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首页> 外文期刊>Plant, Cell & Environment >OsPAP10c, a novel secreted acid phosphatase in rice, plays an important role in the utilization of external organic phosphorus
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OsPAP10c, a novel secreted acid phosphatase in rice, plays an important role in the utilization of external organic phosphorus

机译:OsPAP10c是水稻中一种新型的分泌型酸性磷酸酶,在利用外部有机磷方面起着重要作用

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摘要

Under phosphate (P-i) starvation, plants increase the secretion of purple acid phosphatases (PAPs) into the rhizosphere to scavenge organic phosphorus (P) for plant use. To date, only a few members of the PAP family have been characterized in crops. In this study, we identified a novel secreted PAP in rice, OsPAP10c, and investigated its role in the utilization of external organic P. OsPAP10c belongs to a monocotyledon-specific subclass of Ia group PAPs and is specifically expressed in the epidermis/exodermis cell layers of roots. Both the transcript and protein levels of OsPAP10c are strongly induced by P-i starvation. OsPAP10c overexpression increased acid phosphatase (APase) activity by more than 10-fold in the culture media and almost fivefold in both roots and leaves under P-i-sufficient and P-i-deficient conditions. This increase in APase activity further improved the plant utilization efficiency of external organic P. Moreover, several APase isoforms corresponding to OsPAP10c were identified using in-gel activity assays. Under field conditions with three different P-i supply levels, OsPAP10c-overexpressing plants had significantly higher tiller numbers and shorter plant heights. This study indicates that OsPAP10c encodes a novel secreted APase that plays an important role in the utilization of external organic P in rice.
机译:在磷酸盐(P-i)饥饿的情况下,植物增加了紫色酸性磷酸酶(PAP)向根际的分泌,以清除有机磷(P)供植物使用。迄今为止,PAP家族中只有少数成员具有作物特征。在这项研究中,我们鉴定了水稻中新的分泌型PAP OsPAP10c,并研究了其在利用外部有机P中的作用。OsPAP10c属于Ia组PAP的单子叶植物特异性亚类,并在表皮/外皮细胞层中特异性表达根。 P-1饥饿强烈诱导了OsPAP10c的转录本和蛋白质水平。在P-i充足和P-i不足的条件下,OsPAP10c过表达在培养基中将酸性磷酸酶(APase)活性提高了10倍以上,在根和叶中均提高了近五倍。 APase活性的增加进一步提高了外部有机磷的植物利用效率。此外,使用凝胶内活性测定法鉴定了与OsPAP10c对应的几种APase同工型。在具有三种不同P-i供应水平的田间条件下,过表达OsPAP10c的植物的分till数明显更高,而株高却更短。这项研究表明,OsPAP10c编码一种新型的分泌型APase,该酶在水稻中利用外部有机磷方面发挥着重要作用。

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