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1.
BMC Genomics ; 25(1): 539, 2024 May 31.
Artículo en Inglés | MEDLINE | ID: mdl-38822248

RESUMEN

Squamous promoter binding protein-like (SPL) genes encode plant-specific transcription factors (TFs) that play essential roles in modulating plant growth, development, and stress response. Pea (Pisum sativum L.) is a coarse grain crop of great importance in food production, biodiversity conservation and molecular genetic research, providing genetic information and nutritional resources for improving agricultural production and promoting human health. However, only limited researches on the structure and functions of SPL genes exist in pea (PsSPLs). In this study, we identified 22 PsSPLs and conducted a genome-wide analysis of their physical characteristics, chromosome distribution, gene structure, phylogenetic evolution and gene expression patterns. As a result, the PsSPLs were unevenly distributed on the seven chromosomes of pea and harbored the SBP domain, which is composed of approximately 76 amino acid residues. The phylogenetic analysis revealed that the PsSPLs clustered into eight subfamilies and showed high homology with SPL genes in soybean. Further analysis showed the presence of segmental duplications in the PsSPLs. The expression patterns of 22 PsSPLs at different tissues, developmental stages and under various stimulus conditions were evaluated by qRT-PCR method. It was found that the expression patterns of PsSPLs from the same subfamily were similar in different tissues, the transcripts of most PsSPLs reached the maximum peak value at 14 days after anthesis in the pod. Abiotic stresses can cause significantly up-regulated PsSPL19 expression with spatiotemporal specificity, in addition, four plant hormones can cause the up-regulated expression of most PsSPLs including PsSPL19 in a time-dependent manner. Therefore, PsSPL19 could be a key candidate gene for signal transduction during pea growth and development, pod formation, abiotic stress and plant hormone response. Our findings should provide insights for the elucidating of development regulation mechanism and breeding for resistance to abiotic stress pea.


Asunto(s)
Regulación de la Expresión Génica de las Plantas , Filogenia , Pisum sativum , Proteínas de Plantas , Estrés Fisiológico , Factores de Transcripción , Pisum sativum/genética , Pisum sativum/crecimiento & desarrollo , Estrés Fisiológico/genética , Factores de Transcripción/genética , Factores de Transcripción/metabolismo , Proteínas de Plantas/genética , Proteínas de Plantas/metabolismo , Genoma de Planta , Familia de Multigenes , Perfilación de la Expresión Génica , Cromosomas de las Plantas/genética
2.
Zhongguo Shi Yan Xue Ye Xue Za Zhi ; 31(2): 602-606, 2023 Apr.
Artículo en Zh | MEDLINE | ID: mdl-37096542

RESUMEN

Transplantation-associated thrombotic microangiopathy (TA-TMA) is one of the serious complications mostly occurring within 100 days after hematopoietic stem cell transplantation (HSCT). Risk factors of TA-TMA include genetic predispositions, GVHD, and infections. The pathophysiological mechanisms of TA-TMA start with endothelial injury caused by complement activation, which leads to microvascular thrombosis, and microvascular hemolysis, ultimately resulting in multi-organ dysfunction. In recent years, the development of complement inhibitors has markedly improved the prognosis of TA-TMA patients. This review will give an update on risk factors, clinical manifestations, diagnosis, and treatment of TA-TMA, so as to provide references for clinical practice.


Asunto(s)
Trasplante de Células Madre Hematopoyéticas , Trombosis , Microangiopatías Trombóticas , Humanos , Microangiopatías Trombóticas/diagnóstico , Microangiopatías Trombóticas/etiología , Microangiopatías Trombóticas/terapia , Pronóstico , Trombosis/etiología , Factores de Riesgo , Trasplante de Células Madre Hematopoyéticas/efectos adversos
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