串扰
赤霉素
茉莉酸
分解代谢
次生代谢
生物
信号转导
生物化学
转录因子
细胞生物学
新陈代谢
酶
基因
生物合成
拟南芥
遗传学
突变体
光学
物理
作者
Sayantan Panda,Adam Jóźwiak,Prashant D. Sonawane,Jędrzej Szymański,Yana Kazachkova,Andrii Vainer,Himabindu Vasuki Kilambi,Efrat Almekias‐Siegl,Varvara Dikaya,Samuel Bocobza,Hagai Shohat,Sagit Meir,Guy Wizler,Ashok P. Giri,Robert C. Schuurink,David Weiss,Hagai Yasuor,Avinash Kamble,Asaph Aharoni
摘要
Summary Steroidal glycoalkaloids (SGAs) are protective metabolites constitutively produced by Solanaceae species. Genes and enzymes generating the vast structural diversity of SGAs have been largely identified. Yet, mechanisms of hormone pathways coordinating defence (jasmonate; JA) and growth (gibberellin; GA) controlling SGAs metabolism remain unclear. We used tomato to decipher the hormonal regulation of SGAs metabolism during growth vs defence tradeoff. This was performed by genetic and biochemical characterisation of different JA and GA pathways components, coupled with in vitro experiments to elucidate the crosstalk between these hormone pathways mediating SGAs metabolism. We discovered that reduced active JA results in decreased SGA production, while low levels of GA or its receptor led to elevated SGA accumulation. We showed that MYC1 and MYC2 transcription factors mediate the JA/GA crosstalk by transcriptional activation of SGA biosynthesis and GA catabolism genes. Furthermore, MYC1 and MYC2 transcriptionally regulate the GA signalling suppressor DELLA that by itself interferes in JA‐mediated SGA control by modulating MYC activity through protein–protein interaction. Chemical and fungal pathogen treatments reinforced the concept of JA/GA crosstalk during SGA metabolism. These findings revealed the mechanism of JA/GA interplay in SGA biosynthesis to balance the cost of chemical defence with growth.
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