Abstract
This paper is to investigate the standing crops and microfungal flora in soil in Phyllostachys reticulata forests in both the Yesan area (A) and the Kwangsan area (B). The stand density of the bamboo revealed 17,250 shoots per ha in area A, and in area B 14,780 shoots which were 16.1% less in number than area A. In respect to the environmental factors between the two areas, the mean temperature during the growth period was $1.5{\sim}2^{\circ}C$ higher in area B than in area A, soil tempeature also was $1{\sim}2^{\circ}C$ higher in area B, and the total quantities of nitrogen, phosphoric acid and organic compounds contained in the soil of area B were also slightly higher than those of area A. In area B the quantities of dried leaf matter, humus, and vegetation in the bamboo forest were also larger than in area A. In addition, five more species of microfungi which playa role in the decomposition of the various organic materials in the bamboo forests were identified in area B: Mortierella elongata, Mucor circinelloides, Aspergillus japonicus, Penicillium waksmani and Trichoderma lignorum. The atmospheric temperature in the inner portions of the bamboo forests was lower than the outside temperature, but the humidity was higher. The rates of relative illuminance were measured in area A at 4.19%, and in area B at 2.7%. These values revealed that the photosynthetic acitivity in the lower part of the bamboo was lost but it was considered that lower illuminance increased the microfungal activities in the vicinity of the surface soil. Since the productive structure of the bamboo showed that the maximum amount of photosynthesis was located in the upper portion of the bamboo in area B, it was considered to be an effective structure in maintaining the high productivity of the bamboo. The allometric relation between $D^2H$ and dry weight of stems(Ws), branches(Wb) and leaves(Wl) of the bamboo in area A were appoximated by log Ws=0.5262 log $D^2H$+1.9546; log Wb=0.6288 log $D^2H$+1.5723; log Wl=0.5181 log $D^2H$+1.8732, and those of the bamboo in area B were approximated by log Ws=0.5433 log $D^2H$+1.8610; log Wb=0.1630 log $D^2H$+2.3475; log Wl=0.4509 log $D^2H$+2.0041. From the above, the standing crops in area A were measured thus: Ws was 1,128. 83kg; Wb, 689.05kg; Wl, 926.69kg and Wl, 2,744.57kg per 10a. In area B, Ws was 1,206. 66kg; Wb, 679.92kg; Wl, 1,112.51kg and Wt, 2.999kg per l0a. Significant differences from the result of t-test were for $D^2H$ Ws, Wl and Wt between areas A and B. But no significant difference was found for Wb. In order to record as completely as possible the microfungal flora of the areas, every possible means was tried, and 158 strains of fungi were isolated, and of these, the microfungi of 55 species were identified. The dominant species were Trichoderma viride, Penicillium janthinellum, P. commune, Aspergillus oryzae, A. niger, A. gigantus, A. fumigatus, Mortierella ramaniana, var. anguliFPora, Mucor hiemalis and Zygorhynchus moelleri. According to the above results, it was revealed that optimum soil, the increases of soil materials, more species of soil microfungi, and the atmospheric temperature during the growth period have made the bamboo flourish and bring more species and larger quantities of vegetation in the bamboo forests. The correlation between the standing crops and environmental factors in the bamboo forest is considered to be a complicated relationship of all the factors, but the stand density is thought to be the most important factor involved.
본(本) 연구(硏究)는 예산지역(禮山地域)(A)과 광산지역(光山地域)(B)의 왕대나무(Phyllostachys reticulata)의 현존량(現存量)과 그 토양(土壤) 미세균류상(微細菌類相)을 조사(調査)한 것이다. 왕대나무의 죽림밀도(竹林密度)는 예산지역(禮山地域)이 17,250본(本)/ha이며 광산지역(光山地域)이 14,780본(本)/ha으로서 예산지역(禮山地域)이 16.1%가 많았다. 양지역(兩地域)의 환경요인(環境要因)은 B지역(地域)의 생장기간(生長期間)의 평균기온(平均氣溫)이 A지역(地域)보다 $1.5{\sim}2^{\circ}C$가 높았고 토양온도(土壤溫度)도 $1{\sim}2^{\circ}C$가 높았으며 토양내(土壤內)에 함유(含有)되어 있는 전실소(全室素), 인산(燐酸) 및 유기물질량(有機物質量)도 약간(若干)많았다. 또 B지역(地域)에서는 낙엽량(落葉量)과 부식량(腐植量) 그리고 죽림내(竹林內)의 식생수량(植生數量)도 많았으며 죽림지(竹林地)에서 환원(還元)되는 각종(各種) 유기물(有機物) 분해(分解)에 관여(關與)하는 미세균류(微細菌類)도 Mortierella elongata, Mucor circinelloides, Aspergillus japonicus, Penicillium waksmani and Trichoderma lignorum등의 5종(種)이 더 많았다. 온도(溫度)는 죽림내부(竹林內部)로 들어 갈수록 낮았고 습도(濕度)는 높았다. 죽림내(竹林內)의 상대조도(相對照度)의 비율(比率)은 A지역(地域)이 4.19% B지역(地域)이 2.7%로서 하단분(下端部)에서는 모두 광합성작용(光合成作用)을 할 수 있는 능력(能力)이 상실(喪失)되었으나 조도(照度)가 약(弱)할수록 표토(表土)근처에서 서식(棲息)하는 미세균류(微細菌類)는 오히려 활동력(活動力)을 강(强)하게 하는 것으로 생각한다. 생산구조도(生産構造圖)에서 B지역(地域)의 광합성부(光合成部)의 최대량(最大量)이 대나무 지상부(地上部)의 상단(上端)에 위치(位置)하고 있어서 높은 생산량(生産量)을 유지(維持)하는데 효과적(效果約)인 구조(構造)였다고 생각된다. A,B지역(地域) 죽림(竹林)에서 $D^2H$, $w_s,\;w_b$, 및 $w_l$ 상대생장식(相對生長式)을 유도(誘導)한 결과(結果)는 다음과 같다. A지역(地域) $logw_s=0.5262\;logD^2H+1.9546$ $logw_b=0.6288\;logD^2H+1.5723$ $logw_l=0.5181\;logD^2H+1.8732$ B지역(地域) $logw_s=0.5433\;logD^2H+1.8610$ $logw_b=0.1630\;logD^2H+2.3475$ $logw_l=0.4509\;logD^2H+2.0041$ 상기(上記)한 식(式)을 적용(適用)하여 10a당 현존량(現存量)을 조사(調査)한 결과(結果) A지역(地域) $w_s=1128.83kg,\;w_b=689.05kg,\;w_l=926.69kg$ 으로 $w_e=2744.57kg$이었고, B지역(地域) $w_s=1206.66kg,\;w_b=679.92kg,\;w_l=1112.51kg$으로 $w_t=2999kg$이였다. 따라서 A,B양지역간(兩地域間)에 있어서 $D^2H,\;w_s,\;w_b$, 및 $w_l$의 현존량(現存量)을 비교한 결과(結果)(t-test), $D^2H,\;w_s,\;w_b,\;w_l$에서는 유의차(有意差)가 인정되었으나 $w_b$는 유의차(有意差)가 없었다. 토양생(土壤生) 미세균류(微細菌類)를 조사(調査)한 결과(結果) 158균주(菌株)를 분리(分離)하고 55종(種)을 동정(同定)하였다. 그 중 A지역(地域) 50종(種), B지역(地域) 55종(種)으로 양지역(兩地域)의 우점종(優占種)들은 다음과 같다. Trichoderma viride, Penicillium janthinellum, P. commune, Aspergillus oryzae, A. niger, A. gigantus, A. fumigatus, Mortierella ramaniana, var. anguliFPora, Mucor hiemalis와 Zygorhynchus moelleri. 이상(以上)의 결과(結果)에 의(依)하면 토성(土性)이 좋고 토양양료(土壤養料) 및 토양생(土壤生) 미세균류(微細菌類)의 증가(增加) 그리고 생육기간(生育期間)의 온도(溫度)가 왕대나무의 생장(生長)이나 임상식물(林床植物)의 종(種)과 양(量)을 증가(增加)시킨 것으로 나타났고 왕대나무의 현존량(現存量)과 환경요인(環境要因)과의 상관관계(相關關係)는 이들의 모든 요인(要因)이 상호연관(相互連關)을 갖고 복잡(複雜)하게 작용(作用)한 것으로 보며 더욱 죽림밀도(竹林密度)가 중용(重要)한 인자(因子)로 작용(作用)한 것같다.