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    题名 作者 年代 出处 被引量
1Solvent‐Assisted Re‐annealing of Polymer Films for Solution‐Processable Organic Field‐Effect Transistors显示文摘Chong‐anDi KunLu LeiZhang YunqiLiu YunlongGuo XiangnanSun YugengWen GuiYu DaobenZhu 2010Adv. Mater2010,,11:1
2Intergenericprotoplast fusion between Kluyveromyces andSaccharomyces cerevisiae to produce sorbitol fromJerusalem artichokes显示文摘Wei Wenlin Wti Kunlu Qin Yan 2001Biotechnology Letters2001,23,:1
3Utilization of Aromatic Rice in Improving Grain Quality of Hybrid Rice(Ⅰ)显示文摘To improve grain quality of the high-yielding hybrid rice in China, we introduced the aromatic rice MR365, an improved Indian cultivar, from IRRI in 1984 and began to transfer its aroma and good quality characters into the existing maintainer lines. In the meantime, the research on the inheritance of aroma for increasing the breeding efficiency was also conducted.It was found that the inheritance of aroma in MR 365 and its derivatives was controlled by one pair of recessive major genes based on the KOH-soaking method. There existed disparity in aroma degree among different grains of F2 generation, and different aromatic CMS lines derived from the same aromatic donor had also a little difference in the degree of aroma, which implies that, besides the major genes, aroma may also be affected by the genetic backgrounds or minor genes.Xiangxiang 2A, developed from the cross of V20A//V20B/MR365, is the first aromatic CMS line bred in China. It is not only aromatic but also has good grain quality and combining ability. Using it as female parent, Xiangyou 63 (Xiangxiang 2A / Minghui 63), the first quasi-aromatic hybrid rice combination in China, was developed, and released to farmers in 1995. Xiangyou 63 is characteristic of quasi-aromatic or partially aromatic (because only a portion of or not all grains are aromatic), good grain quality, high-yielding ability, good blast resistance and wide adaptability.Zhou Kunlu, and Liao Fuming Hunan Academy of Agricultural Sciences, Changsha 410125, China 2002Hunan Agricultural Science & Technology Newsletter2002,3,4:1
45-26 Capacitive-Load Isolation Techniques in Timing Detector of CSRe Internal Target显示文摘Capacitive-load isolation technique[1] was proposed to improve the stability and capacitive load ability of the timing detector system in internal target of CSRe. This technique can solve the overshoot and ringing problems of the circuit, without affecting its gain and bandwidth. By constructing the circuit model, the cause of the instability of the circuit is analyzed mathematically, and the rationality of the capacitive-load isolation techniques is proved in experiment.Zhu Kunlu Wang Wei Yu Deyang Liu Junliang Li Lianghui Cai Xiaohong 2015IMP & HIRFL Annual Report2015,,1:0
5Utilization of aromatic rice in improving grain quality of hybrid rice(Ⅱ)显示文摘Xiangxiang 2A has an evident drawback, i.e., instability in male sterility under higher temperature conditions resulting from the existence of minor restoring genes in it, which greatly hampered the extension of its elite hybrid Xiangyou 63 with both high yield and fine quality in commercial production. To improve Xiangxiang 2A, the hybridization of Xiangxiang 2B with V20 B was made again in 1990. A new aromatic CMS line Xinxiang A was successfully developed in 1994. It not only retains the favorable characteristics of Xiangxiang 2A in grain quality and combining ability, but also expresses complete and stable male sterility and high seed production yield potential. Up to now, by using it as female parent, a series of quasi aromatic hybrids have been developed. Some of them have been released to farmers. Because such hybrids can not only yield higher or as high as but also possess a better grain quality than the current common high yielding hybrid rice varieties,so that they are preferred and well welcome by the farmers in China. The planting area under these hybrids is increasing rapidly in China.Zhou Kunlu, and Liao FumingHunan Academy of Agricultural Sciences, Changsha 410125, China 2003Hunan Agricultural Science & Technology Newsletter2003,4,1:0
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