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생식용 체리 비가림 재배시 서양뒤영벌(Bombus terrestris L.)의 화분매개 곤충 활용
곽용범(Yong-Bum Kwack),김홍림(Hong-Lim Kim),최영하(Young Hah Choi),이재한(Jae Han Lee) (사)한국생물환경조절학회 2012 생물환경조절학회지 Vol.21 No.3
체리의 경우 유과기나 과실수확기에 비가 잦을 경우 각종 곰팡이에 의한 과실썩음병과 열과가 발생하여 고품질의 과실을 생산하기 어렵다. 따라서 우리나라와 같이 장마기가 있는 기후조건에서는 농약살포 횟수를 줄이고 고품질의 과실을 안정적으로 생산하기 위해서는 반드시 비가림 시설재배가 필요하다. 국내에서 체리의 개화시기는 4월 상·중순으로 개화기 저온에 의해 자연상태의 꿀벌을 통한 화분매개는 결실율이 불안정하며, 봄철에는 화분매개용 꿀벌 봉군을 구입하기가 어렵다. 따라서 본 연구에서는 최근 시설재배 방울토마토,애호박 등에서 화분매개용으로 많이 이용되고 있는 서양뒤영벌을 비가림 재배 조건에서 꿀벌을 대신하여 체리에 대한 화분매개 곤충으로 이용코자 하였다. 방화활동력은 서양뒤영벌의 경우 한 꽃에 약 6초 정도 머물러 분당 11개 정도의 꽃을 방문하였고, 꿀벌의 경우 한 꽃에 약 15초씩 머물러 분당 4~5개 정도의 꽃을 방문하였다. 또한 결실율과 과실특성에 있어 두 벌 처리구 간에 통계적인 유의성은 없었다. 따라서 비가림 체리 재배에서 개화기에 화분매개용으로 꿀벌을 대신하여 서양뒤영벌을 이용하더라도 어떠한 부정적인 영향은 없었다. In sweet cherry (Prunus avium L.) growing there are several severe problem which have to be overcome to produce highly graded fruits because of fruit rots and fruit crackings, if there is frequent precipitation during immature fruit step and picking season. In order to reduce fungicide sprayings and produce qualified fruits in areas with rainy season like as South Korea, rain-sheltered growing is necessary absolutely. Sweet cherry blooms early to medium April in southern area of South Korea. If we depend on honeybees (Apis mellifera) distributed in natural ecosystem, it is not easy to get normal fruit-set every season because of low temperature around blooming time. And also bee keepers seldom sell honeybee hives as a pollinator during spring, instead they keep honeybee hives to get honey. Recently use of B. terrestris as a pollinator of cherry tomato, oriental pumpkin etc. grown in protected cultivation system increase abundantly. Therefore, in this study we studied B. terrestris as an alternate of honeybee to pollinate sweet cherry grown in rain shelter. In part of foraging activity B. terrestris shows staying on a cherry flower for about six second and visiting frequency of 11 flowers per minute. However A. mellifera stayed about 15 second on a flower and visited 4~5 flowers per minute. There were no significant difference in fruit-setting rate and fruit characteristics after using B. terrestris and A. mellifera as pollinators of sweet cherry. Consequently there is no negative effect when we use B. terrestris as an alternate pollinator of A. mellifera in sweet cherry cultivation under rain shelter.
조기낙엽이 참다래 ``헤이워드`` 과실 바람들이와 품질에 미치는 영향
곽용범 ( Yong Bum Kwack ),김홍림 ( Hong Lim Kim ),최영하 ( Young Hah Choi ),이재한 ( Jae Han Lee ),김진국 ( Jin Gook Kim ),이용복 ( Yong Bok Lee ) 한국환경농학회 2012 한국환경농학회지 Vol.31 No.3
BACKGROUND: The fruit quality and flowering characteristics of Kiwifruit (A. deliciosa cv. Hayward) in the following year is known to be affected by the extent and timing of defoliation of the current year. In korea, the production of kiwi, which is a perennial, straggling deciduous warm-temperate fruit, is often restricted by wind damage due to typhoons resulting to defoliation at the middle season of its growing period. In this paper, we report the effect of the different timing of defoliation and severities at the current season to the kiwifruit quality. METHODS AND RESULTS: Twenty seven-year-old ``Hayward`` trees grown under polyethylene film rain-shelter were defoliated in different days from August to September at seven day-intervals. In each day, 0, 25, 50, 75 and 100% of leaves were removed from the trees. Fruits from each treatment were classified into four floating types (L: lying in bottom, S: standing on bottom, F: floating and SF: floating at the surface of water) by submerging them into tap water. Defoliation of kiwifruit trees in August and September caused air holes in locules of inner pericarp. Increased number of air hole in locules of a fruit was observed in floating types F and SF, and most of the air holes were located in stem end. The defoliation of trees in August significantly reduced the ratio of L-floating type fruits, which have the least number of locule air holes. The extent of defoliation also affected the distribution of the four types, the more leaves removed, the less L-floating type fruits harvested. The weight of fruits from trees defoliated in August was lower than that of fruits from September. Soluble solids content decreased as the number of locule air holes increased. Negative correlations were observed between the extent of defoliation and the weight and soluble solids content of fruits. CONCLUSION: Early defoliation effect on kiwifruit locule air hole occurrence and fruit quality were more severe in August than in September. And also if the defoliation severity is over 25%, severe fruit quality reduction expected to happen due to increase of fruit locule air hole in the inner pericarp.
RAPD와 SRAP 마커를 이용한 참다래 유전자원의 유전적 다양성
조강희,곽용범,박서준,김세희,이한찬,김미영,Cho, Kang Hee,Kwack, Yong-Bum,Park, Seo Jun,Kim, Se Hee,Lee, Han Chan,Kim, Mi Young 한국식물생명공학회 2017 식물생명공학회지 Vol.44 No.3
본 연구는 참다래(Actinidia spp.) 유전자원의 유전적 다양성을 평가하기 위하여 재배품종 및 국내 외에서 수집한 참다래 61점을 대상으로 RAPD와 SRAP 분석을 수행하였다. RAPD 분석에서 40종의 선발 primer를 이용하여 230개의 다형성 밴드를 얻었으며, 평균 다형성 밴드 수는 5.75개였다. 32종의 primer 조합을 이용한 SRAP 분석에서 204개의 다형성 밴드를 획득하였고, 평균 다형성 밴드 수는 6.38 개였다. RAPD와 SRAP 분석에서 획득된 434개의 다형성 밴드를 이용하여 비가중 평균결합 방식으로 집괴분석한 결과 유전적 유사도 지수 0.680을 기준으로 3개의 그룹으로 분류되었다. 제1그룹에는 A. deliciosa와 A. chinensis에 속하는 품종과 A. deliciosa ${\times}$ A. arguta, A. chinensis ${\times}$ A. arguta, A. chinensis ${\times}$ A. deliciosa의 교잡종에 속하는 46점의 유전자원이 포함되었다. 제2그룹에는 A. arguta에 속하는 유전자원 7점과 A. arguta ${\times}$ A. deliciosa의 교잡종인 '스키니그린'이 포함되었다. 제3그룹에는 A. rufa, A. hemsleyana, A. macrosperma, A. polygama, A. eriantha 종에 속하는 유전자원 7점이 포함되었다. 참다래 유전자원 간 유전적 유사도 값은 0.479~0.991의 범위로 평균 유전적 유사도는 0.717이었다. 가장 높은 유사도 값(0.991)을 나타낸 유전자원은 NHK0038(A. deliciosa)과 NHK0040(A. deliciosa) 간이었고 가장 낮은 유사도 값(0.479)을 나타낸 유전자원은 '헤이워드'(A. deliciosa)와 K5-1-22(A. arguta) 간이었다. In this study, random amplified polymorphic DNA (RAPD) and sequence-related amplified polymorphism (SRAP) analyses were used for evaluation of genetic diversity of 61 kiwifruit (Actinidia spp.) germplasms including domestic and overseas collection cultivars. Forty RAPD primers were detected in a total of 230 polymorphic bands with an average of 5.75. Thirty-two SRAP primer combinations were detected in a total of 204 polymorphic bands with an average 6.38. By unweighted pair-group method arithmetic average cluster analysis using 434 polymorphic bands, kiwifruit germplasms were classified in three groups with similarity value of 0.680. Cluster I consisted of 46 kiwifruit germplasms belonging to A. deliciosa, A. chinensis, A. deliciosa ${\times}$ A. arguta, A. chinensis ${\times}$ A. arguta, and A. chinensis ${\times}$ A. deliciosa. Cluster II consisted of seven germplasms belonging to A. arguta and 'Skinny Green', a cultivar derived from a cross between A. arguta and A. deliciosa. Cluster III consisted of seven germplasms belonging to A. rufa, A. hemsleyana, A. macrosperma, A. polygama, and A. eriantha. Genetic similarity values among tested kiwifruit germplasms ranged from 0.479-0.991, and average similarity value was 0.717. Similarity value was highest (0.991) between NHK0038 (A. deliciosa) and NHK0040 (A. deliciosa), and lowest (0.479) between 'Hayward' (A. deliciosa) and K5-1-22 (A. arguta).