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黄金树栽培技术 被引量:2

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摘要 黄金树为紫葳科梓属落叶乔木,叶卵形,表面光滑,背面有毛,花冠白色,花期5月,花朵大,既可观叶又可观花。2年生苗平均高2.3米。
机构地区 昭苏林场 木垒林场
出处 《农村科技》 2010年第9期87-88,共2页 Rural Science & Technology
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  • 1盛淑艳,杜桂艳,高军.黄金树育苗技术[J].林业实用技术,2005(9):41-41. 被引量:4
  • 2王伏雄.植物胚胎学研究的新进展(续)[J].植物杂志,1980(2):30-31.
  • 3Toru Tokuoka, Hiroshi Tobe. Embryology of tribe Dryeteae, an enigmatic taxon of Eupborbiaceae[ J]. Plant Systematics and Evolution, 1999,215 : 189 - 208.
  • 4樊汝汶,吴琼美,邹惠渝.滇楸(Cataplafargesiif.du.clouxii(Dode)Gilmour)的胚胎学研究[J].南京林产工业学院学报,1980(2):67-80.
  • 5樊汝汶.梓树(Catalpaovate)胚胎发育的研究[J].南京林产工业学院学报,1981(4):54-74.
  • 6Coen ES, Meyerowitz EM (1991). The war of the whorls: genetic interactions controlling flower development. Nature, 353 (6339): 31-37.
  • 7Conner J, Liu Z (2000). LEUNIG, a putative transcriptional corepres- sor that regulates AGAMOUS expression during flower developmerit. Proc Natl Acad Sci USA, 97 (23): 12902-12907.
  • 8Egea-Cortines M, Saedler H, Sommer H (1999). Ternary complex formation between the MADS-box proteins SQUAMOSA, DEFICIENS and GLOBOSA is involved in the control of floral architecture in Anth'rhinum majus. EMBO J, 18 (19): 5370-5379.
  • 9Galimba KD, Tolkin TR, Sullivan AM, Melzer R, TheiBen G. Di Stilio VS (2012). Loss of deeply conserved C-class floral homeotic gene function and C- and E-class protein interaction in a double-flowered ranunculid mutant. Proc Natl Acad Sci USA, 109 (34): 2267-2275.
  • 10Honma T, Goto K (2001). Complexes of MADS-box proteins are suf- ficient to convert leaves into floral organs. Nature, 409 (6819): 525-529.

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