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1.
Plant Physiol ; 194(4): 2472-2490, 2024 Mar 29.
Artículo en Inglés | MEDLINE | ID: mdl-38217865

RESUMEN

LATERAL ORGAN BOUNDARIES DOMAIN/ASYMMETRIC LEAVES2-LIKEs (LBDs/ASLs) are plant-specific transcription factors that function downstream of auxin-regulated lateral root (LR) formation. Our previous research found that PpLBD16 positively regulates peach (Prunus persica) LR formation. However, the downstream regulatory network and target genes of PpLBD16 are still largely unknown. Here, we constructed a PpLBD16 homologous overexpression line and a PpLBD16 silenced line. We found that overexpressing PpLBD16 promoted peach root initiation, while silencing PpLBD16 inhibited peach root formation. Through RNA sequencing (RNA-seq) analysis of roots from PpLBD16 overexpression and silenced lines, we discovered that genes positively regulated by PpLBD16 were closely related to cell wall synthesis and degradation, ion/substance transport, and ion binding and homeostasis. To further detect the binding motifs and potential target genes of PpLBD16, we performed DNA-affinity purification sequencing (DAP-seq) analysis in vitro. PpLBD16 preferentially bound to CCNGAAANNNNGG (MEME-1), [C/T]TTCT[C/T][T/C] (MEME-2), and GCGGCGG (ABR1) motifs. By combined analysis of RNA-seq and DAP-seq data, we screened candidate target genes for PpLBD16. We demonstrated that PpLBD16 bound and activated the cell wall modification-related genes EXPANSIN-B2 (PpEXPB2) and SUBTILISIN-LIKE PROTEASE 1.7 (PpSBT1.7), the ion transport-related gene CYCLIC NUCLEOTIDE-GATED ION CHANNEL 1 (PpCNGC1) and the polyphenol oxidase (PPO)-encoding gene PpPPO, thereby controlling peach root organogenesis and promoting LR formation. Moreover, our results displayed that PpLBD16 and its target genes are involved in peach LR primordia development. Overall, this work reveals the downstream regulatory network and target genes of PpLBD16, providing insights into the molecular network of LBD16-mediated LR development.


Asunto(s)
Proteínas de Arabidopsis , Arabidopsis , Prunus persica , Factores de Transcripción/metabolismo , Proteínas de Arabidopsis/metabolismo , Arabidopsis/genética , Prunus persica/genética , Prunus persica/metabolismo , Regulación de la Expresión Génica de las Plantas , Transporte Iónico , Pared Celular/genética , Pared Celular/metabolismo , Raíces de Plantas/metabolismo , Ácidos Indolacéticos/metabolismo
2.
BMC Plant Biol ; 23(1): 513, 2023 Oct 25.
Artículo en Inglés | MEDLINE | ID: mdl-37880593

RESUMEN

Resistance genes (R genes) are a class of genes that are immune to a wide range of diseases and pests. In planta, NLR genes are essential components of the innate immune system. Currently, genes belonging to NLR family have been found in a number of plant species, but little is known in peach. Here, 286 NLR genes were identified on peach genome by using their homologous genes in Arabidopsis thaliana as queries. These 286 NLR genes contained at least one NBS domain and LRR domain. Phylogenetic and N-terminal domain analysis showed that these NLRs could be separated into four subfamilies (I-IV) and their promoters contained many cis-elements in response to defense and phytohormones. In addition, transcriptome analysis showed that 22 NLR genes were up-regulated after infected by Green Peach Aphid (GPA), and showed different expression patterns. This study clarified the NLR gene family and their potential functions in aphid resistance process. The candidate NLR genes might be useful in illustrating the mechanism of aphid resistance in peach.


Asunto(s)
Áfidos , Proteínas de Arabidopsis , Arabidopsis , Animales , Proteínas de Arabidopsis/genética , Áfidos/fisiología , Leucina/genética , Filogenia , Arabidopsis/genética , Nucleótidos/metabolismo
3.
BMC Plant Biol ; 23(1): 122, 2023 Mar 02.
Artículo en Inglés | MEDLINE | ID: mdl-36864374

RESUMEN

BACKGROUND: HD-Zips (Homeodomain-Leucine Zippers) are a class of plant-specific transcription factors that play multiple roles in plant growth and development. Although some functions of HD-Zip transcription factor have been reported in several plants, it has not been comprehensively studied in peach, especially during adventitious root formation of peach cuttings. RESULTS: In this study, 23 HD-Zip genes distributed on 6 chromosomes were identified from the peach (Prunus persica) genome, and named PpHDZ01-23 according to their positions on the chromosomes. These 23 PpHDZ transcription factors all contained a homeomorphism box domain and a leucine zipper domain, were divided into 4 subfamilies(I-IV) according to the evolutionary analysis, and their promoters contained many different cis-acting elements. Spatio-temporal expression pattern showed that these genes were expressed in many tissues with different levels, and they had distinct expression pattern during adventitious root formation and development. CONCLUSION: Our results showed the roles of PpHDZs on root formation, which is helpful to better understand the classification and function of peach HD-Zip genes.


Asunto(s)
Prunus persica , Prunus persica/genética , Biología Computacional , Evolución Biológica , Leucina Zippers , Factores de Transcripción/genética
4.
BMC Plant Biol ; 22(1): 422, 2022 Sep 01.
Artículo en Inglés | MEDLINE | ID: mdl-36045325

RESUMEN

BACKGROUND: Drought is one of the main concerns worldwide and restricts the development of agriculture. Silicon improves the drought resistance of plants, but the underlying mechanism remains unclear. RESULTS: We sequenced the transcriptomes of both control and silicon-treated peach seedlings under drought stress to identify genes or gene networks that could be managed to increase the drought tolerance of peach seedlings. Peach (Prunus persica) seedlings were used to analyse the effects of silicon on plant growth and physiological indexes related to drought resistance under drought stress. The results showed that silicon addition improved the water use efficiency, antioxidant capacity, and net photosynthetic rate, inhibition of stomatal closure, promoted the development of roots, and further regulated the synthesis of hormones, amino acids and sugars in peach seedlings. A comparative transcriptome analysis identified a total of 2275 genes that respond to silicon under drought stress. These genes were mainly involved in ion transport, hormone and signal transduction, biosynthetic and metabolic processes, stress and defence responses and other processes. We analysed the effects of silicon on the modulation of stress-related hormonal crosstalk and amino acid and sugar metabolism. The results showed that silicon promotes zeatin, gibberellin, and auxin biosynthesis, inhibits the synthesis of abscisic acid, then promote lateral root development and inhibit stomatal closure, and regulates the signal transduction of auxin, cytokinin, gibberellin and salicylic acid. Silicon also regulates the metabolism of various amino acids and promotes the accumulation of sucrose and glucose to improve drought resistance of peach seedlings. CONCLUSIONS: Silicon enhanced the drought resistance of peach seedlings by regulating stress-related hormone synthesis and signal transduction, and regulating amino acid and sugar metabolism.


Asunto(s)
Sequías , Prunus persica , Aminoácidos/metabolismo , Giberelinas/metabolismo , Hormonas/metabolismo , Hormonas/farmacología , Ácidos Indolacéticos/metabolismo , Prunus persica/genética , Prunus persica/metabolismo , Plantones , Silicio/metabolismo , Silicio/farmacología , Estrés Fisiológico/genética , Azúcares/metabolismo
5.
Int J Mol Sci ; 23(9)2022 Apr 28.
Artículo en Inglés | MEDLINE | ID: mdl-35563305

RESUMEN

Sucrose nonfermenting-1-related protein kinase 1 (SnRK1) is a central integrator of plant stress and energy starvation signalling pathways. We found that the FaSnRK1α-overexpression (OE) roots had a higher respiratory rate and tolerance to waterlogging than the FaSnRK1α-RNAi roots, suggesting that FaSnRK1α plays a positive role in the regulation of anaerobic respiration under waterlogging. FaSnRK1α upregulated the activity of anaerobic respiration-related enzymes including hexokinase (HK), phosphofructokinase (PFK), pyruvate kinase (PK), pyruvate decarboxylase (PDC), alcohol dehydrogenase (ADH) and lactate dehydrogenase (LDH). FaSnRK1α also enhanced the ability to quench reactive oxygen species (ROS) by increasing antioxidant enzyme activities. We sequenced the transcriptomes of the roots of both wild-type (WT) and FaSnRK1α-RNAi plants, and the differentially expressed genes (DEGs) were clearly enriched in the defence response, response to biotic stimuli, and cellular carbohydrate metabolic process. In addition, 42 genes involved in glycolysis and 30 genes involved in pyruvate metabolism were significantly regulated in FaSnRK1α-RNAi roots. We analysed the transcript levels of two anoxia-related genes and three ERFVIIs, and the results showed that FaADH1, FaPDC1, FaHRE2 and FaRAP2.12 were upregulated in response to FaSnRK1α, indicating that FaSnRK1α may be involved in the ethylene signalling pathway to improve waterlogging tolerance. In conclusion, FaSnRK1α increases the expression of ERFVIIs and further activates anoxia response genes, thereby enhancing anaerobic respiration metabolism in response to low-oxygen conditions during waterlogging.


Asunto(s)
Fragaria , Anaerobiosis , Regulación de la Expresión Génica de las Plantas , Hipoxia/metabolismo , Raíces de Plantas/metabolismo , Frecuencia Respiratoria
6.
Int J Mol Sci ; 23(10)2022 May 13.
Artículo en Inglés | MEDLINE | ID: mdl-35628273

RESUMEN

Plants suffer from a variety of environmental stresses during their growth and development. The evolutionarily conserved sucrose nonfermenting kinase 1-related protein kinase 1 (SnRK1) plays a central role in the regulation of energy homeostasis in response to stresses. In plant cells, autophagy is a degradation process occurring during development or under stress, such as nutrient starvation. In recent years, SnRK1 signaling has been reported to be an upstream activator of autophagy. However, these studies all focused on the regulatory effect of SnRK1 on TOR signaling and the autophagy-related gene 1 (ATG1) complex. In this study, overexpression of the gene encoding the Prunus persica SnRK1 α subunit (PpSnRK1α) in tomato improved the photosynthetic rates and enhanced the resistance to low nutrient stress (LNS). Overexpression of PpSnRK1α increased autophagy activity and upregulated the expression of seven autophagy-related genes (ATGs). The transcriptional levels of SlSnRK2 family genes were altered significantly by PpSnRK1α, signifying that PpSnRK1α may be involved in the ABA signaling pathway. Further analysis showed that PpSnRK1α not only activated autophagy by inhibiting target of rapamycin (TOR) signaling but also enhanced ABA-induced autophagy. This indicates that PpSnRK1α regulates the photosynthetic rate and induces autophagy, and then responds to low nutrient stress.


Asunto(s)
Solanum lycopersicum , Autofagia/genética , Solanum lycopersicum/genética , Nutrientes , Transducción de Señal/genética , Estrés Fisiológico/genética
7.
Int J Mol Sci ; 23(5)2022 Feb 26.
Artículo en Inglés | MEDLINE | ID: mdl-35269728

RESUMEN

Salt stress is a major adverse abiotic factor seriously affecting fruit tree growth and development. It ultimately lowers fruit quality and reduces yield. Phosphatidylcholine (PC) is an important cell membrane component that is critical for cell structure and membrane stability maintenance. In this study, we found that the addition of external PC sources significantly increased the tolerance of one-year-old peach trees, Prunus persica (L.) Batsch., to salt stress and attenuated their damage. The effect of exogenous application of 200 mg/L PC exerted the most significant positive effect. Its use caused seedling leaf stomatal opening, contributing to normal gas exchange. Moreover, beneficial effects were exerted also to the root system, which grew normally under salt stress. Meanwhile, phospholipase D activity in the cell was promoted. The production of phosphatidic acid (PA) was enhanced by increased decomposition of phospholipids; PA serves as a secondary messenger involved in plant biological process regulation and the reduction in the reactive oxygen species- and peroxide-induced damage caused by salt stress. The possible mechanism of action is via promoted plant osmotic regulation and tolerance to salt stress, reducing salt stress-induced injury to plants.


Asunto(s)
Ácidos Fosfatidicos , Plantones , Membrana Celular , Regulación de la Expresión Génica de las Plantas , Homeostasis , Ácidos Fosfatidicos/farmacología , Fosfatidilcolinas/farmacología , Estrés Salino , Estrés Fisiológico
8.
Int J Mol Sci ; 23(19)2022 Sep 22.
Artículo en Inglés | MEDLINE | ID: mdl-36232452

RESUMEN

Nitrogen is an important nutrient element that limits plant growth and yield formation, but excessive nitrogen has negative effects on plants and the environment. It is important to reveal the molecular mechanism of high NUE (nitrogen use efficiency) for breeding peach rootstock and variety with high NUE. In this study, two peach rootstocks, Shannong-1 (S) and Maotao (M), with different NUE were used as materials and treated with 0.1 mM KNO3 for transcriptome sequencing together with the control group. From the results of comparison between groups, we found that the two rootstocks had different responses to KNO3, and 2151 (KCL_S vs. KCL_M), 327 (KNO3_S vs. KCL_S), 2200 (KNO3_S vs. KNO3_M) and 146 (KNO3_M vs. KCL_M) differentially expressed genes (DEGs) were identified, respectively, which included multiple transcription factor families. These DEGs were enriched in many biological processes and signal transduction pathways, including nitrogen metabolism and plant hormone signal transduction. The function of PpNRT2.1, which showed up-regulated expression under KNO3 treatment, was verified by heterologous expression in Arabidopsis. The plant height, SPAD (soil and plant analyzer development) of leaf and primary root length of the transgenic plants were increased compared with those of WT, indicating the roles of PpNRT2.1 in nitrogen metabolism. The study uncovered for the first time the different molecular regulatory pathways involved in nitrogen metabolism between two peach rootstocks and provided gene reserve for studying the molecular mechanism of nitrogen metabolism and theoretical basis for screening peach rootstock or variety with high NUE.


Asunto(s)
Prunus persica , Transcriptoma , Perfilación de la Expresión Génica , Regulación de la Expresión Génica de las Plantas , Nitrógeno/metabolismo , Fitomejoramiento , Reguladores del Crecimiento de las Plantas/metabolismo , Raíces de Plantas/metabolismo , Prunus persica/genética , Prunus persica/metabolismo , Suelo , Factores de Transcripción/metabolismo
9.
Physiol Plant ; 173(4): 1808-1823, 2021 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-34387863

RESUMEN

Sucrose nonfermentation 1 (SNF1) related kinase 1 (SnRK1) is a central energy sensor kinase in plants and a key switch regulating carbon and nitrogen metabolism. Fruit quality depends on leaf photosynthetic efficiency and carbohydrate accumulation, but the role of peach (Prunus persica) SnRK1 α subunit (PpSnRK1α) in regulating leaf carbon metabolism and the light signal response remains unclear. We studied the carbon metabolism of tomato leaves overexpressing PpSnRK1α and the responses of PpSnRK1α-overexpressing tomato leaves to light signals. Transcriptome, metabolome, and real-time quantitative polymerase chain reaction analyses revealed that uridine 5'-diphosphoglucose, glutamate, and glucose-6-phosphate accumulated in tomato leaves overexpressing PpSnRK1α. The expression of genes (e.g., GDH2, SuSy) encoding enzymes related to carbon metabolism (e.g., glutamate dehydrogenase (GDH2; EC: 1.4.1.3), sucrose synthase (SS; EC: 2.4.1.13)) and chlorophyllase (CLH) encoding chlorophyllase (EC: 3.1.1.14), which regulates photosynthetic pigments and photosynthesis, was significantly increased in PpSnRK1α-overexpressing plants. PpSnRK1α overexpression inhibited the growth of hypocotyls and primary roots in response to light. The chlorophyll content of the leaves was increased, the activity of SS and ADPG pyrophosphatase (AGPase; EC: 2.7.7.27) was increased, and photosynthesis was promoted in PpSnRK1α-overexpressing plants relative to wild-type plants. Under light stress, the net photosynthetic rate of plants was significantly higher in plants overexpressing PpSnRK1α than in wild-type plants. This indicates that PpSnRK1α promotes the accumulation of carbohydrates by regulating genes related to carbon metabolism, regulating genes related to chlorophyll synthesis, and then responding to light signals to increase the net photosynthetic rate of leaves.


Asunto(s)
Prunus persica , Solanum lycopersicum , Carbono , Luz , Solanum lycopersicum/genética , Fotosíntesis , Hojas de la Planta/genética
10.
BMC Plant Biol ; 20(1): 128, 2020 Mar 26.
Artículo en Inglés | MEDLINE | ID: mdl-32216751

RESUMEN

BACKGROUND: SNF-related Kinase 1 (SnRK1) is a key component of the cell signaling network. SnRK1 is known to respond to a wide variety of stresses, but its exact role in salt stress response and tolerance is still largely unknown. RESULTS: In this study, we reported that overexpression of the gene encoding the α subunit of Prunus persica SnRK1 (PpSnRK1α) in tomato could improve salt stress tolerance. The increase in salt stress tolerance in PpSnRK1α-overexpressing plants was found to correlate with increased PpSnRK1α expression level and SnRK1 kinase activity. And PpSnRK1α overexpression lines exhibited a lower level of leaf damage as well as increased proline content and reduced malondialdehyde (MDA) compared with wild-type (WT) lines under salt stress. Furthermore, PpSnRK1α enhanced reactive oxygen species (ROS) metabolism by increasing the expression level of antioxidase genes and antioxidant enzyme activities. We further sequenced the transcriptomes of the WT and three PpSnRK1α overexpression lines using RNA-seq and identified about 1000 PpSnRK1α-regulated genes, including many antioxidant enzymes, and these genes were clearly enriched in the MAPK signaling pathway (plant), plant-pathogen interactions and plant hormone signaling transduction and can respond to stimuli, metabolic processes, and biological regulation. Furthermore, we identified the transcriptional levels of several salt stress-responsive genes, SlPP2C37, SlPYL4, SlPYL8, SlNAC022, SlNAC042, and SlSnRK2 family were altered significantly by PpSnRK1α, signifying that SnRK1α may be involved in the ABA signaling pathway to improve tomato salt tolerance. Overall, these findings provided new evidence for the underlying mechanism of SnRK1α conferment in plant salt tolerance phenotypes. CONCLUSIONS: Our findings demonstrated that plant salt stress resistance can be affected by the regulation of the SnRK1α. Further molecular and genetic approaches will accelerate our knowledge of PpSnRK1α functions, and inform the genetic improvement of salt tolerance in tomato through genetic engineering and other related strategies.


Asunto(s)
Regulación de la Expresión Génica de las Plantas/fisiología , Proteínas de Plantas/genética , Proteínas Serina-Treonina Quinasas/genética , Prunus persica/fisiología , Tolerancia a la Sal/genética , Solanum lycopersicum/fisiología , Ácido Abscísico/metabolismo , Solanum lycopersicum/genética , Oxígeno/metabolismo , Proteínas de Plantas/metabolismo , Plantas Modificadas Genéticamente/genética , Plantas Modificadas Genéticamente/fisiología , Proteínas Serina-Treonina Quinasas/metabolismo , Prunus persica/genética , Especies Reactivas de Oxígeno/metabolismo , Transducción de Señal
11.
Int J Cancer ; 144(6): 1345-1355, 2019 03 15.
Artículo en Inglés | MEDLINE | ID: mdl-30006972

RESUMEN

LIM kinases modulate multiple aspects of cancer development, including cell proliferation and survival. As the mechanisms of LIMK-associated tumorigenesis are still unclear, we analyzed the tumorigenic functions of LIM kinase 2 (LIMK2) in human bladder cancer (BC) and explored whether the newly identified LIMK2 3´-UTR SNP rs2073859 (G-to-A allele) is correlated with clinical features. Expression levels of LIMK2 in 38 human BC tissues and eight cell lines were examined using quantitative real-time PCR and immunohistochemistry. LIMK2 was overexpressed in most BC tissues (27/38, 71%) and BC-derived cell lines (6/8), and was more frequently overexpessed in high-grade than low-grade BC (80% vs. 47%). The effects of LIMK2 on BC cell proliferation, survival and migration, were studied by overexpression and RNA interference approaches in vitro and in vivo. LIMK2 overexpression promoted proliferation, migration and invasion of BC cells, while LIMK2 depletion inhibited cell invasion and viability and induced growth arrest in vitro and in vivo. PCR-Restriction Fragment Length Polymorphism (RFLP) was used to genotype LIMK2 SNP rs2073859 and multivariate logistic regression applied to assess the relationship between allele frequency and clinical features in 139 BC patients. Functional analyses localized SNP rs2073859 within the microRNA-135a seed-binding region and revealed significantly lower LIMK2 G allele expression. The frequency of A genotypes (AG + AA) was higher in the BC group than normal controls and correlated with risks of high-grade and high-stage BC. In conclusion, LIMK2 may function as an oncogene in human BC, while allele-specific regulation by microRNA-135a may influence disease risk.


Asunto(s)
Regulación Neoplásica de la Expresión Génica , Quinasas Lim/genética , MicroARNs/metabolismo , Neoplasias de la Vejiga Urinaria/genética , Animales , Sitios de Unión/genética , Carcinogénesis/genética , Estudios de Casos y Controles , Línea Celular Tumoral , Femenino , Técnicas de Silenciamiento del Gen , Humanos , Ratones , Ratones Endogámicos BALB C , Ratones Desnudos , Persona de Mediana Edad , Clasificación del Tumor , Estadificación de Neoplasias , Oncogenes/genética , Polimorfismo de Nucleótido Simple , Interferencia de ARN , ARN Interferente Pequeño , Vejiga Urinaria/patología , Neoplasias de la Vejiga Urinaria/patología , Ensayos Antitumor por Modelo de Xenoinjerto
13.
Plant Cell Rep ; 37(12): 1693-1705, 2018 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-30182298

RESUMEN

KEY MESSAGE: We confirmed the roles of auxin, CK, and strigolactones in apical dominance in peach and established a model of plant hormonal control of apical dominance in peach. Auxin, cytokinin, and strigolactone play important roles in apical dominance. In this study, we analyzed the effect of auxin and strigolactone on the expression of ATP/ADP isopentenyltransferase (IPT) genes (key cytokinin biosynthesis genes) and the regulation of apical dominance in peach. After decapitation, the expression levels of PpIPT1, PpIPT3, and PpIPT5a in nodal stems sharply increased. This observation is consistent with the changes in tZ-type and iP-type cytokinin levels in nodal stems and axillary buds observed after treatment; these changes are required to promote the outgrowth of axillary buds in peach. These results suggest that ATP/ADP PpIPT genes in nodal stems are key genes for cytokinin biosynthesis, as they promote the outgrowth of axillary buds. We also found that auxin and strigolactone inhibited the outgrowth of axillary buds. After decapitation, IAA treatment inhibited the expression of ATP/ADP PpIPTs in nodal stems to impede the increase in cytokinin levels. By contrast, after GR24 (GR24 strigolactone) treatment, the expression of ATP/ADP IPT genes and cytokinin levels still increased markedly, but the rate of increase in gene expression was markedly lower than that observed after decapitation in the absence of IAA (indole-3-acetic acid) treatment. In addition, GR24 inhibited basipetal auxin transport at the nodes (by limiting the expression of PpPIN1a in nodal stems), thereby inhibiting ATP/ADP PpIPT expression in nodal stems. Therefore, strigolactone inhibits the outgrowth of axillary buds in peach only when terminal buds are present.


Asunto(s)
Adenosina Difosfato/metabolismo , Adenosina Trifosfato/metabolismo , Transferasas Alquil y Aril/genética , Compuestos Heterocíclicos con 3 Anillos/farmacología , Ácidos Indolacéticos/farmacología , Lactonas/farmacología , Prunus persica/enzimología , Prunus persica/fisiología , Transferasas Alquil y Aril/metabolismo , Citocininas/farmacología , Regulación de la Expresión Génica de las Plantas/efectos de los fármacos , Genes de Plantas , Tallos de la Planta/genética , Prunus persica/efectos de los fármacos , Prunus persica/genética
14.
Zhonghua Nan Ke Xue ; 23(8): 680-686, 2017 Aug.
Artículo en Zh | MEDLINE | ID: mdl-29726640

RESUMEN

OBJECTIVE: To investigate the feasibility of establishing a model of allograft penile transplantation in adult beagle dogs and explore the conditions for constructing a stable animal model of penis transplant. METHODS: Following the principles of similarity, repeatability, feasibility, applicability, and controllability in the construction of experimental animal models, we compared the major anatomic features of the penis of 20 adult beagle dogs with those of 10 adult men. Using microsurgical techniques, we performed cross-transplantation of the penis in the 20 (10 pairs) beagle dogs and observed the survival rate of the transplanted penises by FK506+MMF+MP immune induction. We compared the relevant indexes with those of the 10 cases of microsurgical replantation of the amputated penis. RESULTS: High similarities but no statistically significant differences were observed in penile anatomic features between the 20 beagle dogs and 10 men. All the 10 cases of cross-transplantation of the penis were successfully completed in the 20 beagle dogs, of which the transplanted glans survived with normal micturition in 12 but developed necrosis in the other 8; the success rate of one-time venous anastomosis was 95.0% (38/40) and that of one-time arterial anastomosis was 87.5% (35/40), with an average vascular anastomosis time of (71.0±9.0) minutes, a mean operation time of (133.0±10.3) minutes, and a mean blood loss of (135.8±41.4) ml. In the 10 cases of penile replantation, the success rate of one-time venous anastomosis was 100% (20/20) and that of one-time arterial anastomosis was 90.0% (18/20), with an average vascular anastomosis time of (65.0±7.9) minutes, a mean operation time of (117.4±10.0) minutes, and a mean blood loss of (85.0±10.8) ml. In the 12 cases of replantation of the amputated penis, the success rate of one-time venous anastomosis was 100% (24/24) and that of one-time arterial anastomosis was 95.8% (23/24), with an average vascular anastomosis time of (79.0±17.6) minutes, a mean operation time of (125.0±20.6) minutes, and a mean blood loss of (140.0±44.3) ml. No statistically significant differences were found in the relevant indexes among the three groups. CONCLUSIONS: The anatomic structure of the corpus cavernosum penis of beagle dogs is highly similar to that of men, almost the same in cross-section anatomy. Microsurgical replantation and allograft transplantation of the penis were both successfully performed in beagle dogs, which showed similar operative indexes to those of human penile replantation. The construction of the allograft penile transplantation model in adult beagle dogs is feasible clinically, with the advantages of operability and repeatability.


Asunto(s)
Supervivencia de Injerto , Modelos Animales , Trasplante de Pene , Reimplantación , Adulto , Anastomosis Quirúrgica , Animales , Arterias/cirugía , Perros , Estudios de Factibilidad , Humanos , Masculino , Microcirugia , Necrosis/etiología , Tempo Operativo , Pene/anatomía & histología , Pene/patología , Complicaciones Posoperatorias/etiología , Tasa de Supervivencia , Micción , Venas/cirugía
15.
Zhonghua Nan Ke Xue ; 22(6): 511-515, 2016 Jun.
Artículo en Zh | MEDLINE | ID: mdl-28963839

RESUMEN

OBJECTIVE: To evaluate the effect of ejaculatory duct dilation combined with seminal vesicle clysis in the treatment of refractory hematospermia. METHODS: Using ureteroscopy, we treated 32 patients with refractory hematospermia by transurethral dilation of the ejaculatory duct combined with clysis of the seminal vesicle with diluent gentamicin. RESULTS: The operation was successfully accomplished in 31 cases, with the mean operation time of 32 (26-47) minutes. The patients were followed up for 6-39 (mean 23.6) months. No complications, such as urinary incontinence and retrograde ejaculation, were found after operation. Hematospermia completely disappeared in 27 cases, was relieved in 1, and recurred in 3 after 3 months postoperatively. Those with erectile dysfunction or mental anxiety symptoms showed significantly decreased scores of IIEF-Erectile Function (IIEF-EF) and Self-Rating Anxiety Scale (SAS). CONCLUSIONS: Ejaculatory duct dilation combined with seminal vesicle clysis under the ureteroscope, with its the advantages of high effectiveness and safety, minimal invasiveness, few complications, and easy operation, deserves general clinical application in the treatment of refractory hematospermia.


Asunto(s)
Conductos Eyaculadores/cirugía , Hematospermia/cirugía , Vesículas Seminales/cirugía , Dilatación , Enfermedades de los Genitales Masculinos , Humanos , Masculino , Periodo Posoperatorio , Recurrencia , Ureteroscopía
16.
Cell Cycle ; 23(6): 645-661, 2024 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-38842275

RESUMEN

Bladder cancer (BC) is one of the most common malignant neoplasms worldwide. Competing endogenous RNA (ceRNA) networks may identify potential biomarkers associated with the progression and prognosis of BC. The OCT4-pg5/miR-145-5p/OCT4B ceRNA network was found to be related to the progression and prognosis of BC. OCT4-pg5 expression was significantly higher in BC cell lines than in normal bladder cells, with OCT4-pg5 expression correlating with OCT4B expression and advanced tumor grade. Overexpression of OCT4-pg5 and OCT4B promoted the proliferation and invasion of BC cells, whereas miR-145-5p suppressed these activities. The 3' untranslated region (3'UTR) of OCT4-pg5 competed for miR-145-5p, thereby increasing OCT4B expression. In addition, OCT4-pg5 promoted epithelial-mesenchymal transition (EMT) by activating the Wnt/ß-catenin pathway and upregulating the expression of matrix metalloproteinases (MMPs) 2 and 9 as well as the transcription factors zinc finger E-box binding homeobox (ZEB) 1 and 2. Elevated expression of OCT4-pg5 and OCT4B reduced the sensitivity of BC cells to cisplatin by reducing apoptosis and increasing the proportion of cells in G1. The OCT4-pg5/miR-145-5p/OCT4B axis promotes the progression of BC by inducing EMT via the Wnt/ß-catenin pathway and enhances cisplatin resistance. This axis may represent a therapeutic target in patients with BC.


Asunto(s)
Proliferación Celular , Progresión de la Enfermedad , Transición Epitelial-Mesenquimal , Regulación Neoplásica de la Expresión Génica , MicroARNs , Factor 3 de Transcripción de Unión a Octámeros , Regulación hacia Arriba , Neoplasias de la Vejiga Urinaria , Humanos , Neoplasias de la Vejiga Urinaria/genética , Neoplasias de la Vejiga Urinaria/patología , Neoplasias de la Vejiga Urinaria/metabolismo , Factor 3 de Transcripción de Unión a Octámeros/metabolismo , Factor 3 de Transcripción de Unión a Octámeros/genética , MicroARNs/genética , MicroARNs/metabolismo , Línea Celular Tumoral , Proliferación Celular/genética , Regulación hacia Arriba/genética , Transición Epitelial-Mesenquimal/genética , Seudogenes/genética , Vía de Señalización Wnt/genética , Masculino , Femenino , Animales , Persona de Mediana Edad , Invasividad Neoplásica , Resistencia a Antineoplásicos/genética , Cisplatino/farmacología , Ratones , Movimiento Celular/genética , Ratones Desnudos
17.
Zhonghua Nan Ke Xue ; 19(7): 617-21, 2013 Jul.
Artículo en Zh | MEDLINE | ID: mdl-23926678

RESUMEN

OBJECTIVE: To evaluate the clinical efficacy of transrectal 125 I seeds implantation brachytherapy (BT) combined with intermittent hormonal therapy (IHT) in the treatment of locally advanced prostate cancer. METHODS: We treated 27 patients with locally advanced prostate cancer by transrectal 125I seeds implantation BT combined with IHT, and dynamically observed the changes in the PSA level, prostate volume, maximum urinary flow rate (Qmax) and International Prostate Symptoms Score (IPSS). RESULTS: All the implantation procedures were completed smoothly, lasting 20 to 35 minutes, with 40 to 58 seeds implanted. At 6 months after implantation, the PSA level was < 0.2 microg/L in all the patients (< 0.1 microg/L in 19 cases), the prostate volume was significantly reduced (P < 0.05), and Qmax and IPSS remarkably improved (P < 0.05). At 3 years after implantation, 19 cases were in the first cycle and the other 8 in the third cycle of IHT, of which 2 progressed to androgen-independent prostate cancer, and another 2 developed early bone metastasis. The rates of 3-year biochemically and clinically progression-free survival were 70.3% and 85.2%, respectively, and the rate of therapeutic effectiveness was 92.6%. No severe complications occurred in any of the cases. CONCLUSION: Transrectal 125I seeds implantation BT combined with IHT is a safe and minimally invasive procedure for locally advanced prostate cancer, which can effectively retard its clinical progression with no such complications as severe urethral, rectal or erectile dysfunction.


Asunto(s)
Braquiterapia , Hormonas/uso terapéutico , Radioisótopos de Yodo/administración & dosificación , Neoplasias de la Próstata/radioterapia , Neoplasias de la Próstata/terapia , Anciano , Terapia Combinada , Humanos , Radioisótopos de Yodo/uso terapéutico , Masculino , Resultado del Tratamiento
18.
J Agric Food Chem ; 71(23): 8846-8858, 2023 Jun 14.
Artículo en Inglés | MEDLINE | ID: mdl-37262364

RESUMEN

Soil salinity is a major conlinet limiting sustainable agricultural development in peach tree industry. In this study, lipid metabolomic pathway analysis indicated that phosphatidic acid is essential for root resistance to salt stress in peach seedlings. Through functional annotation analysis of differentially expressed genes in transcriptomics, we found that MAPK signaling pathway is closely related to peach tree resistance to salt stress, wherein PpMPK6 expression is significantly upregulated. Under salt conditions, the OE-PpMPK6 Arabidopsis thaliana (L.) Heynh. line showed higher resistance to salt stress than WT and KO-AtMPK6 lines. Furthermore, we found that the Na+ content in OE-PpMPK6 roots was significantly lower than that in WT and KO-AtMPK6 roots, indicating that phosphatidic acid combined with PpMPK6 activated the SOS1 (salt-overly-sensitive 1) protein to enhance Na+ efflux, thus alleviating the damage caused by NaCl in roots; these findings provide insight into the salt stress-associated transcriptional regulation.


Asunto(s)
Arabidopsis , Plantones , Plantones/genética , Transcriptoma , Tolerancia a la Sal/genética , Ácidos Fosfatidicos , Estrés Salino , Arabidopsis/metabolismo , Lecitinas , Regulación de la Expresión Génica de las Plantas , Raíces de Plantas/metabolismo
19.
Plants (Basel) ; 12(8)2023 Apr 10.
Artículo en Inglés | MEDLINE | ID: mdl-37111820

RESUMEN

Nitrogen availability and uptake levels can affect nutrient accumulation in plants. In this study, the effects of valine and urea supplementation on the growth of new shoots, lignin content, and carbon and the nitrogen metabolism of 'Ruiguang 39/peach' were investigated. Relative to fertilization with urea, the application of valine inhibited shoot longitudinal growth, reduced the number of secondary shoots in autumn, and increased the degree of shoot lignification. The application of valine also increased the protein level of sucrose synthase (SS) and sucrose phosphate synthase (SPS) in plant leaves, phloem, and xylem, thereby increasing the soluble sugar and starch content. It also resulted in an increase in nitrate reductase (NR), glutamine synthase (GS), and glutamate synthase (GOGAT) protein levels, with an increase in plant contents of ammonium nitrogen, nitrate nitrogen, and soluble proteins. Although urea application increased the protein level of carbon- and nitrogen-metabolizing enzymes, the increase in plant growth reduced the overall nutrient accumulation and lignin content per unit tree mass. In conclusion, the application of valine has a positive effect on increasing the accumulation of carbon and nitrogen nutrients in peach trees and increasing the lignin content.

20.
Plants (Basel) ; 12(8)2023 Apr 20.
Artículo en Inglés | MEDLINE | ID: mdl-37111948

RESUMEN

The main peach-producing area in Shandong is an important peach fruit-producing area in China. Understanding the nutritional properties of the soil in peach orchards helps us to understand the evolution of soil properties and adjust management methods in a timely manner. This study focuses on 52 peach orchards in the main peach-producing area in Shandong as the research object. The spatiotemporal changes in soil traits and their influential factors were studied in depth, and the changes in soil fertility were effectively evaluated. The results showed that the input of nitrogen, phosphorus and potassium from organic fertilizer in 2021 was significantly higher than that in 2011, while the input of fertilizer in 2011 was significantly higher than that in 2021. Compared with traditional parks, both organic fertilizer inputs and chemical fertilizer inputs in demonstration parks showed a significant downwards trend. There was no significant change in pH values between 2011 and 2021. In 2021, the soil organic matter (SOM) contents of the 0-20 cm and 20-40 cm layers were 24.17 g·kg-1 and 23.38 g·kg-1, respectively, an increase of 29.3% and 78.47% over the values measured in 2011. Compared with 2011, the content of soil alkaloid nitrogen (AN) decreased significantly in 2021, and the contents of available phosphorus (AP) and available potassium (AK) in the soil increased significantly. According to the calculation results of the comprehensive fertility index (IFI) value, we found that in 2021, compared with 2011, the quality of soil fertility improved, most of which was at the medium and high levels. The research results show that the fertilizer-saving and synergistic approach in peach orchards in China significantly improved the soil nutrition. In the future, research on suitable comprehensive technologies should be strengthened in the management of peach orchards.

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