热带农业科学
熱帶農業科學
열대농업과학
CHINESE JOURNAL OF TROPICAL AGRICULTURE
2013年
5期
38-42,50
,共6页
华玉伟%吴紫云%黄天带%黄华孙
華玉偉%吳紫雲%黃天帶%黃華孫
화옥위%오자운%황천대%황화손
橡胶树%APM%微原生质体
橡膠樹%APM%微原生質體
상효수%APM%미원생질체
Hevea brasiliensis%APM%microprotoplast
植物微原生质体融合(microprotoplast fusion)是将部分基因组转移而又避免染色体损伤的不对称融合技术,微原生质体成功诱导是微原生质体融合的先决条件。本研究在摸索甲基氨草磷(amiprophos-methyl, APM)对橡胶树悬浮细胞有丝分裂中期指数和染色体形态影响基础上,研究了酶解时间及酶解过程中添加APM对微原生质体产量的影响。结果发现,悬浮细胞随APM处理浓度和时间的增加,有丝分裂中期指数先升高再下降,处理12 h时达到最大值;染色体聚集程度也先增加再降低,处理16 h时染色体开始解聚。在酶解过程中添加APM和延长酶解时间会大大降低微原生质体的产量。悬浮细胞经过1滋mol/L APM处理10 h后,酶解10 h,中期细胞可达到79.4%,微核化细胞指数达到7.3%,从而建立了APM诱导橡胶树悬浮细胞同步化及高效获得橡胶树微化细胞的方法。
植物微原生質體融閤(microprotoplast fusion)是將部分基因組轉移而又避免染色體損傷的不對稱融閤技術,微原生質體成功誘導是微原生質體融閤的先決條件。本研究在摸索甲基氨草燐(amiprophos-methyl, APM)對橡膠樹懸浮細胞有絲分裂中期指數和染色體形態影響基礎上,研究瞭酶解時間及酶解過程中添加APM對微原生質體產量的影響。結果髮現,懸浮細胞隨APM處理濃度和時間的增加,有絲分裂中期指數先升高再下降,處理12 h時達到最大值;染色體聚集程度也先增加再降低,處理16 h時染色體開始解聚。在酶解過程中添加APM和延長酶解時間會大大降低微原生質體的產量。懸浮細胞經過1滋mol/L APM處理10 h後,酶解10 h,中期細胞可達到79.4%,微覈化細胞指數達到7.3%,從而建立瞭APM誘導橡膠樹懸浮細胞同步化及高效穫得橡膠樹微化細胞的方法。
식물미원생질체융합(microprotoplast fusion)시장부분기인조전이이우피면염색체손상적불대칭융합기술,미원생질체성공유도시미원생질체융합적선결조건。본연구재모색갑기안초린(amiprophos-methyl, APM)대상효수현부세포유사분렬중기지수화염색체형태영향기출상,연구료매해시간급매해과정중첨가APM대미원생질체산량적영향。결과발현,현부세포수APM처리농도화시간적증가,유사분렬중기지수선승고재하강,처리12 h시체도최대치;염색체취집정도야선증가재강저,처리16 h시염색체개시해취。재매해과정중첨가APM화연장매해시간회대대강저미원생질체적산량。현부세포경과1자mol/L APM처리10 h후,매해10 h,중기세포가체도79.4%,미핵화세포지수체도7.3%,종이건립료APM유도상효수현부세포동보화급고효획득상효수미화세포적방법。
Microprotoplast fusion is a method for undamaged transferring a partial genome to receptor cell and successful induction of microprotoplast is the prerequisite of microproplast fusion. Herein, effects of concentration and treatment time of APM (amiprophos-methyl) on MI (metaphase index) and morphology of chromosome in metaphase on production of microprotoplast were investigated as well addition of APM to enzyme solution and treatment time. In the results, with increasing of concentration and treatment time of APM, MI increased and then decreased and the peak was occurred after 12 h treatment. Chromosome condensation and aggregation was positively correlated to APM concentration was found. However, chromosome depolymerization was observed after 16 h treatment. Additionally, addition of APM to enzyme solution sharply reduced the production of microprotoplast, the micronucleus index (MNI) decreased from 7.3% to 0.77% after 10 h enzyme treatment. Extension of enzyme treatment was also reduced production of microprotoplast, MNI decreased from 7.3% to 2.3% when enzyme treatment time extended from 10 h to 14 h. So APM could efficiently synchronize metaphase cells and produce microprotoplast in Hevea brasiliensis.