• 제목/요약/키워드: Plant growth hormone

검색결과 154건 처리시간 0.02초

당근 배양세포의 생육에 미치는 수종 Hormone의 영향 (The Effects of Various Hormones on Growth of Carrot Tissue Culture)

  • 강영희
    • Journal of Plant Biology
    • /
    • 제20권2호
    • /
    • pp.63-69
    • /
    • 1977
  • Experiments were conducted to investigate the effects of several hormones on the growth of suspension culture of carrot (Daucus carota L.) cells, where changes in pH and the amount of $NH_4-Nin$ the medium were observed with regard to growth. A treatment with 2,4-D at $10^{-5}M$ resulted in a highest rate of growth; the hormone at this concentration caused an increase in dry weight by about 40 to 50% over the control, measured at a stationary phase. It was thus indicated that 2,4-D at $10^{-5}M$ provided the optimal condition for the suspension culture. Changes in pH of the medium were found to be affected by hormonal treatments during the first 2-3 days following the inoculation, after which the pattern of pH changes in hormone enriched media paralleled that of the control. Subsequent changes of $NH_4-N and NO_3-N$ from the medium by the cells, and also by growth of the cells. The uptake of $NH_4-N$ by the cells did not appear to be influenced by hormonal treatments. At a stationary phase, a considerable amout of $NO_3-N$ played a more important role than $NH_4-N$ in the growth of the carrot cell suspension culture.

  • PDF

Tyrosine phosphorylation as a signaling component for plant improvement

  • Park, Youn-Il;Yang, Hyo-Sik;Oh, Man-Ho
    • Journal of Plant Biotechnology
    • /
    • 제42권4호
    • /
    • pp.277-283
    • /
    • 2015
  • Plant genome analyses, including Arabidopsis thaliana showed a large gene family of plant receptor kinases with various extracellular ligand-binding domain. Now intensively studies to understand physiological and cellular functions for higher plant receptor kinases in diverse and complex biological processes including plant growth, development, ligands perception including steroid hormone and plant-microbe interactions. Brassinosteroids (BRs) as a one of well know steroid hormone are plant growth hormones that control biomass accumulation and also tolerance to many biotic and abiotic stress conditions and hence are of relevance to agriculture. BRI1 receptor kinase, which is localized in plasma membrane in the cell sense BRs and it bind to a receptor protein known as BRASSINOSTEROID INSENSITIVE 1 (BRI1). Recently, we reported that BRI1 and its co-receptor, BRI1-ASSOCIATED KINASE (BAK1) autophosphorylated on tyrosine residue (s) in vitro and in vivo and thus are dual-specificity kinases. Other plant receptor kinases are also phosphorylated on tyrosine residue (s). Post-translational modifications (PTMs) can be studied by altering the residue modified by directed mutagenesis to mimic the modified state or to prevent the modification. These approaches are useful to not only characterize the regulatory role of a given modification, but may also provide opportunities for plant improvement.

Salicylic Acid as a Safe Plant Protector and Growth Regulator

  • Koo, Young Mo;Heo, A Yeong;Choi, Hyong Woo
    • The Plant Pathology Journal
    • /
    • 제36권1호
    • /
    • pp.1-10
    • /
    • 2020
  • Since salicylic acid (SA) was discovered as an elicitor of tobacco plants inducing the resistance against Tobacco mosaic virus (TMV) in 1979, increasing reports suggest that SA indeed is a key plant hormone regulating plant immunity. In addition, recent studies indicate that SA can regulate many different responses, such as tolerance to abiotic stress, plant growth and development, and soil microbiome. In this review, we focused on the recent findings on SA's effects on resistance to biotic stresses in different plant-pathogen systems, tolerance to different abiotic stresses in different plants, plant growth and development, and soil microbiome. This allows us to discuss about the safe and practical use of SA as a plant defense activator and growth regulator. Crosstalk of SA with different plant hormones, such as abscisic acid, ethylene, jasmonic acid, and auxin in different stress and developmental conditions were also discussed.

침수에 의한 식물의 생장 촉진과 호르몬들의 작용 네트워크 (Promotion of Plant Growth by Submergence and the Action Network of Hormones)

  • 조영준;이영나;박웅준
    • 생명과학회지
    • /
    • 제15권1호
    • /
    • pp.112-117
    • /
    • 2005
  • 하천변에 사는 식물들은 침수 저항성을 갖추고 있는데 그중 Ranunculus속이나 Rumex속에 속하는 일부 반수생 식물들에서 볼 수 있는 것처럼, 엽병이 급격한 생장을 일으켜 잎이 수표면에 이르게 함으로써 호흡할 수 있는 조건을 확보하는 현상은 식물체내에 축적된 에틸렌에 의하여 매개되는 현상이다. 침수 조건에서는 식물 조직 내에 에틸렌이 축적되며, 축적된 에틸렌은 옥신 등 다른 식물호르몬에 대한 조직의 감수성을 증가시켜 생장을 촉진한다. 증가된 생장으로 잎이 수표면에 이르게 되면 다시 공기를 접촉하여 호흡할 수 있게 되고, 식물체내에 축적되었던 에틸렌은 대기 중으로 확산하여 나가게 되므로 체내 에틸렌 농도가 감소하여 생장률이 침수 이전 수준으로 되돌아간다. 에틸렌에 의한 옥신의 감수성 증가는 선량 반응 곡선에 비추어 수용체의 친화도 증가가 수반되는 것으로 생각되는데, 아직 옥신 수용체가 밝혀지지 않아 분자생물학적 기작은 연구되어야 할 과제로 남아있다. 최근 옥신 수용체 발견의 가능성이 높아지고 있으며, 따라서 에틸렌에 의한 옥신 수용체의 옥신에 대한 감수성 조절기작을 탐구할 수 있는 길이 열릴 것으로 기대된다.

Structure and Function of the Phytochromes: Light Regulation of Plant Growth and Development

  • Park, Chung-Mo;Song, Pill-Soon
    • Journal of Photoscience
    • /
    • 제10권1호
    • /
    • pp.157-164
    • /
    • 2003
  • Light exerts two primary roles in plant growth and development. Plants acquire all biochemical energy required for growth and propagation solely from light energy via photosynthesis. In addition, light serves as a medium through which plants recognize environmental fluctuations, such as photoperiod and presence of neighboring animals and plants. Plants therefore constantly monitor the direction, intensity, duration, and wavelength of environmental light and integrate these light signals into the intrinsic regulatory programs to achieve an optimized growth in a given light condition. Although light regulates all aspects of plant growth and developmental aspects, the molecular mechanisms and signaling cascades involved have not been well established until recently. However, recent advances in genetic tools and plant transformation techniques greatly facilitated the elucidation of molecular events in plant photomorphogenesis. This mini-review summarizes the gist of recent findings in deetiolation and suppression of shade avoidance response as classic examples of the phytochrome-mediated photomorphogenesis.

  • PDF

식물홀몬 및 생장조절물질의 생물검정기술 II. Abscisic Acid 및 Brassinolide (Bioassays of Plant Hormones and Plant Growth Regulating Substances II. Abscisic Acid and Brassinolide)

  • 최충돈
    • 한국작물학회지
    • /
    • 제34권s01호
    • /
    • pp.16-25
    • /
    • 1989
  • A bioassay is a test system using a living organism (in whole or in part) to determine the presence or relative potency of chemical substances. The development and uses of bioassay are intimately linked to the discovery and characterization of the major classes of plant hormones. An application of this relationship is helpful for understanding the concept of plant hormones as well as the use of bioassay. And plant bioassay have been development and employed not only for the discovery and characterization of the biological activity of plant growth regulators but also have served several important secondary roles. The ideal bioassay should possess the characteristic of high specificity. great sensitivity. short response time, low cost and ease of obtaining plant material. acceptable ease of manipulation, and minimal space and equipment requirements.

  • PDF

Use of plant growth-promoting rhizobacteria to control stress responses of plant roots

  • Kang, Bin-Goo;Kim, Woo-Taek;Yun, Hye-Sup;Chang, Soo-Chul
    • Plant Biotechnology Reports
    • /
    • 제4권3호
    • /
    • pp.179-183
    • /
    • 2010
  • Ethylene is a key gaseous hormone that controls various physiological processes in plants including growth, senescence, fruit ripening, and responses to abiotic and biotic stresses. In spite of some of these positive effects, the gas usually inhibits plant growth. While chemical fertilizers help plants grow better by providing soil-limited nutrients such as nitrogen and phosphate, overusage often results in growth inhibition by soil contamination and subsequent stress responses in plants. Therefore, controlling ethylene production in plants becomes one of the attractive challenges to increase crop yields. Some soil bacteria among plant growth-promoting rhizobacteria (PGPRs) can stimulate plant growth even under stressful conditions by reducing ethylene levels in plants, hence the term "stress controllers" for these bacteria. Thus, manipulation of relevant genes or gene products might not only help clear polluted soil of contaminants but contribute to elevating the crop productivity. In this article, the beneficial soil bacteria and the mechanisms of reduced ethylene production in plants by stress controllers are discussed.

24-Epibrassinolide Modulate Cellular and Organogenic Response of Explants of Brassica Species, in vitro Culture

  • Rocha Andrea da S.R.;Coutinho Camila M.;Braga Eugenia J.B.;Peters Jose A.;Binsfeld Pedro Canisio
    • Journal of Plant Biotechnology
    • /
    • 제7권3호
    • /
    • pp.161-167
    • /
    • 2005
  • Brassinosteroids are steroidal plant hormones and are known to modulate physiological and cellular response in a wide range of plant species. Considerable insights has been achieved of the physiological role of brassinosteroid in Brassica species in the past few years, but their effect on direct organogenesis has not been extensively studied. In this sense, under optimal basal media and growth conditions we tested the cellular and organogenic response of 24-epibrassinolide (EBL) in a variable concentration (0.1 to $5.0\;{\mu}M$) and Zeatin (Z) (1.0 to $100\;{\mu}M$) and their synergic effect on hypocotyl explants of cauliflower and broccoli. The isolated EBL accelerated cell elongation and promotes direct organogenesis. One micromolar EBL + $10\;{\mu}M$ of Z was the most efficient combination for cell elongation, cell differentiation as well as for organogenesis. A suppressing effect on root induction was confirmed for all the tested hormone levels. The general results indicate a synergic effect of EBL-Z and EBL potentates Zeatin activity, at least in certain tissues. Besides de genetic factors, we can speculate that the natural hormone concentration in the explants might affect the responses by application of exogenous growth regulators. Experiments with new plant growth regulators, like brassinolide, are important aiming to maximize or accelerate plant regeneration for in vitro multiplication or for genetic transformation.

융복합 디지털 콘텐츠를 활용한 고강도 인터벌 운동이 중년여성의 성장호르몬과 피로물질에 미치는 영향 (Effects of Using Convergence Digital Contents for High-Intensity Interval Exercise on Growth Hormone and Fatigue Elements in Middle Aged Women)

  • 백순기;민영실
    • 디지털융복합연구
    • /
    • 제13권9호
    • /
    • pp.523-530
    • /
    • 2015
  • 본 연구는 8주간 고강도 인터벌 운동이 비만중년여성의 성장호르몬과 피로물질에 미치는 영향을 알아보기 위한 것으로, 40대 비만 중년여성 20명을 임의로 선정하여 실험군 10명, 통제군 10명을 배정하였다. 실험군은 고강도 인터벌 운동을 8주간 4일 35분 운동을 실시하고 운동 전과 8주 후의 성장호르몬과 피로물질의 효과를 분석하였으며, 다음과 같은 결론을 얻었다. 첫째, 8주간 고강도 인터벌 운동에 따른 성장호르몬은 실험군에서 운동전 보다 8주 후에 유의한 증가를 보였다. 둘째, 8주간 고강도 인터벌 운동에 따른 피로물질은 실험군에서 운동전 보다 8주 후에 유의한 감소를 보였다. 결론적으로 8주간 고강도 인터벌 운동은 성장호르몬을 증가키고 피로물질을 감소시켜 피로예방, 관상동맥질환 및 심혈관질환 위험을 감소시키는데 긍정적인 영향을 미칠 수 있는 가능성이 있다고 생각된다.

Effect of GA3 and BA on Plant Growth of Ranunculus Cultivars

  • Kwak, Ho-Geun;Lee, Young Ran;Choi, Youn Jung;Lee, Su Young;Kang, Yun-Im
    • 화훼연구
    • /
    • 제26권4호
    • /
    • pp.179-186
    • /
    • 2018
  • Ranunculus asiaticus characterizes colorful and attractive flower shapes that are related with the ornamental value of bulbous plants. Improving ornamental value of bulbous flowers has been the general goal of floricultural market. Gibberellic acid ($GA_3$) and benzyladenine (BA) play an important role in growth and developmental processes in floriculture. Combinational treatments of these two hormones have been used in floriculture to improve flower quality. We assessed the effects of combined $GA_3$ and BA, as well as the individual effects of each hormone, on growth characteristics using soil drench application to eight R. asiaticus cultivars, 'Giallo Millepetali', 'Bianco Millepetali', 'Arancio Millepetali', 'Rosa SC', 'Arancio Pratolino', 'Giallo Pratolino', 'Bianco Pratolino', and 'Rosa Ch Pratolino'. $GA_3$ treatments increased plant height and first flower size of R. asiaticus cultivars. Moreover, about 5 to 9 days to flowering were averagely shortened by $GA_3$ treatments compared to controls. On the other hand, the opposites, including first flower size and days to flowering, were observed for cultivars treated with BA, compared with controls. Treatments of $GA_3$ + BA generally affected growth traits, such as plant height, flower size, and the timing of flowering on some R. asiaticus cultivars. In particular, about 5 to 6 days to flowering were reduced on average by Treatments of $GA_3$ + BA. Our results showed positive growth effects, including plant height, days to flowering, first flower height, number of flowers from the application of individual and combined hormones to R. asiaticus cultivars and demonstrate a role for these hormones in future bulbous floriculture.