花生高产耐旱QTL基因系的选育研究

Duy Viet Tran, Thi Thanh Phan, Thi Nhan Nguyen, Thi Ngu Nguyen
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引用次数: 0

摘要

在全球气候变化和干旱严重的趋势下,特别是花生产量和种植面积下降,高产耐旱QTL基因花生品系的选育和筛选被认为是一种战略性和有效的解决方案。本研究采用田间评价和耐旱基因筛选相结合的方法,以TK10、湛义安、森义安、L20、L23和L14 6个花生品种为杂交亲本,进行杂交育种。5个杂交组合中,春义安扮演母亲的角色;15个高产(29公粒/公顷以上)的F3代优秀花生品系中,有5个品系编码F3-6、F3-12(秋恩安× L23)、F3-9、F3-10(秋恩安×森恩安)和F3-13(秋恩安× L14)具有电泳技术鉴定的耐旱性位点。这些品系具有良好的恢复率(分别为92.8 ~ 94.6、84.4 ~ 88.4和80.0 ~ 83.4%)、平均生产力损失(30.56 ~ 34.10%)和良好的耐旱性(点3:G=21 ~ 40%)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A study on creating highly yielded and drought-tolerant QTL gene-possessed lines of peanut
In the trend of global climate changes and heavily occurring drought, particularly resulting in decreased productivity and cultivated areas of peanut production, the breeding and screening of highly yielded and drought-tolerant QTL gene-possessed peanut lines is considered a strategic and effective solution. In this study, the on-field assessment in combination with drought-tolerant gene screening was implemented and 6 peanut cultivars named TK10, Chum Nghe An, Sen Nghe An, L20, L23, and L14 were regarded as hybrid parents for the crossing-breeding program. Of 5 cross-breeding combinations (Chum Nghe An played the role of mother; 5 others were the fathers) 15 elite peanut lines of the F3 generation with high yield (over 29 quintals/ha) and 5 of them coded F3-6, F3-12 (Chum Nghe An × L23), F3-9, F3-10 (Chum Nghe An × Sen Nghe An), and F3-13 (Chum Nghe An × L14) possessed the locus for drought tolerance determined by electrophoresis technology. It is also particularly mentioned that all these lines had a good recovery (92.8-94.6, 84.4-88.4, and 80.0-83.4%, respectively), average productivity loss (30.56-34.10%), and good drought tolerance (point 3: G=21-40%).
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