• Title/Summary/Keyword: starvation

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Transcriptional Induction of a Carbon Starvation Gene during Other Starvation and Stress Challenges in Pseudomonas putida MK1: A Role of a Carbon Starvation Gene in General Starvation and Stress Responses

  • Chitra, Subramanian;Lee, Ho-Sa;Kim, Youngjun
    • Journal of Microbiology
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    • v.37 no.3
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    • pp.141-147
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    • 1999
  • Thirteen transcriptionally-fused carbon starvation mutants, derived from Pseudomonas putida ATCC 12633, were analyzed for their survivability and transcriptional induction profiles upon carbon starvation. One of these mutants, MK114, which exhibited the lowest survivability and the highest induction rate, was selected and further examined under different starvation (nitrogen and phosphate) and stress (osmolarity, H2O2, salts, alcohol, and heat) conditions. Under all tested conditions MK114 induced ${\beta}$-galactosidase activity, implying that the interrupted gene (cst114) is a general starvation and stress response gene. The rate of induction ranged from 2.6-fold for phosphate starvation to 3.7-fold for osmotic shock. The mini-Tn5 flanking DNA was cloned from the chromosome of MK114. The cloned DNA fragment exhibited carbon starvation activity, indicating that this fragment contains a carbon starvation-related promoter region. This region was partially sequenced. Possible physiological roles of Cst114 in a carbon sensing mechanism and in other stress responses are also discussed.

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The FMRFamide Neuropeptide FLP-20 Acts as a Systemic Signal for Starvation Responses in Caenorhabditis elegans

  • Kang, Chanhee;Avery, Leon
    • Molecules and Cells
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    • v.44 no.7
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    • pp.529-537
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    • 2021
  • Most animals face frequent periods of starvation throughout their entire life and thus need to appropriately adjust their behavior and metabolism during starvation for their survival. Such adaptive responses are regulated by a complex set of systemic signals, including hormones and neuropeptides. While much progress has been made in identifying pathways that regulate nutrient-excessive states, it is still incompletely understood how animals systemically signal their nutrient-deficient states. Here, we showed that the FMRFamide neuropeptide FLP-20 modulates a systemic starvation response in Caenorhabditis elegans. We found that mutation of flp-20 rescued the starvation hypersensitivity of the G protein β-subunit gpb-2 mutants by suppressing excessive autophagy. FLP-20 acted in AIB neurons, where the metabotropic glutamate receptor MGL-2 also functions to modulate a systemic starvation response. Furthermore, FLP-20 modulated starvation-induced fat degradation in a manner dependent on the receptor-type guanylate cyclase GCY-28. Collectively, our results reveal a circuit that senses and signals nutrient-deficient states to modulate a systemic starvation response in multicellular organisms.

Cross-talk between Phosphate Starvation and Other Environmental Stress Signaling Pathways in Plants

  • Baek, Dongwon;Chun, Hyun Jin;Yun, Dae-Jin;Kim, Min Chul
    • Molecules and Cells
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    • v.40 no.10
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    • pp.697-705
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    • 2017
  • The maintenance of inorganic phosphate (Pi) homeostasis is essential for plant growth and yield. Plants have evolved strategies to cope with Pi starvation at the transcriptional, post-transcriptional, and post-translational levels, which maximizes its availability. Many transcription factors, miRNAs, and transporters participate in the Pi starvation signaling pathway where their activities are modulated by sugar and phytohormone signaling. Environmental stresses significantly affect the uptake and utilization of nutrients by plants, but their effects on the Pi starvation response remain unclear. Recently, we reported that Pi starvation signaling is affected by abiotic stresses such as salt, abscisic acid, and drought. In this review, we identified transcription factors, such as MYB, WRKY, and zinc finger transcription factors with functions in Pi starvation and other environmental stress signaling. In silico analysis of the promoter regions of Pi starvation-responsive genes, including phosphate transporters, microRNAs, and phosphate starvation-induced genes, suggest that their expression may be regulated by other environmental stresses, such as hormones, drought, cold, heat, and pathogens as well as by Pi starvation. Thus, we suggest the possibility of cross-talk between Pi starvation signaling and other environmental stress signaling pathways.

Expressional Analysis of Two Genes (Scd1 and Idi1) Down-regulated by Starvation Stress (영양고갈-스트레스에 의해서 하강발현하는 유전자(Scd1과 Idi1)의 분석)

  • Cho, Junho;Kwon, Young-Sook;Kim, Dong-Il;Kim, Bok Jo;Kwon, Kisang
    • Journal of Life Science
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    • v.24 no.7
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    • pp.762-768
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    • 2014
  • Diet exerts a major stress on the body and may affect gene expression and physiological functions. Understanding of cellular responses during starvation is necessary in developing strategies to reduce damage caused by diet. In this study, we isolated 10 genes (Comt, RGN, Scd1, Temt, Idi1, Fabp5, Car3, Cyp2c70, Pinx1, and Poldip3) that are down-regulated in starvation and are closely related to liver metabolism. Water supply during starvation had no effect on the induction of apoptosis, autophagy, and ERQC. The genes down-regulated by starvation were associated with many related pathways rather than limited to the liver homeostasis pathway. Water supply during starvation is important. However, maintaining NaCl homeostasis is more important. The results are thought to be closely related to gender-specific metabolism in starvation and NaCl.

Study on the construction of a starvation promoter vector system derived from Pseudomonas putida (Pseudomonas putida 에서 분리된 starvation promoter를 이용한 vector의 개발 및 응용에 관한 연구)

  • Kim, Young-Jun;Kim, Dae-Sun;Chung, Jae-Chun
    • Journal of the Korea Organic Resources Recycling Association
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    • v.11 no.3
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    • pp.67-74
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    • 2003
  • Starvation promoters can be utilized for in situ bioremediation and for the efficient bioprocessing. Previously we have cloned and characterized strong starvation promoters from envrionmentally relevant bacteria, Pseudomonas putida strains (Y. Kim, and A. Matin, J. Bacteriol. 177:1850-1859, 1995). Here we report the construction of the plasmid pYKS101 using one of the starvation promoters from P. putida MK1. The pYKS101 was found to be useful for a novel starvation promoter-driven gene expression system. Under this system, the target reporter gene, lacZ, was stably integrated into the chromosomal DNA of P. putida MK1. ${\beta}$-galactosidase activity was found to be four-fold higher upon carbon starvation than during exponential growth. The resultant recombinant strain is indigenous to the environment contaminated with various toxic materials, hence can be a good candidate for in situ bioremediation.

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SBR을 이용한 염분함유폐수의 처리시 호기성 및 혐기성 starvation이 생물학적 floc의 형태특성 변화에 미치는 영향

  • Kim, Sang-Su;Mun, Byeong-Hyeon;Seo, Gyu-Tae;Lee, Taek-Sun;Kim, Tae-Seong
    • Proceedings of the Korean Environmental Sciences Society Conference
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    • 2006.11a
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    • pp.362-364
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    • 2006
  • Starvation 동안 슬러지를 폭기시킨 경우 floc의 크기감소가 더 크게 일어났다. SBR의 재운전으로 회복된 floc의 크기는 슬러지를 폭기시키지 않은 경우 starvation 이전과 비교하여 더 커졌으며, 슬라지를 폭기시킨 경우 starvation 이전보다 작아졌다. Starvation 동안 슬러지를 폭기하지 않은 경우 fractal dimension은 큰 폭으로 감소하지만, 폭기하였을 때는 감소폭이 매우 작았다. 이후 SBR의 재운전으로 인한 fractal dimension은 증가하였다. 슬러지의 침강성은 starvation 동안 폭기한 경우 폭기하지 않은 경우보다 SBR 재운전 직후 슬러지의 침강성이 더 불량하였으며, starvation 동안 폭기하지 않았을 때 슬러지 침강성의 회복현상이 나타났지만, 폭기를 수행한 경우 침강성의 회복이 느리게 일어났다. Starvation 동안 슬러지의 폭기 및 비폭기 수행결과 침강성은 fractal dimension보다 floc의 크기에 더 크게 좌우되는 것으로 나타났다.

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Expressional Analysis of Two Genes (Got1 andMat1) Up-regulated by Starvation Stress (영양고갈-스트레스에 의해서 상승 발현하는 유전자(Got1과 Mat1)의 분석)

  • Park, Junseok;Kwon, Young-Sook;Lee, Eunryoung;Kwon, Kisang
    • Journal of Life Science
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    • v.24 no.6
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    • pp.686-693
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    • 2014
  • Restricted supply of nutrients may affect genes at the molecular level as well as physiological functions. Understanding the cellular responses during starvation is necessary for developing strategies to reduce damage caused by starvation stress. After 1 h of starvation, Got1 gene expression was increased but its expression returned to the normal state after 24 h. Mat1 gene expression continuously increased with starvation from 1 h until 24 hr. Rats starved for 1-3 days showed significant changes in expression of the Got1 and Mat1 genes, which were significantly reduced in the cerebral cortex and cerebellum. In the lung, gene expression was increased by starvation for 1-2 days but decreased on the third day. No differences were observed in gene expression in the heart. Strong Got1 lung gene expression was seen in the starvation group one day after restoration of the food supply. Muscle mass was significantly reduced at the start of starvation and remained the same after two days of starvation and one day after the food supply was restored. The Mat1 gene expression did not change. The Got1 was induced by NaCl and showed strong expression in the lung and the thymus, but the apparent decrease of the remaining changes were not observed in male rats. The Mat1 gene was not as sensitive as the Got1 gene to induction by NaCl. However, differences in gene induction by NaCl were evident between males and females, indicating that diet control of gene expression is associated with hormones.

Assessment of nutritional conditions of olive flounder (Paralichthys olivaceus) larvae and juveniles with special emphasis on metamorphosis and settlement

  • Gwak, Woo-Seok;Masaru Tanaka
    • Proceedings of the Korean Aquaculture Society Conference
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    • 2003.10a
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    • pp.76-77
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    • 2003
  • Olive flounder Paralichthys olivaceus larvae and early juveniles were reared for 43 days after hatching in order to observe the effects of starvation during development and metamorphosis. Morphological, histological and biochemical measurements were made to assess the nutritional condition during growth and starvation from pre-matamorphic through post-metamorphic phases. Two groups of fish were compared ; one with sufficient food supply and one under continuous starvation until death. Among morphometric analyses, both ratios of body height at anus/head height and pre-/post-anal lengths appeared to be sensitive to starvation during which substantial reduction was observed within a day of food deprivation. Histological variables as intestinal and rectal epithelial heights and gall bladder volume changed significantly with onset of starvation. The gut epithelial heights of starving fish decreased with advances in starvation, although they fluctuated during mid-metamorphic phase. In contrast, gall bladder volume increased remarkably soon after starvation. Ontogenetic changes in both gut epithelial height and gall bladder volume were evident, those associated with settlement and/or completion of metamorphosis. Abrupt decrease in the RNA/DNA ratios of starving fish were found right after onset of starvation. Even in the fed fish marked fluctuations in its ratios during metamorphosis were observed, evident by decreasing from late-metamorphic to post-metamorphic stages. These findings suggest that a combination of morphologically and histologically sensitive characteristics, and biochemical measurement could be utilized as a measure to evaluate nutritional condition related to starvation in wild olive flounder larvae and juveniles.

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Expression of Digestive Enzyme Genes in the Digestive Tract of the Two-spotted Cricket During Starvation (쌍별 귀뚜라미의 소화기관에서 기아에 의한 소화효소 유전자의 발현)

  • Lee, Nuri;Lee, Eun-Ryeong;Kwon, Kisang;Kwon, O-Yu
    • Journal of Life Science
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    • v.30 no.1
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    • pp.82-87
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    • 2020
  • The gene expression of amylase, trypsin, and lipase in the digestive organs of the two-spotted cricket (Gryllus bimaculatus) was tested to understand how it overcomes starvation. Amylase gene expression in the foregut was reduced by digesting no food until starvation-3 days. Although that expression persisted to starvation-6 days, it returned to normal at refeeding-2 days. The expression of trypsin peaked at around 8 times as starvation started and at around 4 times at starvation-3 days. After refeeding, trypsin expression rose up to 14 times and then fell back to normal as feeding continued. Lipase gene expression remained elevated at 1.5-2 times when starvation started and returned to normal at refeeding-2 days. In the midgut, amylase expression decreased until starvation-3 days, increasing to about 2 times at starvation-6 days; it did not rise again by refeeding. Trypsin was constantly expressed regardless of starvation and refeeding, while lipase expression was reduced by 0.6-0.7 times by starvation and refeeding. Amylase gene expression in the hindgut was 0.2-0.3 times lower than starvation-6 days, and it increased by 0.5 times on refeeding-1 day and more than 1.5 times on refeeding-3 days. The gene expression of trypsin was almost identical to amylase.

Effects of the Nitrate and Phosphate Starvation on the Biosynthesis of Phospholipid and the Composition of Fatty Acids in Chlorella Chloroplasts (Chlorella 엽록체의 인지질 생합성 및 지방산조성에 미치는 Nitrate와 Phosphate 결핍효과)

  • 이점규
    • Journal of Plant Biology
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    • v.31 no.3
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    • pp.187-196
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    • 1988
  • Chlorella ellipsoidea were cultured in "cold" media starvated with the nitrate and phsophate sources. The effects of the nitrate and phsophate starvation on the biosynthesis of phospholipid and the composition of fatty acids in chloroplasts isolated from these cells were analyzed. The syntheses of phosphatidylcholine and phosphatidylinositol in the nitrate and phosphate starvation were similarly inhibited as compared with the control but phsophatidylethanolamine synthesis in the nitrate starvation was extremely lower than that in the phosphate starvation. The major fatty acids utilized in phospholipid formation within chloroplasts were palmitic acid and linolenic aicd. However, palmitic acid and stearic acid were dominant in the condition of the nitrate starvation. The levels of palmitic acid were enhanced 3-fold than that of the control. These results suggest that the biosynthesis of phospholipid and the composition of fatty acids were affected by the nitrate and phosphate starvation in the culture media.ure media.

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