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31.
Payal Patwari Veronika Salewski Katharina Gutbrod Tino Kreszies Brigitte Dresen‐Scholz Helga Peisker Ulrike Steiner Andreas J. Meyer Lukas Schreiber Peter Drmann 《The Plant journal : for cell and molecular biology》2019,98(4):727-744
Waxes are components of the cuticle covering the aerial organs of plants. Accumulation of waxes has previously been associated with protection against water loss, therefore contributing to drought tolerance. However, not much information is known about the function of individual wax components during water deficit. We studied the role of wax ester synthesis during drought. The wax ester load on Arabidopsis leaves and stems was increased during water deficiency. Expression of three genes, WSD1, WSD6 and WSD7 of the wax ester synthase/diacylglycerol acyltransferase (WS/DGAT or WSD) family was induced during drought, salt stress and abscisic acid treatment. WSD1 has previously been identified as the major wax ester synthase of stems. wsd1 mutants have shown reduced wax ester coverage on leaves and stems during normal or drought condition, while wax ester loads of wsd6, wsd7 and of the wsd6wsd7 double mutant were unchanged. The growth and relative water content of wsd1 plants were compromised during drought, while leaf water loss of wsd1 was increased. Enzyme assays with recombinant proteins expressed in insect cells revealed that WSD6 and WSD7 contain wax ester synthase activity, albeit with different substrate specificity compared with WSD1. WSD6 and WSD7 localize to the endoplasmic reticulum (ER)/Golgi. These results demonstrated that WSD1 is involved in the accumulation of wax esters during drought, while WSD6 and WSD7 might play other specific roles in wax ester metabolism during stress. 相似文献
32.
Methanolic extracts from the biomass of shoot-differentiating and undifferentiating callus cultures of Schisandra chinensis growing respectively on six and two different variants of the Murashige and Skoog (MS) medium, with different concentrations of plant growth regulators, BA (N6-benzyladenine) and NAA (α-naphthaleneacetic acid) were analyzed for the accumulation of two lignans–schisantherin A and gomisin G, using the HPLC method. The amounts of the two compounds in the biomass extracts from shoot-differentiating callus cultures were dependent on the concentration of plant growth regulators in the MS medium. The highest amounts of both lignans were obtained on the MS medium supplemented with 3 mg l−1 BA and 1 mg l−1 NAA. The maximum amount of schisantherin A (33.45 mg 100 g−1 DW) was about 1.3 times higher than in the extracts from the leaves and fruits of parent plants. This is the most important result potentially promising from a practical point of view. 相似文献
33.
Human carboxylesterase 1 (hCES1) is an enzyme that plays an important role in hydrolysis of pharmaceuticals in the human liver. In this study, elucidation of the chiral recognition ability of hCES1 was attempted using indomethacin esters in which various chiral alcohols were introduced. Indomethacin was condensed with various chiral alcohols to synthesize indomethacin esters. The synthesized esters were hydrolyzed with a human liver microsome (HLM) solution and a human intestine microsome (HIM) solution. High hydrolytic rate and high stereoselectivity were confirmed in the hydrolysis reaction in the HLM solution but not in the HIM solution, and these indomethacin esters were thought to be hydrolyzed by hCES1. Next, these indomethacin esters were hydrolyzed in recombinant hCES1 solution and the hydrolysis rates of the esters were calculated. The stereoselectivity confirmed in HLM solution was also confirmed in the hCES1 solution. In the hydrolysis reaction of esters in which a phenyl group is bonded next to the ester, the Vmax value of the (R) form was 10 times larger than that of the (S) form. 相似文献
34.
Castelfranco PA 《Photosynthesis research》2007,91(1):25-36
Our research on chlorophyll biosynthesis, over a period of approximately twenty years, has been described, emphasizing those
areas in which our laboratory made significant and timely contributions. References to some of our most important articles
are included. Portions of the chlorophyll biosynthetic pathway, in which our own laboratory was not involved, for example,
the reduction of protochlorophyllide to chlorophyllide and the phytylation of the latter to yield chlorophyll a, have not been covered in this article. Those events which preceded my involvement with chlorophyll biosynthesis, but which
contributed to the formation of my own scientific personality, are mentioned briefly in the Introduction. My non-scientific
avocations have been included at the request of the reviewers and Govindjee. 相似文献
35.
36.
Primary cultures of neonatal cardiac myocytes were used to determine the effects of tumor-promoting phorbol esters on ribosomal RNA (rRNA) synthesis during myocyte growth. Treatment of myocytes with phorbol-12,13-dibutyrate (PDBu) increased protein accumulation by 25% and RNA content by 20%. Rates of rRNA synthesis were measured to assess the mechanism by which rRNA accumulated during myocyte growth. Rates of rRNA synthesis were determined from the incorporation of [3H]uridine into UMP of purified rRNA and the specific radioactivity of the cellular UTP pool. After 24h of PDBu treatment, cellular rates of 18S and 28S rRNA synthesis were accelerated by 67% and 64%, respectively. The increased rate of rRNA synthesis accounted for the net increase in myocyte rRNA content after PDBu treatment. 相似文献
37.
Intact sediment cores were obtained from three New York lakes in May, July, and October 1981. Radioactive S (as 35SO
4
2−
) was added to the overlying water and cores were incubated without atmospheric exchange for one week near lake bottom temperatures.
Headspace flux of 02 as an index of sediment respiration rates varied among lakes and seasonally within lakes. Acidic South Lake had the lowest
respiration rate at all seasons and also the smallest net incorporation of the 35SO
4
2−
. Summer net isotope transformation into ester sulfate and non-HI reducible S (pyrite and C-bonded S) constituents was 88.6%,
89.4%, and 59.7% of total sediment isotope for Oneida, Deer, and South, respectively. Seasonal variation of net isotope incorporation
was observed in each lake as were differences in 35SO
4
2−
partitioning into major S pools. Of the S constituents analyzed, HCl digestible S (volatile sulfides) was the smallest pool,
while ester sulfate and non-HI reducible S together accounted for greater than 50% of S isotope transformation in all lakes.
In addition, ester sulfate is the major product of dissolved SO
4
2−
transformation and its formation results in less alkalinity generation than the formation of non-HI reducible S constituents.
Thus ester sulfate transformation processes must be considered in calculating alkalinity generation by lake sediments.
Financial support provided by Office of Water Research Technology (Project No. 13-096-NY).
Financial support provided by Office of Water Research Technology (Project No. 13-096-NY). 相似文献
38.
Phosphatases; origin,characteristics and function in lakes 总被引:14,自引:4,他引:14
Phosphatases catalyze the liberation of orthophosphate from organic phosphorus compounds. The total phosphatase activity in lake water results from a mixture of phosphatases localized on the cell surfaces of algae and bacteria and from dissolved enzymes supplied by autolysis or excretion from algae, bacteria and zooplankton. External lake water phosphatases usually have pH optima in the alkaline region. Acid phosphatases generally seem to be active in the internal cell metabolism. The synthesis of external alkaline phosphatases is often repressed at high phosphate concentrations and derepressed at low phosphate concentrations. Phosphatase activity has therefore been used as a phosphorus deficiency indicator in algae and in natural plankton populations. The possibilities for this interpretation of phosphatase activity in lake water are limited, however, and this is discussed. The in situ hydrolysis capacity, i.e. the rate by which orthophosphate is released from natural substrates, is unknown. However, we advocate that this process is important and that the rate of substrate supply, rather than phosphatase activity, limits the enzymatic phosphate regeneration. 相似文献
39.
Phenyl di-n-pentylphosphinate is a reasonably stable easily synthesized inhibitor of neuropathy target esterase (NTE) with low anticholinesterase activity. Like phenylmethylsulphonyl fluoride it protects hens against neuropathic effects of compounds such as diisopropylphosphorofluoridate. At intervals up to 15 days after dosing hens (10 mg/kg s.c. to inhibit 90% NTE) assays were made of catalytically active and of phosphinylated NTE in autopsy tissue. The sum of these components was always within the range of catalytic activity in undosed controls. However, the half-life of reappearance of active NTE was 2.07 days +/- 0.13 (SD, n = 6) for brain and 3.62 days +/- 0.23 (SD, n = 6) for spinal cord--shorter than after dosing with phenylmethylsulphonyl fluoride. It is proposed that: (1) The physiological turnover mechanism cannot distinguish between catalytically active and di-n-pentylphosphinylated NTE although initiation of organophosphate-induced delayed polyneuropathy might involve recognition of aged di-alkyl-phosphorylated NTE as "foreign". (2) The short half-lives indicate a slow spontaneous dephosphinylation of inhibited NTE occurs in vivo as well as de novo synthesis. The difference in half-lives for brain and spinal cord NTE may be due to different rates of synthesis de novo or (more likely) to different rates of spontaneous reactivation of the inhibited NTE in the two tissues. 相似文献
40.
以羰基二咪唑为催化剂,生物素与6-氨基己酸甲酯反应生成生物素-6-氨基己酸甲酯,该化合物通过酸碱萃取与原料分离,皂化后生成生物素氨基己酸.生物素氨基己酸在吡啶存在下与三氟乙酸对硝基苯酯进行转酯反应即得生物素对硝基苯酯.最后经光谱、色谱及核酸杂交证实了长臂生物素对硝基苯酯的化学结构和生物学活性. 相似文献