VPT‐like genes modulate Rhizobium–legume symbiosis and phosphorus adaptation

截形苜蓿 生物 共生 根瘤菌 豆类 根瘤菌 磷酸盐 根瘤 开枪 胞浆 植物 腿血红蛋白 生物化学 莲藕 突变体 固氮 细胞生物学 基因 遗传学 细菌 化学 有机化学
作者
Jinlong Liu,Rongchen Yang,Jun Yan,Chun Li,Xiaodong Lin,Lin Lin,Ye Cao,Tao Xu,Jianxuan Li,Yangyang Yuan,Jiangqi Wen,Kirankumar S. Mysore,Sheng Luan
出处
期刊:Plant Journal [Wiley]
卷期号:116 (1): 112-127 被引量:2
标识
DOI:10.1111/tpj.16363
摘要

SUMMARY Although vacuolar phosphate transporters (VPTs) are essential for plant phosphorus adaptation, their role in Rhizobium –legume symbiosis is unclear. In this study, homologous genes of VPT1 ( MtVPTs) were identified in Medicago truncatula to assess their roles in Rhizobium –legume symbiosis and phosphorus adaptation. MtVPT2 and MtVPT3 mainly positively responded to low and high phosphate, respectively. However, both mtvpt2 and mtvpt3 mutants displayed shoot phenotypes with high phosphate sensitivity and low phosphate tolerance. The root‐to‐shoot phosphate transfer efficiency was significantly enhanced in mtvpt3 but weakened in mtvpt2 , accompanied by lower and higher root cytosolic inorganic phosphate (Pi) concentration, respectively. Low phosphate induced MtVPT2 and MtVPT3 expressions in nodules. MtVPT2 and MtVPT3 mutations markedly reduced the nodule number and nitrogenase activity under different phosphate conditions. Cytosolic Pi concentration in nodules was significantly lower in mtvpt2 and mtvpt3 than in the wildtype, especially in tissues near the base of nodules, probably due to inhibition of long‐distance Pi transport and cytosolic Pi supply. Also, mtvpt2 and mtvpt3 could not maintain a stable cytosolic Pi level in the nodule fixation zone as the wildtype under low phosphate stress. These findings show that MtVPT2 and MtVPT3 modulate phosphorus adaptation and rhizobia–legume symbiosis, possibly by regulating long‐distance Pi transport.
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