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1Effects of Exogenous 5-Aminolevulinic Acid and 24-Epibrassinolide on Cd Accumulation in Rice from Cd-Contaminated Soil显示文摘High grain-Cd-accumulating rice variety Yongyou 9 was planted in Cd-contaminated farmland in Taizhou City, Zhejiang Province, China to study the effects of 5-aminolevulinic acid(ALA) and24-epibrassinolide(EBR) on Cd accumulation in brown rice. Results showed that the exogenous ALA and EBR had no significant effects on agronomic traits, soil pH and total Cd content in soil, but had some effects on the available Cd content in soil, and significantly influenced the Cd accumulation in the different parts of rice. Results also showed that 100 mg/L exogenous ALA significantly reduced the Cd accumulation in brown rice to blow the food safety standard(0.2 mg/kg), and also significantly reduced the Cd contents in the roots and culm of rice. However, 200 mg/L exogenous ALA treatment increased the Cd content in brown rice remarkably. In addition, 0.15 mg/L EBR treatment increased Cd accumulation in roots, culm, leaves and brown rice notably, whereas 0.30 mg/L exogenous EBR treatment reduced the Cd accumulation in brown rice properly, but it was not significant. Therefore,proper concentration of ALA can effectively reduce the Cd accumulation in brown rice, which can be used as an effective technical method for the safe production of rice in Cd polluted farmland.WANG Feijuan ZHANG Yiting GUO Qinxin TAN Haifeng HAN Jiahui LIN Haoran WEI Hewen XU Guangwei ZHU Cheng 2018Rice science2018,25,6:3
2ALA reverses ABA-induced stomatal closure by modulating PP2AC and SnRK2.6 activity in apple leaves显示文摘5-Aminolevulinic acid(ALA),known as a new natural plant growth regulator,can reverse abscisic acid(ABA)-induced stomatal closure.The protein phosphatase 2A(PP2A)played an important role in regulation of stomatal movement by ALA and ABA;however,the underlying molecular mechanisms remain unclear.Here,we report that ALA promotes MdPP2A activity and gene expression in the leaf epidermis of apple(Malus×domestica Borkh.),and expression of the catalytic subunit MdPP2AC was most significantly correlated with stomatal aperture.Western blotting showed that ALA enhanced MdPP2AC protein abundance and phosphorylation.Y2H(yeast two hybrid),FLC(firefly luciferase complementation imaging)and BiFC(Bimolecular fluorescence complementation)assays showed that MdPP2AC interacted with several other MdPP2A subunits as well as MdSnRK2.6(Sucrose non-fermenting 1-related protein kinase 2.6),and the latter interaction was further verified by pull-down and MST(microscale thermophoresis)assays.ALA downregulated ABA-induced MdSnRK2.6 gene expression,kinase activity,and protein phosphorylation.In transiently transgenic apple leaves,OE-MdPP2AC promoted stomatal aperture by reducing Ca^(2+)and H_(2)O_(2) levels but increasing flavonol levels in guard cells.Conversely,OE-MdSnRK2.6 induced stomatal closure by increasing Ca^(2+)and H2O2 but reducing flavonols.Partial silencing of these genes had opposite effects on Ca^(2+),H_(2)O_(2),flavonols,and stomatal movement.Application of exogenous ALA stimulated PP2A activity,which promoted SnRK2.6 dephosphorylation and lower kinase activity in wild-type and transgenic apple leaves.We therefore propose that PP2AC,which dephosphorylates SnRK2.6 and represses its enzyme activity,mediates ALA signaling to inhibit ABA-induced stomatal closure in apple leaves.Zheng Chen Yuyan An Liangju Wang 2023Horticulture Research2023,10,6:0
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