Xu Xin, Wang Qi, Li Wenqi, Hu Tixu, Wang Qiqi, Yin Yue, Liu Xiaohui, He Shen, Zhang Mingke, Liang Yan, Zhu Jianhua, Zhan Xiangqiang
State Key Laboratory of Crop Stress Biology for Arid Areas and College of Horticulture, Northwest A&F University, No.3, Taicheng Road, Yangling, Shaanxi 712100, China.
Xian Highness Agricultural Science & Technology Co. Ltd., Xian, Shaanxi 710086, China.
Int J Biol Macromol. 2022 May 1;206:799-811. doi: 10.1016/j.ijbiomac.2022.03.080. Epub 2022 Mar 18.
Heat stress is one of the major limiting factors that affect plant growth and production. In this study, we identified SlBBX17, which encodes a B-Box (BBX) protein and functions as a negative regulator of plant growth and a positive regulator of heat tolerance in tomato (Solanum lycopersicum). The expression of SlBBX17 is induced by hormones and heat stress. Overexpression of SlBBX17 (SlBBX17-OE) in tomato led to less chlorophyll content and lower net photosynthetic rate relative to the wild type. The growth retardation in the SlBBX17-OE plants may be attributed to the change of endogenous gibberellin (GA) metabolism and the decrease of photosynthetic capacity. SlBBX17-OE plants exhibited increased tolerance to heat stress, as reflected by the better membrane stability, higher antioxidant enzyme activities, and less reactive oxygen species (ROS) accumulation. Transcriptome analysis revealed that overexpression of SlBBX17 affected the expression of genes involved in GA biosynthetic process, photosynthesis, heat stress, ROS, and other cellular processes. The qRT-PCR analysis indicated that many SlHsf and SlHSP genes are up-regulated by SlBBX17 under heat stress. These results demonstrate that SlBBX17 plays important roles in regulating tomato growth and resistance to heat stress.
热胁迫是影响植物生长和产量的主要限制因素之一。在本研究中,我们鉴定了SlBBX17,它编码一种B-Box(BBX)蛋白,在番茄(Solanum lycopersicum)中作为植物生长的负调节因子和耐热性的正调节因子发挥作用。SlBBX17的表达受激素和热胁迫诱导。与野生型相比,番茄中SlBBX17的过表达(SlBBX17-OE)导致叶绿素含量降低和净光合速率下降。SlBBX17-OE植株的生长迟缓可能归因于内源赤霉素(GA)代谢的变化和光合能力的降低。SlBBX17-OE植株表现出对热胁迫的耐受性增强,这体现在更好的膜稳定性、更高的抗氧化酶活性和更少的活性氧(ROS)积累上。转录组分析表明,SlBBX17的过表达影响了参与GA生物合成过程、光合作用、热胁迫、ROS和其他细胞过程的基因表达。qRT-PCR分析表明,在热胁迫下,许多SlHsf和SlHSP基因被SlBBX17上调。这些结果表明,SlBBX17在调节番茄生长和耐热性方面发挥着重要作用。