辐射研究与辐射工艺学报
輻射研究與輻射工藝學報
복사연구여복사공예학보
Journal of Radiation Research and Radiation Processing
2015年
5期
1-9
,共9页
郑伟%郭泰%王志新%李灿东%张振宇%郭美玲%王庆胜%张茂明%刘忠堂
鄭偉%郭泰%王誌新%李燦東%張振宇%郭美玲%王慶勝%張茂明%劉忠堂
정위%곽태%왕지신%리찬동%장진우%곽미령%왕경성%장무명%류충당
大豆%育种%航天诱变%研究进展
大豆%育種%航天誘變%研究進展
대두%육충%항천유변%연구진전
Soybean%Breeding%Space-flight mutation%Research progress
航天诱变是大豆新品种培育过程中创造变异的重要手段.目前我国大豆航天育种已经取得了阶段性进展,先后有 4 个航天诱变大豆新品种通过了国家或省级审定,多个品系参加国家或省级区域试验和生产试验.本文对基础材料选择、诱变后代选择时期和选择方法等育种相关技术进行了深入研究,对农艺性状和抗性等主要性状的诱变效应进行了分析,并形成了对大豆航天诱变育种具有指导意义的相关理论.还论述了航天诱变的分子机理与分子标记辅助选择在航天诱变育种中的应用,指出诱变机理和选择方法仍然是研究的焦点,建议各育种单位之间应该加强育种材料与技术的合作交流,以提高大豆航天诱变育种的水平和效率.
航天誘變是大豆新品種培育過程中創造變異的重要手段.目前我國大豆航天育種已經取得瞭階段性進展,先後有 4 箇航天誘變大豆新品種通過瞭國傢或省級審定,多箇品繫參加國傢或省級區域試驗和生產試驗.本文對基礎材料選擇、誘變後代選擇時期和選擇方法等育種相關技術進行瞭深入研究,對農藝性狀和抗性等主要性狀的誘變效應進行瞭分析,併形成瞭對大豆航天誘變育種具有指導意義的相關理論.還論述瞭航天誘變的分子機理與分子標記輔助選擇在航天誘變育種中的應用,指齣誘變機理和選擇方法仍然是研究的焦點,建議各育種單位之間應該加彊育種材料與技術的閤作交流,以提高大豆航天誘變育種的水平和效率.
항천유변시대두신품충배육과정중창조변이적중요수단.목전아국대두항천육충이경취득료계단성진전,선후유 4 개항천유변대두신품충통과료국가혹성급심정,다개품계삼가국가혹성급구역시험화생산시험.본문대기출재료선택、유변후대선택시기화선택방법등육충상관기술진행료심입연구,대농예성상화항성등주요성상적유변효응진행료분석,병형성료대대두항천유변육충구유지도의의적상관이론.환논술료항천유변적분자궤리여분자표기보조선택재항천유변육충중적응용,지출유변궤리화선택방법잉연시연구적초점,건의각육충단위지간응해가강육충재료여기술적합작교류,이제고대두항천유변육충적수평화효솔.
Space mutation breeding is an important soybean breeding method in the new variety creation process. Currently, periodical progress in soybean space mutation breeding has been made in China. There were four space mutation soybean varieties that had been approved by national or provincial crop variety examination and approving committee and more soybean strains participated in the national or provincial regional tests and production tests. The breeding technique studies including material selection, progeny selection and the time and methods selection have been carried out deeply. The mutagenic effects on agronomic traits and resistance have been fully research. The studies formed a technical system, which guided the soybean space mutation breeding. It discussed the space mutation breeding applications on mutagenic molecular mechanism and marker-assisted selection. The study indicated mutagenic mechanism and screening techniques would be the key in the future research. In order to improve the level and efficiency of soybean space-flight mutation breeding, the cooperation and communication on breeding materials and technologies between the breeding institutes should be strengthened.