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Pishchalnikov Roman Y. Shubin Vladimir V. Razjivin Andrei. P. 《Photosynthesis research》2021,147(2):241-241
Photosynthesis Research - The funding statement in the first sentence of the Acknowledgements section in the original publication is incorrect. The corrected Acknowledgements section is printed below. 相似文献
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D. Southworth K. A. Platt-Aloia D. A. DeMason W. W. Thomson 《Sexual plant reproduction》1989,2(4):270-276
Summary Mature pollen of Phoenix dactylifera was freeze-fractured in germination medium. The surface of the generative cell was highly convoluted. Microtubules were not in close contact with the indentations. The vegetative cell membrane was appressed to the generative cell. Ordered ridges appeared in both fracture faces of the vegetative cell inner plasma membrane at the indentations. No ordered ridges were observed in the fracture faces of the generative cell. The nuclear envelopes of the vegetative and generative cells differed, with the generative cell having fewer and larger nuclear pores irregularly dispersed among porefree areas. These differences in plasma membrane and in nuclear envelope correlate with the subsequent differentiation of the two cells.Acknowledgements. We thank J.I. Stillman for technical assistance with the thin section preparations. This research was supported in part by NSF grant DCB-8607765 to W.W.T. 相似文献
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The original version of the article was published in Biologia 68 (6): 1198–1210 (2013), DOI: 10.2478/s11756-013-0268-1. Unfortunately, the original version of this article contains a mistake in Acknowledgements on page 1209. Here we display the corrected version of the Acknowledgements. 相似文献
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Osamu Takenaka 《Primates; journal of primatology》2006,47(4):402-402
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Gerald R. Allen 《Environmental Biology of Fishes》2000,58(4):468-468
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Acknowledgements for Refereeing 相似文献19.
L. -I. Larsson M.D. F. Sundler J. Alumets R. Håkanson O. B. Schaffalitzky de Muckadell J. Fahrenkrug 《Cell and tissue research》1977,181(3):361-368
Summary Immunocytochemically, secretin cells have been demonstrated to occur in the duodenum and jejunum of several mammals. Calculations on the relative frequency of such cells indicate that the bulk of secretin occurs in the jejunum, a fact supporting the view that secretin may be released by physiological stimulants other than hydrochloric acid. Electron microscopical identification of cat and pig secretin cells confirmed their identity with the ultrastructurally defined S cells, and staining experiments revealed that secretin cells were argyrophilic both with the method of Grimelius and with that of Hellerström and Hellman. Secretin cells are detected already in the 17-day old fetal rat duodenum and show a developmental pattern similar to that displayed by the gastrin cells. It is suggested that secretin may play a role in the early regulation of growth of the fetal gastrointestinal tract.
Acknowledgements: Supported by grants from the Danish and Swedish MRC 相似文献
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Mohammed Hadi Latifi Kunalan Ganthel Shanmugam Rukmanikanthan Azura Mansor Tunku Kamarul Mehmet Bilgen 《Biomedical engineering online》2012,11(1):1-1
The first publication of the work [1] did not present one of the authors' names. Kunalan Ganthel has now been added to the author list. In addition, Habib Sherkat has been added to the Acknowledgements, with thanks for providing help with the use of hyperelastic module of Abaqus Software. 相似文献