keyword
https://read.qxmd.com/read/38642121/comparative-transcriptome-and-metabolite-profiling-reveal-diverse-pattern-of-cyp-ts-gene-expression-during-corosolic-acid-biosynthesis-in-lagerstroemia-speciosa-l-pers
#21
JOURNAL ARTICLE
Karuna Surendran, Siya Pradeep, Padmesh Pandaram Pillai
Extensive leaf transcriptome profiling and differential gene expression analysis of field grown and elicited shoot cultures of L. speciosa suggest that differential synthesis of CRA is mediated primarily by CYP and TS genes, showing functional diversity. Lagerstroemia speciosa L. is a tree species with medicinal and horticultural attributes. The pentacyclic triterpene, Corosolic acid (CRA) obtained from this species is widely used for the management of diabetes mellitus in traditional medicine. The high mercantile value of the compound and limited availability of innate resources entail exploration of alternative sources for CRA production...
April 20, 2024: Plant Cell Reports
https://read.qxmd.com/read/38640971/the-association-analysis-of-dna-methylation-and-transcriptomics-identified-bpcycd3-2-as-a-participant-in-influencing-cell-division-in-autotetraploid-birch-betula-pendula-leaves
#22
JOURNAL ARTICLE
Xiaoyue Zhang, Kun Chen, Guanbin Lv, Wei Wang, Jing Jiang, Guifeng Liu
Polyploidization plays a crucial role in plant breeding and genetic improvement. Although the phenomenon of polyploidization affecting the area and number of plant epidermal pavement cells is well described, the underlying mechanism behind this phenomenon is still largely unknown. In this study, we found that the leaves of autotetraploid birch (Betula pendula) stopped cell division earlier and had a larger cell area. In addition, compared to diploids, tetraploids have a smaller stomatal density and fewer stomatal numbers...
April 17, 2024: Plant Science: An International Journal of Experimental Plant Biology
https://read.qxmd.com/read/38640854/effects-of-auricularia-auricula-judae-bull-qu%C3%A3-l-polysaccharide-acid-hydrolysate-on-glucose-metabolism-in-diabetic-mice-under-oxidative-stress
#23
JOURNAL ARTICLE
Qianwen Shi, Xiangyu Li, Jiyuan He, Deting Ye, Huinan Tang, Jinjie Xuan, Yuxuan Tang, Yakun Zhang, Yongjun Zhang
BACKGROUND: Oxidative stress can lead to uncontrolled glucose metabolism and, thus, diabetes. Auricularia auricula-judae (Bull.) Quél. polysaccharides possess biological activities, such as antioxidant and hypoglycemic effects, but their mechanism of their acid hydrolysates on oxidative stress-injured glucose metabolism disorders is unclear. PURPOSE: Using diabetic mice, we investigated the effect of the acid hydrolysate of polysaccharides from Auricularia auricula-judae (Bull...
February 27, 2024: Phytomedicine
https://read.qxmd.com/read/38639776/comparative-mirnome-and-transcriptome-analyses-reveal-the-expression-of-novel-mirnas-in-the-panicle-of-rice-implicated-in-sustained-agronomic-performance-under-terminal-drought-stress
#24
JOURNAL ARTICLE
Simardeep Kaur, Karishma Seem, Naveen Duhan, Suresh Kumar, Rakesh Kaundal, Trilochan Mohapatra
Differential expression of 128 known and 111 novel miRNAs in the panicle of Nagina 22 under terminal drought stress targeting transcription factors, stress-associated genes, etc., enhances drought tolerance and helps sustain agronomic performance under terminal drought stress. Drought tolerance is a complex multigenic trait, wherein the genes are fine-tuned by coding and non-coding components in mitigating deleterious effects. MicroRNA (miRNA) controls gene expression at post-transcriptional level either by cleaving mRNA (transcript) or by suppressing its translation...
April 19, 2024: Planta
https://read.qxmd.com/read/38638357/morphological-and-molecular-response-mechanisms-of-the-root-system-of-different-hemarthria-compressa-species-to-submergence-stress
#25
JOURNAL ARTICLE
Bingna Shen, Wenwen Li, Yuqian Zheng, Xiaoli Zhou, Yinuo Zhang, Minghao Qu, Yinchen Wang, Yang Yuan, Kaiyue Pang, Yanlong Feng, Jiahai Wu, Bing Zeng
INTRODUCTION: The severity of flood disasters is increasing due to climate change, resulting in a significant reduction in the yield and quality of forage crops worldwide. This poses a serious threat to the development of agriculture and livestock. Hemarthria compressa is an important high-quality forage grass in southern China. In recent years, frequent flooding has caused varying degrees of impacts on H. compressa and their ecological environment. METHODS: In this study, we evaluated differences in flooding tolerance between the root systems of the experimental materials GY (Guang Yi, flood-tolerant) and N1291 (N201801291, flood-sensitive)...
2024: Frontiers in Plant Science
https://read.qxmd.com/read/38637665/a-chromosome-level-genome-assembly-for-the-amphibious-plant-rorippa-aquatica-reveals-its-allotetraploid-origin-and-mechanisms-of-heterophylly-upon-submergence
#26
JOURNAL ARTICLE
Tomoaki Sakamoto, Shuka Ikematsu, Hokuto Nakayama, Terezie Mandáková, Gholamreza Gohari, Takuya Sakamoto, Gaojie Li, Hongwei Hou, Sachihiro Matsunaga, Martin A Lysak, Seisuke Kimura
The ability to respond to varying environments is crucial for sessile organisms such as plants. The amphibious plant Rorippa aquatica exhibits a striking type of phenotypic plasticity known as heterophylly, a phenomenon in which leaf form is altered in response to environmental factors. However, the underlying molecular mechanisms of heterophylly are yet to be fully understood. To uncover the genetic basis and analyze the evolutionary processes driving heterophylly in R. aquatica, we assembled the chromosome-level genome of the species...
April 18, 2024: Communications Biology
https://read.qxmd.com/read/38637411/overexpression-of-rice-osnrt1-1a-osnpf6-3-enhanced-the-nitrogen-use-efficiency-of-wheat-under-low-nitrogen-conditions
#27
JOURNAL ARTICLE
Huanhuan Wang, Wei Wang, Zhencheng Xie, Yuxin Yang, Hongyong Dai, Feng Shi, Liang Ma, Zhifeng Sui, Chuan Xia, Xiuying Kong, Lichao Zhang
Overexpression of OsNRT1.1A promotes early heading and increases the tolerance in wheat under nitrogen deficiency conditions. The application of inorganic nitrogen (N) fertilizers is a major driving force for crop yield improvement. However, the overuse of fertilizers significantly raises production costs and leads to environmental problems, making it critical to enhance crop nitrogen use efficiency (NUE) for the sake of sustainable agriculture. In this study, we created a series of transgenic wheat lines carrying the rice OsNRT1...
April 18, 2024: Planta
https://read.qxmd.com/read/38636730/genetic-variations-in-zmereb179-are-associated-with-waterlogging-tolerance-in-maize
#28
JOURNAL ARTICLE
Kun Liang, Chenxu Zhao, Jing Wang, Xueqing Zheng, Feng Yu, Fazhan Qiu
Maize (Zea mays) is highly susceptible to waterlogging stress, which reduces both the yield and quality of this important crop. However, the molecular mechanism governing waterlogging tolerance is poorly understood. In this study, we identify a waterlogging- and ethylene-inducible gene ZmEREB179 that encodes an ethylene responsive factor (ERF) localized in the nucleus. Overexpression of ZmEREB179 in maize increases the sensitivity to waterlogging stress. Conversely, the zmereb179 knockout mutants are more tolerant to waterlogging, suggesting that ZmEREB179 functions as a negative regulator of waterlogging tolerance...
April 16, 2024: Journal of Genetics and Genomics
https://read.qxmd.com/read/38635902/the-transcriptome-landscape-of-developing-barley-seeds
#29
JOURNAL ARTICLE
Martin Kovacik, Anna Nowicka, Jana Zwyrtková, Beáta Strejčková, Isaia Vardanega, Eddi Esteban, Asher Pasha, Kateřina Kaduchová, Maryna Krautsova, Marie Červenková, Jan Šafář, Nicholas J Provart, Rüdiger Simon, Ales Pecinka
Cereal grains are an important source of food and feed. To provide comprehensive spatiotemporal information about biological processes in developing seeds of cultivated barley (Hordeum vulgare L. subsp. vulgare), we performed a transcriptomic study of the embryo, endosperm, and seed maternal tissues collected from grains 4-32 days after pollination. Weighted gene co-expression network and motif enrichment analyses identified specific groups of genes and transcription factors (TFs) potentially regulating barley seed tissue development...
April 18, 2024: Plant Cell
https://read.qxmd.com/read/38635506/transcriptome-differential-expression-analysis-of-defoliation-in-different-lemon-varieties-under-drought-treatment
#30
JOURNAL ARTICLE
Meichao Dong, Tuo Yin, Dongguo Zhou, Hanyao Zhang, Fan Yang, Shaohua Wang, Chunrui Long, Xiaomeng Fu, Hongming Liu, Lina Guo, Junyan Gao
'Allen Eureka' is a bud variety of Eureka lemon with excellent fruiting traits, but severe winter defoliation affects the following year's yield, and the response mechanism of lemon defoliation is currently unknown. Two lemon cultivars ('Allen Eureka' and 'Yunning No. 1') with different defoliation traits were used as materials to investigate the molecular regulatory mechanisms of different leaf abscission periods in lemons. The petiole abscission zone was collected at three different defoliation stages, namely, the predefoliation stage (k15), the middefoliation stage (k30), and the postdefoliation stage (k45)...
2024: PloS One
https://read.qxmd.com/read/38635415/barley-yellow-dwarf-virus-gav-17k-protein-disrupts-thiamine-biosynthesis-to-facilitate-viral-infection-in-plants
#31
JOURNAL ARTICLE
Xiaoyu Han, Xue Yang, Siyu Chen, He Wang, Xiaomin Liu, Daowen Wang, Jin Yang, Linlin Chen, Bingjian Sun, Honglian Li, Yan Shi
Thiamine functions as a crucial activator modulating plant health and broad-spectrum stress tolerances. However, the role of thiamine in regulating plant virus infection is largely unknown. Here, we report that the multifunctional 17K protein encoded by barley yellow dwarf virus-GAV (BYDV-GAV) interacted with barley pyrimidine synthase (HvTHIC), a key enzyme in thiamine biosynthesis. HvTHIC was found to be localized in chloroplast via an N-terminal 74-amino acid domain. However, the 17K-HvTHIC interaction restricted HvTHIC targeting to chloroplasts and triggered autophagy-mediated HvTHIC degradation...
April 18, 2024: Plant Journal
https://read.qxmd.com/read/38634341/transcriptome-scale-analysis-to-decode-the-differential-sucrose-accumulation-mechanisms-in-sugarcane-under-the-effect-of-gibberellin
#32
JOURNAL ARTICLE
Kriti Roopendra, Priyanka, Amaresh Chandra, Yusuf Akhter, Sangeeta Saxena
In the present study, we analyzed GA3 (gibberellin)-treated sugarcane samples at the transcriptomic level to elucidate the differential expression of genes that influence sucrose accumulation. Previous research has suggested that GA3 application can potentially delay sink saturation by enhancing sink strength and demand, enabling the accommodation of more sucrose. To investigate the potential role of GA-induced modification of sink capacity in promoting higher sucrose accumulation, we sought to unravel the differential expression of transcripts and analyze their functional annotation...
2024: Physiologia Plantarum
https://read.qxmd.com/read/38634166/osalkbh9-mediated-m-6-a-demethylation-regulates-tapetal-pcd-and-pollen-exine-accumulation-in-rice
#33
JOURNAL ARTICLE
Jun Tang, Dekun Lei, Junbo Yang, Shuyan Chen, Xueping Wang, Xiaoxin Huang, Shasha Zhang, Zhihe Cai, Shanshan Zhu, Jianmin Wan, Guifang Jia
The N6 -methyladenosine (m6 A) mRNA modification is crucial for plant development and stress responses. In rice, the male sterility resulting from the deficiency of OsFIP37, a core component of m6 A methyltransferase complex, emphasizes the significant role of m6 A in male fertility. m6 A is reversible and can be removed by m6 A demethylases. However, whether mRNA m6 A demethylase regulates male fertility in rice has remained unknown. Here, we identify the mRNA m6 A demethylase OsALKBH9 and demonstrate its involvement in male fertility regulation...
April 17, 2024: Plant Biotechnology Journal
https://read.qxmd.com/read/38633698/transcriptomic-analysis-of-the-response-of-avena-sativa-to-bacillus-amyloliquefaciens-dgl1
#34
JOURNAL ARTICLE
Xue Yang, Yongli Xie, Tian Wang, Youming Qiao, Junxi Li, Lingling Wu, Ying Gao
INTRODUCTION: Bacillus amyloliquefaciens DGL1, isolated from the arid sandy areas in Dagler, Qinghai Province, China, promotes the growth of Avena sativa variety "Qing Yan 1". METHODS: To elucidate the transcriptomic changes in the oat root system following interaction with DGL1 and to reveal the molecular mechanism by which DGL1 promotes oat growth, treatment and control groups of oat roots at 2, 4, 8, and 12 h after inoculation with a suspension of strain DGL1 were analyzed using Illumina high-throughput transcriptome sequencing technology...
2024: Frontiers in Microbiology
https://read.qxmd.com/read/38633460/disease-resistance-features-of-the-executor-r-gene-xa7-reveal-novel-insights-into-the-interaction-between-rice-and-xanthomonas-oryzae-pv-oryzae
#35
JOURNAL ARTICLE
Lumei He, Pengcheng Liu, Le Mei, Huichao Luo, Tingxuan Ban, Xifeng Chen, Bojun Ma
Bacterial blight (BB), caused by Xanthomonas oryzae pv. oryzae ( Xoo ), is a widespread and destructive disease in rice production. Previously, we cloned an executor R gene, Xa7 , which confers durable and broad-spectrum resistance to BB. Here, we further confirmed that the transcription activator-like effector (TALE) AvrXa7 in Xoo strains could directly bind to the effector-binding element (EBE) in the promoter of the Xa7 gene. Other executor R genes ( Xa7 , Xa10 , Xa23 , and Xa27 ) driven by the promoter of the Xa7 gene could be activated by AvrXa7 and trigger the hypersensitive response (HR) in tobacco leaves...
2024: Frontiers in Plant Science
https://read.qxmd.com/read/38633458/thidiazuron-combined-with-cyclanilide-modulates-hormone-pathways-and-ros-systems-in-cotton-increasing-defoliation-at-low-temperatures
#36
JOURNAL ARTICLE
Hongmei Shu, Shangwen Sun, Xiaojing Wang, Jian Chen, Changqin Yang, Guowei Zhang, Huanyong Han, Zhikang Li, Ting Liang, Ruixian Liu
Low temperatures decrease the thidiazuron (TDZ) defoliation efficiency in cotton, while cyclanilide (CYC) combined with TDZ can improve the defoliation efficiency at low temperatures, but the mechanism is unknown. This study analyzed the effect of exogenous TDZ and CYC application on cotton leaf abscissions at low temperatures (daily mean temperature: 15°C) using physiology and transcriptomic analysis. The results showed that compared with the TDZ treatment, TDZ combined with CYC accelerated cotton leaf abscission and increased the defoliation rate at low temperatures...
2024: Frontiers in Plant Science
https://read.qxmd.com/read/38633412/transcriptome-analysis-reveals-the-mechanism-of-nahco-3-promoting-tobacco-leaf-maturation
#37
JOURNAL ARTICLE
Tingting Wang, Yuanyuan Zhao, Dexun Wang, Hongzhi Shi
NaHCO3 accelerates the aging of tobacco leaves; however, the underlying molecular mechanisms have not been elucidated. This study aimed to explore the mechanism of NaHCO3 in the promotion of tobacco leaf maturation using transcriptome analysis. Leaves on plants or detached leaves of the tobacco variety, Honghua Dajinyuan, were sprayed with or without 1% NaHCO3 . The leaf yellowing was observed, the pigment content and enzyme activities were determined and RNA sequencing (RNA-seq) was performed. Spraying NaHCO3 onto detached leaves was found to promote leaf yellowing...
2024: Open Life Sciences
https://read.qxmd.com/read/38633273/full-length-transcriptome-profiling-of-acanthopanax-gracilistylus-provides-new-insight-into-the-kaurenoic-acid-biosynthesis-pathway
#38
JOURNAL ARTICLE
Bing He, Tingyu Shan, Jingyao Xu, Xinxin Zhong, Jingjing Zhang, Rongchun Han, Qingshan Yang, Jiawen Wu
UNLABELLED: Acanthopanax gracilistylus is a deciduous plant in the family Araliaceae, which is commonly used in Chinese herbal medicine, as the root bark has functions of nourishing the liver and kidneys, removing dampness and expelling wind, and strengthening the bones and tendons. Kaurenoic acid (KA) is the main effective substance in the root bark of A. gracilistylus with strong anti-inflammatory effects. To elucidate the KA biosynthesis pathway, second-generation (DNA nanoball) and third-generation (Pacific Biosciences) sequencing were performed to analyze the transcriptomes of the A...
March 2024: Physiology and Molecular Biology of Plants: An International Journal of Functional Plant Biology
https://read.qxmd.com/read/38633271/discovering-the-regulators-of-heat-stress-tolerance-in-ziziphus-nummularia-burm-f-wight-and-walk-arn
#39
JOURNAL ARTICLE
Kishor Prabhakar Panzade, Kishor U Tribhuvan, Deepak V Pawar, Rahul Singh Jasrotia, Kishor Gaikwad, Monika Dalal, Ranjeet Ranjan Kumar, Madan Pal Singh, Om Prakash Awasthi, Jasdeep Chatrath Padaria
UNLABELLED: Ziziphus nummularia an elite heat-stress tolerant shrub, grows in arid regions of desert. However, its molecular mechanism responsible for heat stress tolerance is unexplored. Therefore, we analysed whole transcriptome of Jaisalmer (heat tolerant) and Godhra (heat sensitive) genotypes of Z. nummularia to understand its molecular mechanism responsible for heat stress tolerance. De novo assembly of 16,22,25,052 clean reads yielded 276,029 transcripts. A total of 208,506 unigenes were identified which contains 4290 and 1043 differentially expressed genes (DEG) in TGO (treated Godhra at 42 °C) vs...
March 2024: Physiology and Molecular Biology of Plants: An International Journal of Functional Plant Biology
https://read.qxmd.com/read/38633269/genome-wide-identification-of-bhlh-transcription-factors-and-expression-analysis-under-drought-stress-in-pseudoroegneria-libanotica-at-germination
#40
JOURNAL ARTICLE
Xingguan Zhai, Xia Wang, Xunzhe Yang, Qingxiang Huang, Dandan Wu, Yi Wang, Houyang Kang, Lina Sha, Xing Fan, Yonghong Zhou, Haiqin Zhang
UNLABELLED: The basic helix-loop-helix (bHLH) transcription factor family is the second largest in plants. bHLH transcription factor is not only universally involved in plant growth and metabolism, including photomorphogenesis, light signal transduction, and secondary metabolism, but also plays an important role in plant response to stress. However, the function of bHLH TFs in Pseudoroegneria species has not been studied yet. Pseudoroegneria (Nevski) Á. Löve is a perennial genus of the Triticeae ...
March 2024: Physiology and Molecular Biology of Plants: An International Journal of Functional Plant Biology
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