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2021 年度 実施状況報告書

現場調査と研究室実験を組み合わせた原木シイタケのセシウム移行要因解析

研究課題

研究課題/領域番号 18K05739
研究機関東京大学

研究代表者

OBrien Martin  東京大学, 大学院農学生命科学研究科(農学部), 特任准教授 (00723595)

研究分担者 二瓶 直登  福島大学, 食農学類, 准教授 (50504065)
田野井 慶太朗  東京大学, 大学院農学生命科学研究科(農学部), 教授 (90361576)
研究期間 (年度) 2018-04-01 – 2023-03-31
キーワードshiitake / oak logs / transfer factor (TF) / stable cesium
研究実績の概要

As reported previously, a higher K concentration in logs was found to decrease the log-to-shiitake TF of Cs-133 (hereafter will be referred to as totCs-133). We have also found that higher K concentrations in logs also decreases the log-to-shiitake TF of exchangeable Cs-133 (hereafter known as exCs-133). We also reported in our previous report that there was a positive correlation between the totCs-133/K ratio in logs and the log-to-shiitake TF. However, there was no relationship observed between exCs-133/K ratio and the log-to-shiitake TF.

We have now analysed the data specifically related to three different strains of shiitake. One strain had a significantly higher log-to-shiitake TF of totCs133 than the other two strains. For one shiitake strain, a higher K concentration in the logs was found to significantly decrease the log-to-shiitake TF of totCs-133 (but not exCs-133), and for the other two strains, no such relationship was observed for either the TF of totCs-133 or exCs-133. There was also no evidence that absorption competition between K and Cs-133 is an important factor for totCs-133 uptake by any of the three shiitake strains. Data related to exCs-133 is still pending.

To understand where shiitake sources Cs-133 from within a log, we found that ~ 70% of the Cs-133 is exchangeable in the wood and ~ 40% is exchangeable in the bark. However, using ergosterol as a measure for metabolically active mycelium, we found 3.5-fold higher amounts of fungal mycelium in the bark compared to in the wood.

現在までの達成度 (区分)
現在までの達成度 (区分)

2: おおむね順調に進展している

理由

Although all the planned laboratory work related to the fieldwork has been completed and most of this data has been statistically analysed, some additional laboratory analysis will be undertaken e.g., measure carbon and nitrogen content in wood and bark samples, etc,. Also, we want to continue to optimise the production of shiitake fruiting bodies in vitro.

今後の研究の推進方策

Because the data from different shiitake strains was contradictory, we intend to measure carbon and nitrogen content in all wood and bark samples. A research manuscript is currently being prepared to report the results of the fieldwork.
In addition, we will also continue to optimize the method to produce shiitake fruiting bodies in vitro.

次年度使用額が生じた理由

Additional laboratory analysis will need to be undertaken e.g., measure carbon and nitrogen content in wood and bark samples, etc,. Also, we plan to continue to optimise the production of shiitake fruiting bodies in vitro. The funds will be used to purchase all the necessary reagents, chemicals and consumables to perform those experiments, and also for the labor of one technician who will measure carbon and nitrogen content in the samples.
We also plan to publish this research in an international journal, so funds may be required for article processing charges.

  • 研究成果

    (1件)

すべて その他

すべて 備考 (1件)

  • [備考] Lab. of Radio-Plant Physiology

    • URL

      http://park.itc.u-tokyo.ac.jp/radio-plantphys/


URL: 

公開日: 2022-12-28  

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