keyword
https://read.qxmd.com/read/38623424/microgreens-and-novel-non-thermal-seed-germination-techniques-for-sustainable-food-systems-a-review
#21
REVIEW
Mulakala Geeta Bhabani, Rafeeya Shams, Kshirod Kumar Dash
There are a number of cutting-edge techniques implemented in the germination process, including high pressure processing, ultrasonic, ultraviolet, light, non-thermal plasma, magnetic field, microwave radiation, electrolyzed oxidizing water, and plasma activated water. The influence of these technological advances on seed germination procedure is addressed in this review. The use of these technologies has several benefits, including the enhancement of plant growth rate and the modulation of bioactive chemicals like ABA, protein, and peroxidase concentrations, as well as the suppression of microbial development...
June 2024: Food Science and Biotechnology
https://read.qxmd.com/read/38622442/allantoate-amidohydrolase-osaah-is-essential-for-preharvest-sprouting-resistance-in-rice
#22
JOURNAL ARTICLE
Ting Xie, Wenling Hu, Jiaxin Shen, Jiangyu Xu, Zeyuan Yang, Xinyi Chen, Peiwen Zhu, Mingming Chen, Sunlu Chen, Hongsheng Zhang, Jinping Cheng
Preharvest sprouting (PHS) is an undesirable trait that decreases yield and quality in rice production. Understanding the genes and regulatory mechanisms underlying PHS is of great significance for breeding PHS-resistant rice. In this study, we identified a mutant, preharvest sprouting 39 (phs39), that exhibited an obvious PHS phenotype in the field. MutMap+ analysis and transgenic experiments demonstrated that OsAAH, which encodes allantoate amidohydrolase, is the causal gene of phs39 and is essential for PHS resistance...
April 16, 2024: Rice
https://read.qxmd.com/read/38621933/-cloning-and-expression-pattern-analysis-of-abscisic-acid-receptor-gene-mcpyl4-in-mentha-canadensis
#23
JOURNAL ARTICLE
Wei-Lin Tang, Xia Wang, Qin Kang, Ke Wang, Dan-Dan Peng, Yi-Kai Sun, Wei Wu, Kai Hou, Dong-Ju Feng, Dong-Bei Xu
Mentha canadensis is a traditional Chinese herb with great medicinal and economic value. Abscisic acid(ABA) receptor PYLs have important roles in plant growth and development and response to adversity. The M. canadensis McPYL4 gene was cloned, and its protein characteristics, gene expression, and protein interactions were analyzed, so as to provide genetic resources for genetic improvement and molecular design breeding for M. canadensis resistance. Therefore, the protein characteristics, subcellular localization, gene expression pattern, and protein interactions of McPYL4 were analyzed by bioinformatics analysis, transient expression of tobacco leaves, RT-qPCR, and yeast two-hybrid(Y2H) techniques...
March 2024: Zhongguo Zhong Yao za Zhi, Zhongguo Zhongyao Zazhi, China Journal of Chinese Materia Medica
https://read.qxmd.com/read/38621573/genome-wide-identification-and-characterization-of-the-sweet-orange-citrus-sinensis-basic-helix-loop-helix-bhlh-family-reveals-a-role-for-csbhlh085-as-a-regulator-of-citrus-bacterial-canker-resistance
#24
JOURNAL ARTICLE
Xin Huang, Liyan Su, Baohang Xian, Qiyuan Yu, Miao Zhang, Jie Fan, Chenxi Zhang, Yiqi Liu, Houzheng He, Xin Zhong, Man Li, Shanchun Chen, Yongrui He, Qiang Li
Citrus bacterial canker (CBC) is a harmful bacterial disease caused by Xanthomonas citri subsp. citri (Xcc), negatively impacting citrus production worldwide. The basic helix-loop-helix (bHLH) transcription factor family plays crucial roles in plant development and stress responses. This study aimed to identify and annotate bHLH proteins encoded in the Citrus sinensis genome and explore their involvement and functional importance in regulating CBC resistance. A total of 135 putative CsbHLHs TFs were identified and categorized into 16 subfamilies...
April 16, 2024: International Journal of Biological Macromolecules
https://read.qxmd.com/read/38620011/bnaabf3-and-bnamyb44-regulate-the-transcription-of-zeaxanthin-epoxidase-genes-in-carotenoid-and-abscisic-acid-biosynthesis
#25
JOURNAL ARTICLE
Shenhua Ye, Yingying Huang, Tiantian Ma, Xiaowei Ma, Rihui Li, Jinxiong Shen, Jing Wen
Zeaxanthin epoxidase (ZEP) is a key enzyme that catalyzes the conversion of zeaxanthin to violaxanthin in the carotenoid and abscisic acid (ABA) biosynthesis pathways. The rapeseed (Brassica napus) genome has 4 ZEP (BnaZEP) copies that are suspected to have undergone subfunctionalization, yet the 4 genes' underlying regulatory mechanisms remain unknown. Here, we genetically confirmed the functional divergence of the gene pairs BnaA09.ZEP/BnaC09.ZEP and BnaA07.ZEP/BnaC07.ZEP, which encode enzymes with tissue-specific roles in carotenoid and ABA biosynthesis in flowers and leaves, respectively...
April 15, 2024: Plant Physiology
https://read.qxmd.com/read/38619157/abscisic-acid-reduced-methoxypyrazines-concentration-and-its-derived-unpleasant-odors-in-cabernet-sauvignon-grapes-and-wines
#26
JOURNAL ARTICLE
Xianghan Cheng, Feifei Liu, Xiaolei Liu, Xuan Yang
BACKGROUND: The influences of abscisic acid (ABA) applications on precursors and genes expression in 3-alkyl-2-methoxypyrazines (MPs) biosynthetic pathway, MPs concentration and sensory evaluation of its derived peculiar odors in Cabernet Sauvignon grapes and wines were studied. At the vineyard, ABA solution with 25, 100 and 400 mg/L (AT1, AT2 and AT3, respectively) and an aqueous solution (Control) were sprayed three times from veraison to pre-harvest. RESULTS: Higher concentration ABA applications (AT2 and AT3) in grapes could significantly reduce MPs concentration and its derived peculiar odors in grapes and wines than lower concentration ABA application (AT1) and control, with AT2 application having the strongest effect...
April 15, 2024: Journal of the Science of Food and Agriculture
https://read.qxmd.com/read/38618362/replicative-study-of-the-impacts-of-applied-behavior-analysis-on-target-behaviors-in-individuals-with-autism-using-repeated-measures
#27
JOURNAL ARTICLE
Tami Peterson, Jessica Dodson, Frederick Strale
Background  The effectiveness of interventions based on applied behavior analysis (ABA) for individuals with autism has been well documented in numerous meta-analyses, systematic reviews, and cost-benefit analyses. However, an observed 'efficacy-effectiveness gap' exists, which can be attributed to various factors. This third replication study, therefore, has significant implications for the field. By assessing the impact of ABA treatment, specifically involving discrete trial training and mass trials, within a naturalistic environment, the study provides valuable insights that can inform and improve the delivery of ABA treatments in real-world settings...
March 2024: Curēus
https://read.qxmd.com/read/38616485/hypoxia-reshapes-arabidopsis-root-architecture-by-integrating-erf-vii-factor-response-and-abscisic-acid-homoeostasis
#28
JOURNAL ARTICLE
Emese Eysholdt-Derzsó, Bettina Hause, Margret Sauter, Romy R Schmidt-Schippers
Oxygen limitation (hypoxia), arising as a key stress factor due to flooding, negatively affects plant development. Consequently, maintaining root growth under such stress is crucial for plant survival, yet we know little about the root system's adaptions to low-oxygen conditions and its regulation by phytohormones. In this study, we examine the impact of hypoxia and, herein, the regulatory role of group VII ETHYLENE-RESPONSE FACTOR (ERFVII) transcription factors on root growth in Arabidopsis. We found lateral root (LR) elongation to be actively maintained by hypoxia via ERFVII factors, as erfVII seedlings possess hypersensitivity towards hypoxia regarding their LR growth...
April 14, 2024: Plant, Cell & Environment
https://read.qxmd.com/read/38615983/overexpression-of-rhodiola-crenulata-glutathione-peroxidase-5-increases-cold-tolerance-and-enhances-the-pharmaceutical-value-of-the-hairy-roots
#29
JOURNAL ARTICLE
Kai Hou, Lu Cao, Wen Li, Zhi-Hui Fang, Daqiang Sun, Zhigang Guo, Lipeng Zhang
Rhodiola crenulata, a plant of great medicinal value found in cold high-altitude regions, has been excessively exploited due to the difficulty in cultivation. Understanding Rhodiola crenulata's adaptation mechanisms to cold environment can provide a theoretical basis for artificial breeding. Glutathione peroxidases (GPXs), critical enzymes found in plants, play essential roles in antioxidant defense through the ascorbate-glutathione cycle. However, it is unknown whether GPX5 contributes to Rhodiola crenulata's cold tolerance...
April 12, 2024: Gene
https://read.qxmd.com/read/38615446/genome-wide-identification-of-the-cngc-gene-family-and-negative-regulation-of-drought-tolerance-by-hvcngc3-and-hvcngc16-in-transgenic-arabidopsis-thaliana
#30
JOURNAL ARTICLE
Li Zhang, Yongmei Cui, Likun An, Jie Li, Youhua Yao, Yixiong Bai, Xin Li, Xiaohua Yao, Kunlun Wu
Cyclic nucleotide-gated ion channels (CNGCs), as non-selective cation channels, play essential roles in plant growth and stress responses. However, they have not been identified in Qingke (Hordeum vulgare L.). Here, we performed a comprehensive genome-wide identification and function analysis of the HvCNGC gene family to determine its role in drought tolerance. Phylogenetic analysis showed that 27 HvCNGC genes were divided into four groups and unevenly located on seven chromosomes. Transcription analysis revealed that two closely related members of HvCNGC3 and HvCNGC16 were highly induced and the expression of both genes were distinctly different in two extremely drought-tolerant materials...
April 9, 2024: Plant Physiology and Biochemistry: PPB
https://read.qxmd.com/read/38615443/aluminium-tolerance-and-stomata-operation-towards-optimising-crop-performance-in-acid-soil
#31
REVIEW
Ce Guo, Sergey Shabala, Zhong-Hua Chen, Meixue Zhou, Chenchen Zhao
Stomatal operation is crucial for optimising plant water and gas exchange and represents a major trait conferring abiotic stress tolerance in plants. About 56% of agricultural land around the globe is classified as acidic, and Al toxicity is a major limiting factor affecting plant performance in such soils. While most of the research work in the field discusses the impact of major abiotic stresses such as drought or salinity on stomatal operation, the impact of toxic metals and, specifically aluminium (Al) on stomatal operation receives much less attention...
April 10, 2024: Plant Physiology and Biochemistry: PPB
https://read.qxmd.com/read/38615439/molecular-mechanism-of-abscisic-acid-signaling-response-factor-vcbzip55-to-promote-anthocyanin-biosynthesis-in-blueberry-vaccinium-corymbosum
#32
JOURNAL ARTICLE
Qi Tang, Xuan Wang, Shurui Ma, Shutian Fan, Fumei Chi, Yang Song
A high content of anthocyanin in blueberry (Vaccinium corymbosum) is an important indicator to evaluate fruit quality. Abscisic acid (ABA) can promote anthocyanin biosynthesis, but since the molecular mechanism is unclear, clarifying the mechanism will improve for blueberry breeding and cultivation regulation. VcbZIP55 regulating anthocyanin synthesis in blueberry were screened and mined using the published Isoform-sequencing, RNA-Seq and qRT-PCR at different fruit developmental stages. Blueberry genetic transformation and transgenic experiments confirmed that VcbZIP55 could promote anthocyanin biosynthesis in blueberry adventitious buds, tobacco leaves, blueberry leaves and blueberry fruit...
April 13, 2024: Plant Physiology and Biochemistry: PPB
https://read.qxmd.com/read/38615015/a-plant-nlr-receptor-employs-aba-central-regulator-pp2c-snrk2-to-activate-antiviral-immunity
#33
JOURNAL ARTICLE
Shen Huang, Chunli Wang, Zixuan Ding, Yaqian Zhao, Jing Dai, Jia Li, Haining Huang, Tongkai Wang, Min Zhu, Mingfeng Feng, Yinghua Ji, Zhongkai Zhang, Xiaorong Tao
Defence against pathogens relies on intracellular nucleotide-binding, leucine-rich repeat immune receptors (NLRs) in plants. Hormone signaling including abscisic acid (ABA) pathways are activated by NLRs and play pivotal roles in defence against different pathogens. However, little is known about how hormone signaling pathways are activated by plant immune receptors. Here, we report that a plant NLR Sw-5b mimics the behavior of the ABA receptor and directly employs the ABA central regulator PP2C-SnRK2 complex to activate an ABA-dependent defence against viral pathogens...
April 13, 2024: Nature Communications
https://read.qxmd.com/read/38614632/geographical-accessibility-to-functional-emergency-obstetric-care-facilities-in-urban-nigeria-using-closer-to-reality-travel-time-estimates-a-population-based-spatial-analysis
#34
JOURNAL ARTICLE
Aduragbemi Banke-Thomas, Kerry L M Wong, Tope Olubodun, Peter M Macharia, Narayanan Sundararajan, Yash Shah, Gautam Prasad, Mansi Kansal, Swapnil Vispute, Tomer Shekel, Olakunmi Ogunyemi, Uchenna Gwacham-Anisiobi, Jia Wang, Ibukun-Oluwa Omolade Abejirinde, Prestige Tatenda Makanga, Ngozi Azodoh, Charles Nzelu, Bosede B Afolabi, Charlotte Stanton, Lenka Beňová
BACKGROUND: Better accessibility for emergency obstetric care facilities can substantially reduce maternal and perinatal deaths. However, pregnant women and girls living in urban settings face additional complex challenges travelling to facilities. We aimed to assess the geographical accessibility of the three nearest functional public and private comprehensive emergency obstetric care facilities in the 15 largest Nigerian cities via a novel approach that uses closer-to-reality travel time estimates than traditional model-based approaches...
May 2024: Lancet Global Health
https://read.qxmd.com/read/38613775/integrating-multi-omics-data-reveals-energy-and-stress-signaling-activated-by-abscisic-acid-in-arabidopsis
#35
JOURNAL ARTICLE
Takuya Yoshida, Julia Mergner, Zhenyu Yang, Jinghui Liu, Bernhard Kuster, Alisdair R Fernie, Erwin Grill
Phytohormones are essential signaling molecules regulating various processes in growth, development, and stress responses. Genetic and molecular studies, especially using Arabidopsis thaliana (Arabidopsis), have discovered many important players involved in hormone perception, signal transduction, transport, and metabolism. Phytohormone signaling pathways are extensively interconnected with other endogenous and environmental stimuli. However, our knowledge of the huge and complex molecular network governed by a hormone remains limited...
April 13, 2024: Plant Journal
https://read.qxmd.com/read/38613634/arabidopsis-class-ii-tps-controls-root-development-and-confers-salt-stress-tolerance-through-enhanced-hydrophobic-barrier-deposition
#36
JOURNAL ARTICLE
Bhushan Vishal, Pannaga Krishnamurthy, Prakash P Kumar
The mechanism of conferring salt tolerance by AtTPS9 involves enhanced deposition of suberin lamellae in the Arabidopsis root endodermis, resulting in reduction of Na+ transported to the leaves. Members of the class I trehalose-6-phosphate synthase (TPS) enzymes are known to play an important role in plant growth and development in Arabidopsis. However, class II TPSs and their functions in salinity stress tolerance are not well studied. We characterized the function of a class II TPS gene, AtTPS9, to understand its role in salt stress response and root development in Arabidopsis...
April 13, 2024: Plant Cell Reports
https://read.qxmd.com/read/38612951/effects-of-soluble-dextrin-fiber-from-potato-starch-on-body-weight-and-associated-gut-dysbiosis-are-evident-in-western-diet-fed-mice-but-not-in-overweight-obese-children
#37
JOURNAL ARTICLE
Paweł Czarnowski, Aneta Bałabas, Zbigniew Kułaga, Maria Kulecka, Krzysztof Goryca, Kazimiera Pyśniak, Katarzyna Unrug-Bielawska, Anna Kluska, Katarzyna Bagińska-Drabiuk, Maria Głowienka-Stodolak, Magdalena Piątkowska, Michalina Dąbrowska, Natalia Żeber-Lubecka, Aldona Wierzbicka-Rucińska, Aneta Kotowska, Sebastian Więckowski, Michał Mikula, Janusz Kapuśniak, Piotr Socha, Jerzy Ostrowski
BACKGROUND: The study investigated the impact of starch degradation products (SDexF) as prebiotics on obesity management in mice and overweight/obese children. METHODS: A total of 48 mice on a normal diet (ND) and 48 on a Western diet (WD) were divided into subgroups with or without 5% SDexF supplementation for 28 weeks. In a human study, 100 overweight/obese children were randomly assigned to prebiotic and control groups, consuming fruit and vegetable mousse with or without 10 g of SDexF for 24 weeks...
March 22, 2024: Nutrients
https://read.qxmd.com/read/38612905/genome-wide-identification-and-expression-analysis-of-tga-family-genes-associated-with-abiotic-stress-in-sunflowers-helianthus-annuus-l
#38
JOURNAL ARTICLE
Qinzong Zeng, Jiafeng Gu, Maohong Cai, Yingwei Wang, Qinyu Xie, Yuliang Han, Siqi Zhang, Lingyue Lu, Youheng Chen, Youling Zeng, Tao Chen
Sunflower ( Helianthus annuus L.) is an important, substantial global oil crop with robust resilience to drought and salt stresses. The TGA (TGACG motif-binding factor) transcription factors, belonging to the basic region leucine zipper (bZIP) family, have been implicated in orchestrating multiple biological processes. Despite their functional significance, a comprehensive investigation of the TGA family's abiotic stress tolerance in sunflowers remains elusive. In the present study, we identified 14 TGA proteins in the sunflower genome, which were unequally distributed across 17 chromosomes...
April 7, 2024: International Journal of Molecular Sciences
https://read.qxmd.com/read/38612787/sulfate-availability-and-hormonal-signaling-in-the-coordination-of-plant-growth-and-development
#39
REVIEW
Anna Wawrzyńska, Agnieszka Sirko
Sulfur (S), one of the crucial macronutrients, plays a pivotal role in fundamental plant processes and the regulation of diverse metabolic pathways. Additionally, it has a major function in plant protection against adverse conditions by enhancing tolerance, often interacting with other molecules to counteract stresses. Despite its significance, a thorough comprehension of how plants regulate S nutrition and particularly the involvement of phytohormones in this process remains elusive. Phytohormone signaling pathways crosstalk to modulate growth and developmental programs in a multifactorial manner...
April 3, 2024: International Journal of Molecular Sciences
https://read.qxmd.com/read/38612692/-bcabf1-plays-a-role-in-the-feedback-regulation-of-abscisic-acid-signaling-via-the-direct-activation-of-bcpyl4-expression-in-pakchoi
#40
JOURNAL ARTICLE
Xiaoxue Yang, Meiyun Wang, Qian Zhou, Xinfeng Xu, Ying Li, Xilin Hou, Dong Xiao, Tongkun Liu
Abscisic acid-responsive element-binding factor 1 ( ABF1 ), a key transcription factor in the ABA signal transduction process, regulates the expression of downstream ABA-responsive genes and is involved in modulating plant responses to abiotic stress and developmental processes. However, there is currently limited research on the feedback regulation of ABF1 in ABA signaling. This study delves into the function of BcABF1 in Pakchoi. We observed a marked increase in BcABF1 expression in leaves upon ABA induction...
March 30, 2024: International Journal of Molecular Sciences
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