-linking nanohybrids were selectively fabricated by precisely adjusting feeding ratios of fullerenols and CuSO4 ...
April 15, 2024: Science of the Total Environment
https://read.qxmd.com/read/38631412/investigating-the-in-vivo-biocontrol-and-growth-promoting-efficacy-of-bacillus-sp-and-pseudomonas-fluorescens-against-olive-knot-disease
#29
JOURNAL ARTICLE
Avin Omer Ali, Hayman Kakakhan Awla, Tavga Sulaiman Rashid
Olive knot disease, caused by Pseudomonas savastanoi, poses a significant threat to olive cultivation, necessitating sustainable alternatives to conventional chemical control. This study investigates the biocontrol effectiveness of Bacillus sp. (Og2) and Pseudomonas fluorescens (Oq5), alone and combined, against olive knot disease. Olive plants were sprayed with 5 ml of the bacteria until uniformly wet, with additional application to the soil surface. Pathogen injection occurred 24 hours later. The results revealed that treating plants with a combination of both bacteria provided the highest reduction in disease severity (89...
April 15, 2024: Microbial Pathogenesis
https://read.qxmd.com/read/38631255/metal-tolerance-protein-csmtp4-has-dual-functions-in-maintaining-zinc-homeostasis-in-tea-plant
#30
JOURNAL ARTICLE
Qinghui Li, Xuyang Zhang, Peiling Zhao, Yuqiong Chen, Dejiang Ni, Mingle Wang
Plants have evolved a series of zinc (Zn) homeostasis mechanisms to cope with the fluctuating Zn in the environment. How Zn is taken up, translocated and tolerate by tea plant remains unknown. In this study, on the basis of RNA-Sequencing, we isolated a plasma membrane-localized Metal Tolerance Protein (MTP) family member CsMTP4 from Zn-deficient tea plant roots and investigated its role in regulation of Zn homeostasis in tea plant. Heterologous expression of CsMTP4 specifically enhanced the tolerance of transgenic yeast to Zn excess...
April 16, 2024: Journal of Hazardous Materials
https://read.qxmd.com/read/38630900/the-gras-transcription-factor-cstl-regulates-tendril-formation-in-cucumber
#31
JOURNAL ARTICLE
Junjun Shen, Yanxin Jiang, Jian Pan, Linhan Sun, Qingqing Li, Wenjing He, Piaoyun Sun, Bosi Zhao, Hongjiao Zhao, Xubo Ke, Yalu Guo, Tongwen Yang, Zheng Li
Cucumber (Cucumis sativus, Cs) tendrils are slender vegetative organs that typically require manual removal to ensure orderly growth during greenhouse cultivation. Here, we identified cucumber tendril-less (tl), a Tnt1 retrotransposon-induced insertion mutant lacking tendrils. Map-based cloning identified the mutated gene, CsaV3_3G003590, which we designated as CsTL, which is homologous to Arabidopsis thaliana LATERAL SUPPRESSOR (AtLAS). Knocking out CsTL repressed tendril formation but did not affect branch initiation, whereas overexpression of CsTL resulted in the formation of two or more tendrils in one leaf axil...
April 17, 2024: Plant Cell
https://read.qxmd.com/read/38630866/3d-reconstruction-and-multi-omics-analysis-reveal-a-unique-pattern-of-embryogenesis-in-ginkgo-biloba
#32
JOURNAL ARTICLE
Lingyu Ma, Zijian Hu, Weiwei Shen, Yingying Zhang, Guangchao Wang, Bang Chang, Jinkai Lu, Yaning Cui, Huimin Xu, Yun Feng, Biao Jin, Xi Zhang, Li Wang, Jinxing Lin
Ginkgo (Ginkgo biloba L.) is one of the earliest extant species in seed plant phylogeny. Embryo development patterns can provide fundamental evidence for the origin, evolution, and adaptation of seeds. However, the architectural and morphological dynamics during embryogenesis in Ginkgo biloba (G. biloba) remain elusive. Herein, we obtained over 2200 visual slices from three stages of embryo development using micro-computed tomography imaging with improved staining methods. Based on 3D spatio-temporal pattern analysis, we found that a shoot apical meristem with seven highly differentiated leaf primordia, including apical and axillary leaf buds, is present in mature Ginkgo embryos...
April 17, 2024: Plant Physiology
https://read.qxmd.com/read/38630182/purification-and-characterization-of-desferrioxamine-b-of-pseudomonas-fluorescens-and-its-application-to-improve-oil-content-nutrient-uptake-and-plant-growth-in-peanuts
#33
JOURNAL ARTICLE
S Nithyapriya, Lalitha Sundaram, Sakthi Uma Devi Eswaran, Kahkashan Perveen, Najla A Alshaikh, R Z Sayyed, Andrea Mastinu
Microorganisms produce siderophores, which are low-molecular-weight iron chelators when iron availability is limited. The present analyzed the role of LNPF1 as multifarious PGPR for improving growth parameters and nutrient content in peanut and soil nutrients. Such multifarious PGPR strains can be used as effective bioinoculants for peanut farming. In this work, rhizosphere bacteria from Zea mays and Arachis hypogaea plants in the Salem area of Tamil Nadu, India, were isolated and tested for biochemical attributes and characteristics that stimulate plant growth, such as the production of hydrogen cyanide, ammonia (6 µg/mL), indole acetic acid (76...
April 17, 2024: Microbial Ecology
https://read.qxmd.com/read/38630172/transcriptomic-analysis-of-hub-genes-regulating-albinism-in-light-and-temperature-sensitive-albino-tea-cultivars-zhonghuang-1-and-zhonghuang-2
#34
JOURNAL ARTICLE
Lu Wang, Taimei Di, Nana Li, Jing Peng, Yedie Wu, Mingming He, Xinyuan Hao, Jianyan Huang, Changqing Ding, Yajun Yang, Xinchao Wang
Albino tea cultivars have high economic value because their young leaves contain enhanced free amino acids that improve the quality and properties of tea. Zhonghuang 1 (ZH1) and Zhonghuang 2 (ZH2) are two such cultivars widely planted in China; however, the environmental factors and molecular mechanisms regulating their yellow-leaf phenotype remain unclear. In this study, we demonstrated that both ZH1 and ZH2 are light- and temperature-sensitive. Under natural sunlight and low-temperature conditions, their young shoots were yellow with decreased chlorophyll and an abnormal chloroplast ultrastructure...
April 17, 2024: Plant Molecular Biology
https://read.qxmd.com/read/38629678/the-physiological-quality-of-vigna-unguiculata-l-seeds-shows-tolerance-to-salinity
#35
JOURNAL ARTICLE
F H A Andrade, R T Silva, M A Barbosa Neto, S F Silva, A F L Cardoso, J S Lima, J H B Silva, A F S Cruz, M I B Clemente, E A Onias, W E Pereira, J T L Chaves, S G S Borges, A M F Oliveira, P C A Linhares, R R Silva
Salinity reduces feijão-caupi production, and the search for tolerant varieties becomes important within the agricultural context, as, in addition to being used in the field, they can be used in genetic improvement. The objective was to for a identify variety that is tolerant to salinity considering the physiological quality of seeds and seedling growth. A 2 × 4 factorial scheme was used, referring to the varieties Pingo-de-ouro and Coruja, and four electrical conductivities of water (0; 3.3; 6.6 and 9...
2024: Brazilian Journal of Biology
https://read.qxmd.com/read/38629564/-effects-of-biochar-on-growth-and-pollutant-accumulation-of-lettuce-in-soil-co-contaminated-with-tetracycline-and-copper
#36
JOURNAL ARTICLE
Chen-Ge Zheng, Huan-Huan Pei, Ya-Shan Zhang, Jia-Xin Li, Fen-Wu Liu, Xing-Xing Qiao, Jun-Mei Qin
Through lettuce potting experiments, the effects of different types of biochar (apple branch, corn straw, and modified sorghum straw biochar with phosphoric acid modification) on lettuce growth under tetracycline (TC) and copper (Cu) co-pollution were investigated. The results showed that compared with those under CK, the addition of biochar treatment significantly increased the plant height, root length, shoot fresh weight, and root fresh weight of lettuce ( P &lt; 0.05). The addition of different biochars significantly increased the nitrate nitrogen, chlorophyll, and soluble protein content in lettuce physiological indicators to varying degrees, while also significantly decreasing the levels of malondialdehyde, proline content, and catalase activity...
May 8, 2024: Huan Jing Ke Xue= Huanjing Kexue
https://read.qxmd.com/read/38629324/far-red-light-enrichment-affects-gene-expression-and-architecture-as-well-as-growth-and-photosynthesis-in-rice
#37
JOURNAL ARTICLE
Martina Huber, Hugo Jan de Boer, Andrés Romanowski, Hans van Veen, Sara Buti, Parvinderdeep S Kahlon, Jannes van der Meijden, Jeroen Koch, Ronald Pierik
Plants use light as a resource and signal. Photons within the 400-700 nm waveband are considered photosynthetically active. Far-red photons (FR, 700-800 nm) are used by plants to detect nearby vegetation and elicit the shade avoidance syndrome. In addition, FR photons have also been shown to contribute to photosynthesis, but knowledge about these dual effects remains scarce. Here, we study shoot-architectural and photosynthetic responses to supplemental FR light during the photoperiod in several rice varieties...
April 17, 2024: Plant, Cell & Environment
https://read.qxmd.com/read/38629305/first-report-of-leucinodes-africensis-and-leucinodes-laisalis-on-solanum-aethiopicum-and-solanum-melongena-in-farmer-s-fields-in-southern-ghana
#38
JOURNAL ARTICLE
Ken Okwae Fening, Stanley Osafo Okyere, Ethelyn Echep Forchibe, Babatoundé Ferdinand Rodolphe Layodé, Tegbe Enyonam Richmond, Lakpo Koku B A Agboyi, Kwame Afreh-Nuamah, Francis Onono Wamonje
The eggplant fruit and shoot borer (EFSB) is a devastating pest of eggplants ( Solanum aethiopicum L. and Solanum melongena L.) in Ghana, causing significant economic losses. Although initially thought to be the Leucinodes orbonalis Guenee species found in Asia, recent European and Mediterranean Plant Protection Organization reports suggest its absence in Africa. However, eight Leucinodes species have been recently described in Africa, including two new species, Leucinodes africensis sp. n. and Leucinodes laisalis Walker, which were intercepted in eggplant fruits exported from Ghana to the United Kingdom...
April 17, 2024: Bulletin of Entomological Research
https://read.qxmd.com/read/38628363/-rhizobium-symbiosis-improves-amino-acid-and-secondary-metabolite-biosynthesis-of-tungsten-stressed-soybean-glycine-max
#39
JOURNAL ARTICLE
Julian Preiner, Irene Steccari, Eva Oburger, Stefanie Wienkoop
The industrially important transition metal tungsten (W) shares certain chemical properties with the essential plant micronutrient molybdenum and inhibits the activity of molybdoenzymes such as nitrate reductase, impacting plant growth. Furthermore, tungsten appears to interfere with metabolic processes on a much wider scale and to trigger common heavy metal stress response mechanisms. We have previously found evidence that the tungsten stress response of soybeans ( Glycine max ) grown with symbiotically associated N2 -fixing rhizobia ( Bradyrhizobium japonicum ) differs from that observed in nitrogen-fertilized soy plants...
2024: Frontiers in Plant Science
https://read.qxmd.com/read/38627664/impact-of-cobalt-and-proline-foliar-application-for-alleviation-of-salinity-stress-in-radish
#40
JOURNAL ARTICLE
Hira Inayat, Hassan Mehmood, Subhan Danish, Sulaiman Ali Alharbi, Mohammad Javed Ansari, Rahul Datta
Salinity stress ranks among the most prevalent stress globally, contributing to soil deterioration. Its negative impacts on crop productivity stem from mechanisms such as osmotic stress, ion toxicity, and oxidative stress, all of which impede plant growth and yield. The effect of cobalt with proline on mitigating salinity impact in radish plants is still unclear. That's why the current study was conducted with aim to explore the impact of different levels of Co and proline on radish cultivated in salt affected soils...
April 16, 2024: BMC Plant Biology
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