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The Current Status and Breeding Perspective of Major Vegetable Crops in Sri Lanka
M.J.M.P. Kumararathna,M.A.P.W.K. Malaviarachchci,W.M.W. Weerakoon,Won Byoung Chae,Myeong Cheoul Cho,A.M. Perera,Min-Kyeong Kim,Eun Young Yang 한국국제농업개발학회 2020 韓國國際農業開發學會誌 Vol.32 No.1
스리랑카는 채소의 주년 생산에 적합한 기후를 갖고 있는 열대국가이다. 열대, 아열대 채소의 재배면적은 전체 농지(105,062 ha)의 약 3%이다. 지난 50년 동안 스리랑카에서 채소 육종에 관한 체계적인 연구가 이루어졌고 채소 부문은 지속적으로 증가하였다. 하지만 채소 육종, 재배 및 가공과 관련된 기술이 선진국에 비해 많이 뒤떨어져 있는 형편이다. 전통 육종법을 통해 개발된 다양한 농업적 형질을 가진 품종이 현재까지 스리랑카의 채소 생산에 이용되고 있지만 생명공학적 방법을 접목한 채소 품종 육종법의 중요성이 점차로 부각되고 있다. 본 논문은 스리랑카에서 중요한 채소 작물인 토마토, 고추류, 콩류, 가지 및 여주의 육종과 품종 현황을 소개하고 향후 스리랑카 육종 전망에 대해 논의하였다. Sri Lanka is a tropical country having a favourable climate for year around vegetable production. Many tropical and sub-tropical vegetables are grown in approximately 3% of total agriculture lands (105,062ha). In Sri Lanka, systematic studies on vegetable improvement have been conducted for 50 years and, since then, Sri Lanka has gradually increased its vegetable sector. However, Sri Lanka fall behind in technologies for vegetable breeding, cultivation and processing compared with developed countries. Cultivars with various agronomic characteristics developed through conventional breeding approach have been contributed to vegetable production in Sri Lanka. Since the crop improvement through conventional breeding has been realized at a slower phase, integrated approach with biotechnological tools became important for vegetable development. Here, we provided the current states of five major vegetables such as tomato, capsicum, beans, brinjal and bitter gourd and their leading cultivars. The outlook of breeding activities in Sri Lanka was also discussed.
Magnetism in Ni-W textured substrates for coated conductors
Song K. J.,Park Y. M.,Yang J. S.,Kim S. W.,Ko R. K.,Kim H. S.,Ha H. S,Oh S. S.,Park C.,Joo J. H.,Kim C. J. The Korea Institute of Applied Superconductivity a 2005 한국초전도저온공학회논문지 Vol.7 No.2
The magnetic properties of a series of both annealed (biaxially textured) and as-rolled (non-textured) Ni-xW alloy tapes with compositions x = 0,1,3, and 5 at.$\%$, were studied. Characterization methods included XRD analyses to investigate the biaxial cube texturing of the annealed Ni-W alloy tapes and studies of the magnetization M for both annealed and as-rolled Ni-W alloy tapes. Both the isothermal mass magnetizations M(H) of a series of samples at different fixed temperatures and M(T) in fixed field, employing a PPMS-9 (Quantum Design), were measured. The Ni-W alloys have shown much reduced ferromagnetism as W-content x increases. Both the saturation magnetization Msat and Curie temperature Tc decrease linearly with W-content x, and both Msat and Tc go to zero at critical concentration of Xc - 9.50 at. $\%$ W.
Spricigo, J.F.W.,Morais, K.S.,Yang, B.S.,Dode, M.A.N. Academic Press 2012 Cryobiology Vol.65 No.3
The present study aimed to evaluate the effect of methyl-β-cyclodextrin (MβCD) as a cholesterol loader to change oocyte plasma membrane and increase its tolerance toward cryopreservation. The first and second experiments were conducted to investigate if MβCD could improve nuclear and cytoplasmic maturation after oocyte exposure to cold stress for 10 or 30min, respectively. No differences (P>0.05) in either experiment in the metaphase II (MII) rate of oocytes exposed to MβCD and cold stress; but these oocytes presented lower maturation rates than control groups. In the second experiment, a lower percentage of oocytes showed degenerated chromatin (P<0.05) after exposure to 2mg/mL of MβCD compared to the group exposed to 0mg/mL. However, no differences among treatments were observed in cytoplasmic maturation. Groups exposed to cold stress demonstrated a lower (P<0.05) capacity for embryonic development compared to the control groups. In the third experiment immature oocytes were exposed to MβCD and then, vitrified (cryotop). After warming, we observed that the ability to reach MII and chromatin degeneration were altered (P<0.05) by MβCD. The blastocysts rate (P<0.05) on D7 was higher in the 2mg/mLMβCD group, but an identical finding was not observed on D8 (P>0.05). Chromatin degeneration was higher in the vitrification groups. We conclude that MβCD improved nuclear maturation by reducing oocyte degeneration after cold stress or vitrification; however, more studies are required to clarify the usefulness of MβCD use in oocyte cryopreservation.