State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, South China Agricultural University, Guangzhou, China.
Guangdong Litchi Engineering Research Center, College of Horticulture, South China Agricultural University, Guangzhou, China.
Tree Physiol. 2019 Sep 1;39(9):1600-1613. doi: 10.1093/treephys/tpz071.
Abnormal fruitlet abscission is a limiting factor in the production of litchi, an economically important fruit in Southern Asia. Both ethylene and abscisic acid (ABA) induce organ abscission in plants. Although ACS/ACO and NCED genes are known to encode key enzymes required for ethylene and ABA biosynthesis, respectively, the transcriptional regulation of these genes is unclear in the process of plant organ shedding. Here, two polygalacturonase (PG) genes (LcPG1 and LcPG2) and two novel homeodomain-leucine zipper I transcription factors genes (LcHB2 and LcHB3) were identified as key genes associated with the fruitlet abscission in litchi. The expression of LcPG1 and LcPG2 was strongly associated with litchi fruitlet abscission, consistent with enhanced PG activity and reduced homogalacturonan content in fruitlet abscission zones (FAZs). The promoter activities of LcPG1/2 were enhanced by ethephon and ABA. In addition, the production of ethylene and ABA in fruitlets was significantly increased during fruit abscission. Consistently, expression of five genes (LcACO2, LcACO3, LcACS1, LcACS4 and LcACS7) related to ethylene biosynthesis and one gene (LcNCED3) related to ABA biosynthesis in FAZs were activated. Further, electrophoretic mobility shift assays and transient expression experiments demonstrated that both LcHB2 and LcHB3 could directly bind to the promoter of LcACO2/3, LcACS1/4/7 and LcNCED3 genes and activate their expression. Collectively, we propose that LcHB2/3 are involved in the litchi fruitlet abscission through positive regulation of ethylene and ABA biosynthesis.
异常的小果脱落是荔枝生产的一个限制因素,荔枝是南亚一种重要的经济水果。乙烯和脱落酸(ABA)都能诱导植物器官脱落。尽管 ACS/ACO 和 NCED 基因分别编码乙烯和 ABA 生物合成所需的关键酶,但这些基因在植物器官脱落过程中的转录调控尚不清楚。在这里,我们鉴定了两个多聚半乳糖醛酸酶(PG)基因(LcPG1 和 LcPG2)和两个新的同源域-亮氨酸拉链 I 转录因子基因(LcHB2 和 LcHB3),它们是与荔枝小果脱落相关的关键基因。LcPG1 和 LcPG2 的表达与荔枝小果脱落强烈相关,与小果脱落区(FAZ)中 PG 活性增强和同质半乳糖醛酸含量降低一致。LcPG1/2 的启动子活性被乙烯利和 ABA 增强。此外,在果实脱落过程中,果实中乙烯和 ABA 的产生明显增加。一致地,FAZ 中与乙烯生物合成有关的五个基因(LcACO2、LcACO3、LcACS1、LcACS4 和 LcACS7)和一个与 ABA 生物合成有关的基因(LcNCED3)的表达被激活。进一步的电泳迁移率变动分析和瞬时表达实验表明,LcHB2 和 LcHB3 都可以直接结合到 LcACO2/3、LcACS1/4/7 和 LcNCED3 基因的启动子上,并激活它们的表达。综上所述,我们提出 LcHB2/3 通过正向调节乙烯和 ABA 生物合成参与荔枝小果脱落。