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超长日照和幼胚离体培养加速小麦繁育

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小麦生育期长,通常1年仅能繁育1代。缩短小麦生育期、实现1年多代繁殖是加快育种进程、提高育种效率的重要途径。低温(春化反应)和日照长度(光周期反应)是影响小麦个体发育的重要特性。根据相关特性,本研究对不同生长习性的小麦品种进行了不同光周期和低温春化处理,通过生育期观察,发现超长日照(22 h光照/2 h黑暗)可显著缩短小麦生育期,并具有春化补偿效应;与16 h光照/8 h黑暗的光周期相比,超长日照处理的小麦穗长、有效分蘖数和千粒重差异不大。对花后不同时间的幼胚进行离体培养,发现花后12 d的幼胚已具有很高的发芽率。超长日照处理结合幼胚离体培养可实现春性和冬性小麦1年分别繁殖6~7代和3~4代。本研究研发的小麦快速繁育技术可用于小麦育种程序,以加速育种进程。
Speeding wheat breeding using super-long lighting and immature embryo culture in vitro
Wheat is relatively long from germination to seed maturity,and normally only one generation can be produced annually. Shortening the whole growth period,consequently producing seeds of multiple generations per year,is beneficial for improving wheat breeding efficiency. Low temperature (vernalization response) and light length (photoperiod response) are the two key factors affecting the processes of wheat growth and development,or the whole growth period. On the basis of the relevant characteristics,we conducted different photoperiod and low-temperature vernalization treatments on wheat plants with different growth habits. Through observations of the growth stages,we found that super-long lighting (22 h light/2 h darkness) significantly shortened the wheat growth period and had a compensatory vernalization effect. No significant differences in panicle length,number of effective tillers per plant,or thousand grain weight were detected between the super-long lighting treatment and the control (16 h light/8 h darkness). Immature embryo culture in vitro at different time after pollination revealed that the 12-day-old young embryo had a high germination rate. Accordingly,the combination of super-long lighting and immature embryo culture in vitro may obtain 6-7 and 3-4 generations per year for spring-and winter-habit wheats,respectively. In conclusion,the method of speeding breeding developed in this study can be used in wheat breeding programs to improve breeding efficiency.

wheatphotoperiodimmature embryo culturespeed breeding

郑楠楠、鲁向前、赵俊恒、付玉洁、叶玲珍

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浙江大学中原研究院,河南 郑州 450000

浙江大学农业与生物技术学院,浙江 杭州 310058

小麦 光周期 幼胚培养 快速育种

2024

浙江大学学报(农业与生命科学版)
浙江大学

浙江大学学报(农业与生命科学版)

CSTPCD北大核心
影响因子:0.725
ISSN:1008-9209
年,卷(期):2024.50(6)