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재배기간이 짧은 민자주방망이버섯 우량계통 선발 및 특성 KCI 등재

Characteristics and pedigree selection of a shortened cultivation period strain in Lepista nuda

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한국버섯학회지 (Journal of Mushrooms (J. Mushrooms))
한국버섯학회 (The Korean Society of Mushroom Science)
초록

민자주방망이버섯의 대량 생산 및 상업적 실용화를 위하여 야생 균주에 비해 재배기간이 짧고 자실체 발생이 잘 이루어지는 신품종을 육성하기 위하여 본 연구를 수행하였다. 민자주방망이버섯 유전자원 18계통을 수집하고 볏짚발효배지를 이용한 상자 재배를 통해 자실체가 발생한 4계통을 교배모본으로 선발하였다. 단포자 교배를 통해 671조합의 교배를 하였으나 ‘CBMLN-19’ 계통과 ‘CBMLN-30’ 계통을 교배한 17조합만이 교배가 이루어 졌다. 그 중 균사 생장이 빠르고 밀도가 높은 8계통을 1차 선발하였다. 볏짚발효배지에 유전자원 14계통, 교배계통 8계통을 접종 후 배양기간을 조사한 결과 교배계통 중 6계통은 20일만에 배양이 완료되었으며 유전자원 14계통 중 7계통은 배양이 완료되기 까지 40일 이상이 소요되어 대부분의 교배계통에서 배양기간이 20일 이상 단축되었다. 배양이 완료된 계통은 식양토를 1~2 cm 복토하여 후 배양을 하였고 균사 배양이 완전히 완료되었을 때 균긁기를 한 후 자실체 발생을 유도하였다. 발생 유도 환경은 온도 14 ̊C, 상대습도 95% 이상, CO2농도 1,500~2,000 ppm 이었으며, 야간에 6℃로 온도를 낮추어 하온 충격을 주었다. 그 결과 유전자원 ‘CBMLN-31’, ‘CBMLN-44’ 2계통, 교배계통 ‘CBMLN-96’, ‘CBMLN-103’ 2계통 총 4계통에서 자실체가 발생하였다. 접종 후 자실체가 발생되기까 지의 기간은 대조구인 유전자원 ‘CBMLN-31’이 100일로 가장 길었고, 교배계통인‘CBMLM-103’이 45일로 가장 짧았다. 자실체 특성 조사 결과 교배계통인 ‘CBMLN- 103’은 개체중이 1.9 g으로 작은 형태를 나타냈으며, 상자 당 유효경수 123개로 4계통 중 발생량이 가장 많았다. 또 다른 교배계통 ‘CBMLN-96’은 개체중이 5.5 g 으로 ‘CBMLN-103’ 보다 큰 형태를 나타냈으나, 상자 당 유효 경수는 30개로 발생량이 적었다. 수량성 조사 결과 대조구인 ‘CBMLN-31’계통에서 상자 당 수량 783 g으로 가장 높게 나타났고, 교배계통 ‘CBMLN-96’은 165 g, ‘CBMLN-103’은 232 g으로 나타났다. 교배계통 2계통에서 수량성은 대조구 ‘CBMLN-31’보다 낮았지만 자실체 발생량이 많았으며, 재배기간이 40일~55일 단축되어 이 2계통을 우량계통으로 선발하고자 한다.

This study was conducted to cultivate new Lepista nuda varieties with shorter cultivation period and better fruiting body compared to that of wild strains, for mass production and commercial application. Eighteen genetic resources of L. nuda were collected and grown in boxes using rice straw-fermented growth medium. Four lines with fruiting bodies were formed and selected as cross-breeding lines. Although 657 combinations were crossed through monospore crossing, only 17 combinations were bred between the ‘CBMLN-19’ line and the ‘CBMLN-30’ line. Among them, 8 lines with fast mycelial growth and high density were selected. After inoculating the rice straw-fermented growth medium with 14 genetic resources and 8 cross-breeding lines, their incubation period was investigated. Six of the cross-breeding lines completed their incubation in 20 days, while 7 of the 14 genetic resources took more than 40 days to complete their incubation, reducing the incubation period by more than 20 days in most cross-breeding lines. After the incubations were completed, the clay loam soil was covered with for post-cultivation, and when the mycelial cultivation was complete, the formation of fruiting bodies was induced after scraping the mycelial bodies under these environmental conditions: 14oC, 95% relative humidity or higher, and 1,500 to 2,000 ppm CO2 concentration. The temperature was reduced to 6oC at night, resulting in a low temperature shock. Thus, 4 lines of fruiting bodies occurred from two genetic resources ‘CBMLN-31’ and ‘CBMLN-44’ and two cross-bred lines ‘CBMLN-96’ and ‘CBMLN-103’. After inoculation, the longest period for fruiting bodies to occur was 100 days for the control:, the genetic resource ‘CBMLN-31’, and the shortest period (45 days) was observed for the cross-breeding line ‘CBMLN-103’. The result of the investigation of the fruiting body characteristics shows that the cross-bred line ‘CBMLN-103’ showed a small form with 1.9 g of individual weight and 123validstipes per box, which was the highest incidence among the four lines. Another cross-bred line, ‘CBMLN-96’, had an individual weight of 5.5 g, which is larger than that of ‘CBMLN-103’; however, the number of valid stipes per box was 30 less than that of ‘CBMLN-103’. Quantity analysis showed that the control, ‘CBMLN-31’, had the highest quantity of 783 g per box, followed by the cross-bred line, ‘CBMLN-96’ with 165 g per box, and then the ‘CBMLN-103’ with 232 g. The quantity of the two crossbred lines was lower than that of the control ‘CBMLN-31’; however, the amount of fruiting bodies was higher, and the cultivation period was shortened by 32 to 33 days. Therefore, these two lines would be selected as superior lines.

목차
ABSTRACT
서 론
재료 및 방법
    시험균주
    곡립종균 배양
    배양 및 생육관리
    교배모본 선발
    단포자 분리 및 교배
    교배계통의 고유성 검증
    교배계통 자실체 발생조건 및 특성
    농가실증시험
결과 및 고찰
    교배모본 선발
    단포자 분리 및 교배
    교배계통의 고유성 검증
    교배계통의 자실체 발생조건 및 특성
    농가실증시험
적 요
REFERENCES
저자
  • 전종옥(충청북도농업기술원) | Jong-Ock Jeon (Chungcheongbuk-Do Agricultural Research & Extension Services) Corresponding author
  • 이관우(충청북도농업기술원) | Kwan-Woo Lee (Chungcheongbuk-Do Agricultural Research & Extension Services)
  • 이경준(충청북도농업기술원) | Kyoung-Jun Lee (Chungcheongbuk-Do Agricultural Research & Extension Services)
  • 김민자(충청북도농업기술원) | Min-Ja Kim (Chungcheongbuk-Do Agricultural Research & Extension Services)
  • 김인재(충청북도농업기술원) | In-Jae Kim (Chungcheongbuk-Do Agricultural Research & Extension Services)
  • 김영호(충청북도농업기술원) | Young-Ho Kim (Chungcheongbuk-Do Agricultural Research & Extension Services)