Zhang Damao, Chen Qianru, Zhang Xia, Lin Ling, Cai Ming, Cai Wenqi, Liu Yang, Xiang Lili, Sun Ming, Yu Xiaoying, Li Yanlin
Hunan Agricultural University, College of Horticulture, Changsha, Hunan, China.
Engineering Research Center for Horticultural Crop Germplasm Creation and New Variety Breeding, Ministry of Education, Changsha, China.
Front Plant Sci. 2022 Nov 15;13:1000160. doi: 10.3389/fpls.2022.1000160. eCollection 2022.
var. blooms 2-3 times a year, among which the autumn flowering period has great potential for exploitation, but the number of flowers in the autumn flowering period is much smaller than that in the spring flowering period.
Using 'Hei Zhenzhu' and 'Xiangnong Xiangyun' as experimental materials, the winter growth environment of var. in Changsha, Hunan Province was simulated by setting a low temperature of 6-10°C in an artificial climate chamber to investigate the effect of winter low temperature on the flowering traits and related gene expression of var. .
The results showed that after 45 days of low temperature culture and a subsequent period of 25°C greenhouse culture, flower buds and flowers started to appear on days 24 and 33 of 25°C greenhouse culture for 'Hei Zhenzhu', and flower buds and flowers started to appear on days 21 and 33 of 25°C greenhouse culture for 'Xiangnong Xiangyun'. The absolute growth rate of buds showed a 'Up-Down' pattern during the 7-28 days of low temperature culture; the chlorophyll fluorescence decay rate (Rfd) of both materials showed a 'Down-Up-Down' pattern during this period. The non-photochemical quenching coefficient (NPQ) showed the same trend as Rfd, and the photochemical quenching coefficient (QP) fluctuated above and below 0.05. The expression of and similar genes of var. gradually increased after the beginning of low temperature culture, reaching the highest expression on day 14 and day 28, respectively, and the expression of both in the experimental group was higher than that in the control group. The expressions of , and similar genes all decreased gradually with low temperature culture, among which the expressions of similar genes and similar genes in the experimental group were extremely significantly lower than those in the control group; in the experimental group, the expressions of similar genes were all extremely significantly higher than those in the control group, and the expressions all increased with the increase of low temperature culture time.
We found that the high expression of gibberellin genes may play an important role in the process of low temperature promotion of var. flowering, and in the future, it may be possible to regulate var. flowering by simply spraying exogenous gibberellin instead of the promotion effect of low temperature.
[植物名称]每年开花2 - 3次,其中秋季花期具有很大的开发潜力,但秋季花期的花量远少于春季花期。
以‘黑珍珠’和‘湘农祥云’为试验材料,在人工气候箱中设置6 - 10°C的低温,模拟湖南省长沙市[植物名称]的冬季生长环境,研究冬季低温对[植物名称]开花性状及相关基因表达的影响。
结果表明,经过45天的低温培养以及随后在25°C温室培养一段时间后,‘黑珍珠’在25°C温室培养的第24天和第33天开始出现花芽和花朵,‘湘农祥云’在25°C温室培养的第21天和第33天开始出现花芽和花朵。在低温培养的7 - 28天内,芽的绝对生长速率呈‘先升后降’模式;在此期间,两种材料的叶绿素荧光衰减率(Rfd)均呈‘先降后升再降’模式。非光化学猝灭系数(NPQ)与Rfd趋势相同,光化学猝灭系数(QP)在0.05上下波动。[植物名称]的[基因名称1]和[基因名称2]类似基因在低温培养开始后表达逐渐增加,分别在第14天和第28天达到最高表达,且实验组中两者的表达均高于对照组。[基因名称3]、[基因名称4]和[基因名称5]类似基因的表达均随低温培养而逐渐降低,其中实验组中[基因名称3]类似基因和[基因名称4]类似基因的表达极显著低于对照组;在实验组中,[基因名称5]类似基因的表达均极显著高于对照组,且表达均随低温培养时间的增加而升高。
我们发现赤霉素基因的高表达可能在低温促进[植物名称]开花的过程中起重要作用,未来或许可以通过简单喷施外源赤霉素来调控[植物名称]开花,而无需低温的促进作用。