keyword
https://read.qxmd.com/read/38607960/complex-genetic-interaction-between-glucose-sensor-hxk1-and-e3-sumo-ligase-siz1-in-regulating-plant-morphogenesis
#21
JOURNAL ARTICLE
Sanjay Singh Rawat, Shital Sandhya, Ashverya Laxmi
Sugar signaling forms the basis of metabolic activities crucial for an organism to perform essential life activities. In plants, sugars like glucose, mediate a wide range of physiological responses ranging from seed germination to cell senescence. This has led to the elucidation of cell signaling pathways involving glucose and its counterparts and the mechanism of how these sugars take control over major hormonal pathways such as auxin, ethylene, abscisic acid and cytokinin in Arabidopsis. Plants use HXK1(Hexokinase) as a glucose sensor to modulate changes in photosynthetic gene expression in response to high glucose levels...
December 31, 2024: Plant Signaling & Behavior
https://read.qxmd.com/read/38607439/genomic-basis-determining-root-system-architecture-in-maize
#22
JOURNAL ARTICLE
Pengcheng Li, Zhihai Zhang, Gui Xiao, Zheng Zhao, Kunhui He, Xiaohong Yang, Qingchun Pan, Guohua Mi, Zhongtao Jia, Jianbing Yan, Fanjun Chen, Lixing Yuan
A total of 389 and 344 QTLs were identified by GWAS and QTL mapping explaining accumulatively 32.2-65.0% and 23.7-63.4% of phenotypic variation for 14 shoot-borne root traits using more than 1300 individuals across multiple field trails. Efficient nutrient and water acquisition from soils depends on the root system architecture (RSA). However, the genetic determinants underlying RSA in maize remain largely unexplored. In this study, we conducted a comprehensive genetic analysis for 14 shoot-borne root traits using 513 inbred lines and 800 individuals from four recombinant inbred line (RIL) populations at the mature stage across multiple field trails...
April 12, 2024: TAG. Theoretical and Applied Genetics. Theoretische und Angewandte Genetik
https://read.qxmd.com/read/38606440/from-the-photosynthesis-to-hormone-biosynthesis-in-plants
#23
REVIEW
Hyong Woo Choi
Land plants produce glucose (C6H12O6) through photosynthesis by utilizing carbon dioxide (CO2), water (H2O), and light energy. Glucose can be stored in various polysaccharide forms for later use (e.g., sucrose in fruit, amylose in plastids), used to create cellulose, the primary structural component of cell walls, and immediately metabolized to generate cellular energy, adenosine triphosphate, through a series of respiratory pathways including glycolysis, the tricarboxylic acid cycle, and oxidative phosphorylation...
April 2024: Plant Pathology Journal
https://read.qxmd.com/read/38601600/from-genes-to-ecosystems-decoding-plant-tolerance-mechanisms-to-arsenic-stress
#24
REVIEW
Celeste Gracia-Rodriguez, Carlos Lopez-Ortiz, Gerardo Flores-Iga, Lizbeth Ibarra-Muñoz, Padma Nimmakayala, Umesh K Reddy, Nagamani Balagurusamy
Arsenic (As), a metalloid of considerable toxicity, has become increasingly bioavailable through anthropogenic activities, raising As contamination levels in groundwater and agricultural soils worldwide. This bioavailability has profound implications for plant biology and farming systems. As can detrimentally affect crop yield and pose risks of bioaccumulation and subsequent entry into the food chain. Upon exposure to As, plants initiate a multifaceted molecular response involving crucial signaling pathways, such as those mediated by calcium, mitogen-activated protein kinases, and various phytohormones (e...
April 15, 2024: Heliyon
https://read.qxmd.com/read/38601216/humic-acid-improves-wheat-growth-by-modulating-auxin-and-cytokinin-biosynthesis-pathways
#25
JOURNAL ARTICLE
Pramod Rathor, Punita Upadhyay, Aman Ullah, Linda Yuya Gorim, Malinda S Thilakarathna
Humic acids have been widely used for centuries to enhance plant growth and productivity. The beneficial effects of humic acids have been attributed to different functional groups and phytohormone-like compounds enclosed in macrostructure. However, the mechanisms underlying the plant growth-promoting effects of humic acids are only partially understood. We hypothesize that the bio-stimulatory effect of humic acids is mainly due to the modulation of innate pathways of auxin and cytokinin biosynthesis in treated plants...
February 2024: AoB Plants
https://read.qxmd.com/read/38600742/epigenetic-regulation-of-cyp72a385-mediated-metabolic-resistance-to-novel-auxin-herbicide-florpyrauxifen-benzyl-in-echinochloa-crus-galli-l-p-beauv
#26
JOURNAL ARTICLE
Hao Wang, Jiapeng Fang, Xiaoxu Li, Penglei Sun, Haitao Gao, Yanrong Ren, Ying Liu, Zhike Feng, Liyao Dong
Weed's metabolic resistance to herbicides has undermined the sustainability of herbicides and global food security. Notably, we identified an Echinochloa crus-galli (L.) P. Beauv population (R) that evolved resistance to the never-used florpyrauxifen-benzyl, in which florpyrauxifen-benzyl was metabolized faster than the susceptible E. crus-galli population (S). RNA-seq identified potential metabolism-related genes, EcCYP72A385 and EcCYP85A1 , whose expression in yeast exhibited the capacity to degrade florpyrauxifen-benzyl...
April 11, 2024: Journal of Agricultural and Food Chemistry
https://read.qxmd.com/read/38600459/genome-wide-identification-and-expression-analysis-of-arf-gene-family-in-embryonic-development-of-korean-pine-pinus-koraiensis
#27
JOURNAL ARTICLE
Yue Zhang, Wei Wu, Hailong Shen, Ling Yang
BACKGROUND: The Auxin Responsive Factor (ARF) family plays a crucial role in mediating auxin signal transduction and is vital for plant growth and development. However, the function of ARF genes in Korean pine (Pinus koraiensis), a conifer species of significant economic value, remains unclear. RESULTS: This study utilized the whole genome of Korean pine to conduct bioinformatics analysis, resulting in the identification of 13 ARF genes. A phylogenetic analysis revealed that these 13 PkorARF genes can be classified into 4 subfamilies, indicating the presence of conserved structural characteristics within each subfamily...
April 10, 2024: BMC Plant Biology
https://read.qxmd.com/read/38598328/transcriptional-dynamics-reveals-the-asymmetrical-events-underlying-graft-union-formation-in-pecan-carya-illinoinensis
#28
JOURNAL ARTICLE
Zhenghai Mo, Yan Zhang, Mengxin Hou, Longjiao Hu, Min Zhai, Jiping Xuan
Grafting is a widely used technique for pecan propagation, however, the background molecular events underlying grafting are still poorly understood. In our study, the graft partners during pecan graft union formation were separately sampled for RNA-seq, and the transcriptional dynamics were described via weighted gene co-expression network analysis (WGCNA). To reveal the main events underlying grafting, the correlations between modules and grafting traits were analyzed. Functional annotation showed that during the entire graft process, signal transduction was activated in the scion, while mRNA splicing was induced in the rootstock...
April 10, 2024: Tree Physiology
https://read.qxmd.com/read/38593590/multi-hormonal-analysis-and-aquaporins-regulation-reveal-new-insights-on-drought-tolerance-in-grapevine
#29
JOURNAL ARTICLE
Riccardo Braidotti, Rachele Falchi, Alberto Calderan, Alessandro Pichierri, Radomira Vankova, Petre I Dobrev, Michaela Griesser, Paolo Sivilotti
Disentangling the factors that foster the tolerance to water stress in plants could provide great benefits to crop productions. In a two-year experiment, two new PIWI (fungus resistant) grapevine varieties, namely Merlot Kanthus and Sauvignon Kretos (Vitis hybrids), grown in the field, were subjected to two different water regimes: weekly irrigated (IR) or not irrigated (NIR) for two months during the summer. The two varieties exhibited large differences in terms of performance under water-limiting conditions...
April 3, 2024: Journal of Plant Physiology
https://read.qxmd.com/read/38593486/arabidopsis-cdf3-transcription-factor-increases-carbon-and-nitrogen-assimilation-and-yield-in-trans-grafted-tomato-plants
#30
JOURNAL ARTICLE
Begoña Renau-Morata, Eva Jiménez-Benavente, Daniel Gil-Villar, Jaime Cebolla-Cornejo, Gara Romero-Hernández, Laura Carrillo, Jesús Vicente-Carbajosa, Joaquín Medina, Rosa Victoria Molina, Sergio González Nebauer
Grafting in tomato (Solanum lycopersicum L.) has mainly been used to prevent damage by soil-borne pathogens and the negative effects of abiotic stresses, although productivity and fruit quality can also be enhanced using high vigor rootstocks. In the context of a low nutrients input agriculture, the grafting of elite cultivars onto rootstocks displaying higher Nitrogen Use Efficiency (NUE) supports a direct strategy for yield maximization. In this study we assessed the use of plants overexpressing the Arabidopsis (AtCDF3) or tomato (SlCDF3) CDF3 genes, previously reported to increase NUE in tomato, as rootstocks to improve yield in the grafted scion under low N inputs...
April 7, 2024: Plant Physiology and Biochemistry: PPB
https://read.qxmd.com/read/38592943/comparative-transcriptome-analysis-reveals-inhibitory-roles-of-strigolactone-in-axillary-bud-outgrowth-in-ratoon-rice
#31
JOURNAL ARTICLE
Wenzhen Ku, Yi Su, Xiaoyun Peng, Ruozhong Wang, Haiou Li, Langtao Xiao
Axillary bud outgrowth, a key factor in ratoon rice yield formation, is regulated by several phytohormone signals. The regulatory mechanism of key genes underlying ratoon buds in response to phytohormones in ratoon rice has been less reported. In this study, GR24 (a strigolactone analogue) was used to analyze the ratooning characteristics in rice cultivar Huanghuazhan (HHZ). Results show that the elongation of the axillary buds in the first seasonal rice was significantly inhibited and the ratoon rate was reduced at most by up to 40% with GR24 treatment...
March 21, 2024: Plants (Basel, Switzerland)
https://read.qxmd.com/read/38592851/the-receptor-kinases-drus1-and-drus2-behave-distinctly-in-osmotic-stress-tolerance-by-modulating-the-root-system-architecture-via-auxin-signaling
#32
JOURNAL ARTICLE
Ammara Latif, Chen-Guang Yang, Lan-Xin Zhang, Xin-Yu Yang, Xin-Ye Liu, Lian-Feng Ai, Ali Noman, Cui-Xia Pu, Ying Sun
Receptor kinases DRUS1 ( Dwarf and Runtish Spikelet1 ) and DRUS2 are orthologues of the renowned Arabidopsis thaliana gene FERONIA , which play redundant roles in rice growth and development. Whether the two duplicated genes perform distinct functions in response to environmental stress is largely unknown. Here, we found that osmotic stress (OS) and ABA increased DRUS1 expression while decreasing DRUS2 . When subjected to osmotic stress, the increased DRUS1 in drus2 mutants suppresses the OsIAA repressors, resulting in a robust root system with an increased number of adventitious and lateral roots as well as elongated primary, adventitious, and lateral roots, conferring OS tolerance...
March 16, 2024: Plants (Basel, Switzerland)
https://read.qxmd.com/read/38592751/the-ldp1-mutation-affects-the-expression-of-auxin-related-genes-and-enhances-sam-size-in-rice
#33
JOURNAL ARTICLE
Zhanglun Sun, Tianrun Mei, Xuan Tan, Tingting Feng, Ruining Li, Sumei Duan, Heming Zhao, Yafeng Ye, Binmei Liu, Aifeng Zhou, Hao Ai, Xianzhong Huang
Panicle type is one of the important factors affecting rice ( Oryza sativa L.) yield, and the identification of regulatory genes in panicle development can provide significant insights into the molecular network involved. This study identified a large and dense panicle 1 ( ldp1 ) mutant produced from the Wuyunjing 7 (WYJ7) genotype, which displayed significant relative increases in panicle length, number of primary and secondary branches, number of grains per panicle, grain width, and grain yield per plant...
March 7, 2024: Plants (Basel, Switzerland)
https://read.qxmd.com/read/38592549/identification-of-micrornas-and-their-target-genes-associated-with-chasmogamous-and-cleistogamous-flower-development-in-viola-prionantha
#34
JOURNAL ARTICLE
Qiaoxia Li, Zuoming Zhang, Kunpeng Li, Yuanyuan Zhu, Kun Sun, Chaoying He
Differentially expressed microRNAs were found associated with the development of chasmogamous and cleistogamous flowers in Viola prionantha, revealing potential roles of microRNAs in the developmental evolution of dimorphic flowers. In Viola prionantha, chasmogamous (CH) flowers are induced by short daylight, while cleistogamous (CL) flowers are triggered by long daylight. How environmental factors and microRNAs (miRNAs) affect dimorphic flower formation remains unknown. In this study, small RNA sequencing was performed on CH and CL floral buds at different developmental stages in V...
April 9, 2024: Planta
https://read.qxmd.com/read/38590753/unraveling-the-genetics-of-heat-tolerance-in-chickpea-landraces-cicer-arietinum-l-using-genome-wide-association-studies
#35
JOURNAL ARTICLE
Thippeswamy Danakumara, Neeraj Kumar, Basavanagouda Siddanagouda Patil, Tapan Kumar, Chellapilla Bharadwaj, Pradeep Kumar Jain, Manduparambil Subramanian Nimmy, Nilesh Joshi, Swarup Kumar Parida, Shayla Bindra, Chittaranjan Kole, Rajeev K Varshney
Chickpea, being an important grain legume crop, is often confronted with the adverse effects of high temperatures at the reproductive stage of crop growth, drastically affecting yield and overall productivity. The current study deals with an extensive evaluation of chickpea genotypes, focusing on the traits associated with yield and their response to heat stress. Notably, we observed significant variations for these traits under both normal and high-temperature conditions, forming a robust basis for genetic research and breeding initiatives...
2024: Frontiers in Plant Science
https://read.qxmd.com/read/38589963/large-scale-analysis-of-the-arf-and-aux-iaa-gene-families-in-406-horticultural-and-other-plants
#36
JOURNAL ARTICLE
Shuyan Feng, Nan Li, Huilong Chen, Zhuo Liu, Chunjin Li, Rong Zhou, Yingchao Zhang, Rui Cao, Xiao Ma, Xiaoming Song
The auxin response factor (ARF) and auxin/indole-3-acetic acid (Aux/IAA) family of genes are central components of the auxin signaling pathway and play essential roles in plant growth and development. Their large-scale analysis and evolutionary trajectory of origin are currently not known. Here, we identified the corresponding ARF and Aux/IAA family members and performed a large-scale analysis by scanning 406 plant genomes. The results showed that the ARF and Aux/IAA gene families originated from charophytes...
April 9, 2024: Mol Hortic
https://read.qxmd.com/read/38587829/correction-to-mediator-subunit17-integrates-jasmonate-and-auxin-signaling-pathways-to-regulate-thermomorphogenesis
#37
(no author information available yet)
No abstract text is available yet for this article.
April 8, 2024: Plant Physiology
https://read.qxmd.com/read/38583315/paradoxical-effects-of-nanomaterials-on-plants-phytohormonal-perspective-exposes-hidden-risks-amidst-potential-benefits
#38
REVIEW
Parammal Faseela, Joy M Joel, Riya Johnson, Edappayil Janeeshma, Puthukkolli P Sameena, Akhila Sen, Jos T Puthur
The rapid growth of nanotechnology has led to the production of a significant amount of engineered nanomaterials (NMs), raising concerns about their impact on various domains. This study investigates the negative interactions between NMs and phytohormones in plants, revealing the changes in signaling crosstalk, integrated responses and ecological repercussions caused by NM pollution. Phytohormones, which include auxins, cytokinins, gibberellins, abscisic acid, ethylene, jasmonic acid, salicylic acid and brassinosteroids are essential for plant growth, development, and stress responses...
April 4, 2024: Plant Physiology and Biochemistry: PPB
https://read.qxmd.com/read/38582597/octanal-enhances-disease-resistance-in-postharvest-citrus-fruit-by-the-biosynthesis-and-metabolism-of-aromatic-amino-acids
#39
JOURNAL ARTICLE
Bin Duan, Yonghua Zhang, Zhao Feng, Zhaoguo Liu, Nengguo Tao
Octanal was found to be able to reduce green mold incidence in citrus fruit by a defense response mechanism. However, the underlying mechanism remains largely unclear. Herein, the metabolomics, RNA-seq and biochemical analyses were integrated to explore the effect of octanal on disease resistance in harvested citrus fruit. Results showed that octanal fumigation at 40 μL L-1 was effective in controlling citrus green mold. Metabolomics analysis showed that octanal mainly led to the accumulation of some plant hormones including methyl jasmonate, abscisic acid, indole-3-butyric acid, indoleacetic acid (IAA), salicylic acid, and gibberellic acid and many phenylpropanoid metabolites including cinnamyl alcohol, hesperidin, dihydrokaempferol, vanillin, quercetin-3-O-malonylglucoside, curcumin, naringin, chrysin, coniferin, calycosin-7-O-β-D-glucoside, trans-cinnamaldehyde, and 4',5,7-trihydroxy-3,6-dimethoxyflavone...
March 2024: Pesticide Biochemistry and Physiology
https://read.qxmd.com/read/38582170/biomass-ash-as-soil-fertilizers-supercharging-biomass-accumulation-by-shifting-auxin-distribution
#40
JOURNAL ARTICLE
Ruibao Wang, Xinan ZongGuo, Ripeng Hu, Jian Wu, Yongxian Xu, Zhiyong Yu, Liping Yang, Guoyong Yan, Jiahong Liu, Yali Zhang
Growing quantities of biomass ashes (phyto-ashs) are currently produced worldwide due to the increasing biomass consumption in energy applications. Utilization of phyto-ash in agriculture is environmentally friendly solution. However, mechanisms involving the coordination of carbon metabolism and distribution in plants and soil amendment are not well known. In the present study, tobacco plants were chemically-fertilized with or without 2‰ phyto-ash addition. The control had sole chemical fertilizer; for two phyto-ash treatments, the one (T1) received comparable levels of nitrogen, phophorus, and potassium from phyto-ash and fertilizers as the control and another (T2) had 2‰ of phyto-ash and the same rates of fertilizers as the control...
April 4, 2024: Chemosphere
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