Benedict Chauncey R, Martin Gail S, Liu Jinggao, Puckhaber Lorraine, Magill Clint W
Professor Emeritus of Biochemistry, TAMU, College Station, TX 77843, USA.
Phytochemistry. 2004 May;65(10):1351-9. doi: 10.1016/j.phytochem.2004.03.032.
A new cotton variant with reduced levels of terpenoid aldehydes (sesquiterpenoids and sesterterpenoids (heliocides)) was isolated from the progeny of hemizygous cotton (Gossypium hirsutum cv. Coker 312) transformed with antisense (+)-delta-cadinene synthase cDNA. Southern analysis of leaf DNA digested with HindIII, Pst or KpnI restriction endonucleases did not detect any antisense cdn1-C1 DNA in the genome of the variant. The gossypol content in the seed of the variant was markedly lower than in the seed of T1 antisense plants. Eighty-nine percent of the variant seed had a 71.1% reduction in gossypol and the foliage of the variant plants showed a 70% reduction in gossypol and a 31% reduction in heliocides. Compared to non-transformed plants there was no reduction in the number of lysigenous glands in the seed of the variant. The cotton variant shows uncoupling of terpenoid aldehyde synthesis and gland formation. The cotton variant may have resulted from somaclonal variation occurring in the callus tissue during the transformation-regeneration process.
从用反义(+)-δ-杜松烯合酶cDNA转化的半合子棉花(陆地棉品种Coker 312)的后代中分离出一种萜类醛(倍半萜和半萜(半日花素))含量降低的新型棉花变种。用HindIII、Pst或KpnI限制性内切酶消化叶片DNA后的Southern分析未在该变种的基因组中检测到任何反义cdn1-C1 DNA。该变种种子中的棉酚含量明显低于T1代反义植株种子中的棉酚含量。89%的变种种子棉酚含量降低了71.1%,变种植株的叶片棉酚含量降低了70%,半日花素含量降低了31%。与未转化植株相比,变种种子中溶生腺体的数量没有减少。该棉花变种显示出萜类醛合成与腺体形成的解偶联。该棉花变种可能是由转化-再生过程中愈伤组织发生体细胞克隆变异所致。