Camalle Maria Dolores, Pěnčík Aleš, Novák Ondřej, Zhao Lina, Zurgil Udi, Fait Aaron, Tel-Zur Noemi
The Albert Katz International School for Desert Studies, The Jacob Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev, Sede Boqer Campus 8499000, Israel.
Laboratory of Growth Regulators, Faculty of Science, The Czech Academy of Sciences, Palacký University & Institute of Experimental Botany, Šlechtitelů 27, CZ-783 71 Olomouc, Czech Republic.
Hortic Res. 2022 May 17;9:uhac110. doi: 10.1093/hr/uhac110. eCollection 2022.
The factors underlying the plant collapse of certain melon-pumpkin graft combinations are not fully understood. Our working hypothesis was that impairment of photoassimilates transport in incompatible combinations induces an imbalance in the homeostasis of root auxin (indole-3-acetic acid; IAA) and of cytokinins, probably triggering plant collapse. Root IAA and cytokinins levels in the presence and absence of fruit and changes in root and scion metabolites were investigated in compatible and incompatible combinations. We showed elevated levels of IAA, 2-oxoindole-3-acetic acid (IAA catabolite), indole-3-acetylaspartate (IAA conjugate), and -zeatin-type cytokinins, but low levels of -zeatin-type cytokinins in the roots of plants of the incompatible combination during fruit ripening. Similarly, during fruit ripening, the expression of the genes, , and (required for auxin biosynthesis), the gene (required for auxin conjugation), and the () gene (regulates the irreversible degradation of cytokinin) was enhanced in the roots of plants of the incompatible combination. Moreover, in the incompatible combination the fruiting process restricted transport of photoassimilates to the rootstock and induces their accumulation in the scion. In addition, high levels of hydrogen peroxide and malondialdehyde and reduced activity of antioxidant enzymes were observed in the roots of the incompatible graft. Our results showed that the collapse of the incompatible graft combination during fruit ripening is closely associated with a dramatic accumulation of IAA in the roots, which probably elicits oxidative damage and disturbs the balance of IAA and cytokinins that is of critical importance in melon-pumpkin graft compatibility.
某些甜瓜 - 南瓜嫁接组合中植株枯萎的潜在因素尚未完全明了。我们的工作假设是,不相容组合中光合同化物运输受损会导致根系生长素(吲哚 - 3 - 乙酸;IAA)和细胞分裂素的稳态失衡,可能引发植株枯萎。研究了在有果和无果情况下,相容和不相容组合中根系IAA和细胞分裂素水平以及根和接穗代谢物的变化。我们发现,在果实成熟期间,不相容组合植株的根系中IAA、2 - 氧代吲哚 - 3 - 乙酸(IAA分解代谢物)、吲哚 - 3 - 乙酰天冬氨酸(IAA共轭物)和玉米素型细胞分裂素水平升高,但反玉米素型细胞分裂素水平较低。同样,在果实成熟期间,不相容组合植株的根系中生长素生物合成所需的 、 和 基因、生长素共轭所需的 基因以及调节细胞分裂素不可逆降解的 ()基因的表达增强。此外,在不相容组合中,结果过程限制了光合同化物向砧木的运输,并导致其在接穗中积累。另外,在不相容嫁接的根系中观察到高水平的过氧化氢和丙二醛以及抗氧化酶活性降低。我们的结果表明,果实成熟期间不相容嫁接组合的枯萎与根系中IAA的大量积累密切相关,这可能引发氧化损伤并扰乱IAA和细胞分裂素的平衡,而这种平衡在甜瓜 - 南瓜嫁接相容性中至关重要。