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71.
- When applying the adsorption theory to the selectivity coefficient,K and Mg uptakes by cells in a K-Mg replacement series of mediaare not regulated only by a common mechanism, under the assumptionthat b values, which indicate the affinities between the ionand the adsorptive surface, do not change.
- Regulation of Kand Mg uptakes by a common multiphasic mechanismin the cellsis possible when the selectivity coefficient bK/bMgvaries inverselywith the MK/MMg ratio in the external medium.
- K and Mg uptakesare not regulated only by their respectivesingle specific mechanisms.
- Another possibility is regulation of K and Mg uptakes bothbycommon and specific mechanisms. The common mechanism maybemultiphasic.
72.
Hitoshi Watanabe 《Journal of invertebrate pathology》1976,28(3):321-328
A microsporidian was isolated from the Egyptian cotton leafworm, Spodoptera litura, and was identified as a member of the genus Nosema since its sporont produced two spores. The size of the fresh spores was 3.3–4.5 × 1.7 – 2.2 μm. Mean length of the polar filaments was 90.7 μm. In addition to the Egyptian cotton leafworm, this microsporidian was also infectious to Pieris rapae crucivora, Hyphantria cunea, Chilo suppressalis, Agrotis ipsilon, and Adoxophyes orana. Although the parasite ultimately caused generalized infection in the Egyptian cotton leafworm larva, the main site of infection was the adipose tissue. 相似文献
73.
A PC survey revealed the occurrence of an unusual amino acid in fruit bodies of the mushroom Lactarius quietus Fr. and a related species. This was identified as l-2-amino-4-methylpimelic acid, which has not been previously reported as a naturally occurring compound. 相似文献
74.
Sleep and Biological Rhythms - 相似文献
75.
In addition to being critical for apoptosis, components of the apoptotic pathway, such as caspases, are involved in other physiological processes in many types of cells, including neurons. However, very little is known about their role in dynamic, nonphysically destructive processes, such as axonal arborization and synaptogenesis. We show that caspases were locally active in vivo at the branch points of young, dynamic retinal ganglion cell axonal arbors but not in the cell body or in stable mature arbors. Caspase activation, dependent on Caspase-3, Caspase-9, and p38 mitogen-activated protein kinase (MAPK), rapidly increased at branch points corresponding with branch tip addition. Time-lapse imaging revealed that knockdown of Caspase-3 and Caspase-9 led to more stable arbors and presynaptic sites. Genetic analysis showed that Caspase-3, Caspase-9, and p38 MAPK interacted with Slit1a-Robo2 signaling, suggesting that localized activation of caspases lie downstream of a ligand receptor system, acting as key promoters of axonal branch tip and synaptic dynamics to restrict arbor growth in vivo in the central nervous system. 相似文献
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78.
Masaaki Umeda Momoko Ikeuchi Masaki Ishikawa Toshiro Ito Ryuichi Nishihama Junko Kyozuka Keiko U. Torii Akiko Satake Gohta Goshima Hitoshi Sakakibara 《The Plant journal : for cell and molecular biology》2021,106(2):326-335
Plant stem cells have several extraordinary features: they are generated de novo during development and regeneration, maintain their pluripotency, and produce another stem cell niche in an orderly manner. This enables plants to survive for an extended period and to continuously make new organs, representing a clear difference in their developmental program from animals. To uncover regulatory principles governing plant stem cell characteristics, our research project ‘Principles of pluripotent stem cells underlying plant vitality’ was launched in 2017, supported by a Grant-in-Aid for Scientific Research on Innovative Areas from the Japanese government. Through a collaboration involving 28 research groups, we aim to identify key factors that trigger epigenetic reprogramming and global changes in gene networks, and thereby contribute to stem cell generation. Pluripotent stem cells in the shoot apical meristem are controlled by cytokinin and auxin, which also play a crucial role in terminating stem cell activity in the floral meristem; therefore, we are focusing on biosynthesis, metabolism, transport, perception, and signaling of these hormones. Besides, we are uncovering the mechanisms of asymmetric cell division and of stem cell death and replenishment under DNA stress, which will illuminate plant-specific features in preserving stemness. Our technology support groups expand single-cell omics to describe stem cell behavior in a spatiotemporal context, and provide correlative light and electron microscopic technology to enable live imaging of cell and subcellular dynamics at high spatiotemporal resolution. In this perspective, we discuss future directions of our ongoing projects and related research fields. 相似文献
79.
Maung Maung Theint San Thwe Thidalay Myat Myat Zaw Khin Shimada Tomofumi Bawm Saw Kobayashi Motoko Saing Khin Maung Katakura Ken Arai Satoru Suzuki Hitoshi 《Journal of Mammalian Evolution》2021,28(2):497-509
Journal of Mammalian Evolution - We addressed the spatiotemporal characteristics of four commensal rodent species occurring in Myanmar in comparison with other areas of the Indo-Malayan region. We... 相似文献
80.
Yoshihiro Ohmori Wakana Tanaka Mikiko Kojima Hitoshi Sakakibara Hiro-Yuki Hirano 《The Plant cell》2013,25(1):229-241
The shoot apical meristem is the ultimate source of the cells that constitute the entire aboveground portion of the plant body. In Arabidopsis thaliana, meristem maintenance is regulated by the negative feedback loop of WUSCHEL-CLAVATA (WUS-CLV). Although CLV-like genes, such as FLORAL ORGAN NUMBER1 (FON1) and FON2, have been shown to be involved in maintenance of the reproductive meristems in rice (Oryza sativa), current understanding of meristem maintenance remains insufficient. In this article, we demonstrate that the FON2-LIKE CLE PROTEIN1 (FCP1) and FCP2 genes encoding proteins with similar CLE domains are involved in negative regulation of meristem maintenance in the vegetative phase. In addition, we found that WUSCHEL-RELATED HOMEOBOX4 (WOX4) promotes the undifferentiated state of the meristem in rice and that WOX4 function is associated with cytokinin action. Consistent with similarities in the shoot apical meristem phenotypes caused by overexpression of FCP1 and downregulation of WOX4, expression of WOX4 was negatively regulated by FCP1 (FCP2). Thus, FCP1/2 and WOX4 are likely to be involved in maintenance of the vegetative meristem in rice. 相似文献