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Yokoyama, R.

Publications and source records attributed to Yokoyama, R..

2 recordsLinked to original sources

Effect of environmental conditions on seed germination and seedling growth in Cuscuta campestris

The dodder, Cuscuta, is an obligate parasitic plant that cannot survive without a host plant and causes major damage to crop yields. To know its growth characteristics before parasitism, we examined the effect of various environmental conditions on seed germination and seedling growth in Cuscuta campestris. As for the effect of light on germination, far-red light was rather preferable to red light and the reversible response of the seeds to red and far-red light was confirmed, implicating a phytochrome-mediated signaling opposite to that in many seed plants. Among amino acids, aspartic acid and alanine had a promotive effect and histidine had an inhibitory effect on germination. We further found that, in addition to gibberellic acid, methyl jasmonate was stimulatory to germination and shoot elongation. While 2,4-D extended the viability of trichomes around the root cap, kinetin induced the formation of scale leaves on the shoot and calli at the base of the shoot and the root tip. RT-PCR experiments confirmed that expression of a putative RbcS gene for photosynthesis showed no response to light but that of a Phytochrome A homolog was increased in the dark. Our results indicate that some of the molecular mechanisms to respond to light and hormone signals are uniquely modified in dodder seedlings, providing a clue for understanding the survival strategy of parasitic plants.

plant biology↗

Environmental pH signals the release of monosaccharides from cell wall in coral symbiotic alga

Reef-building corals thrive in oligotrophic environments due to their possession of endosymbiotic algae. Confined to the low pH interior of the symbiosome within the cell, the algal symbiont provides the coral host with photosynthetically fixed carbon. However, it remains unknown how carbon is released from the algal symbiont for uptake by the host. Here we show, using cultured symbiotic dinoflagellate, Breviolum sp., that decreases in pH directly accelerates the release of monosaccharides, i.e., glucose and galactose, into the ambient environment. Under low pH conditions, the cell surface structures were deformed and genes related to cellulase were significantly upregulated in Breviolum. Importantly, the release of monosaccharides was suppressed by the cellulase inhibitor, glucopyranoside, linking the release of carbon to degradation of the agal cell wall. Our results suggest that the low pH signals the cellulase-mediated release of monosaccharides from the algal cell wall as an environmental response in coral reef ecosystems.

evolutionary biology↗